Scientia Agricultura Sinica ›› 2022, Vol. 55 ›› Issue (1): 36-50.doi: 10.3864/j.issn.0578-1752.2022.01.004

• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY·AGRICULTURE INFORMATION TECHNOLOGY • Previous Articles     Next Articles

Effects of Sowing Dates on Eating Quality of Different Indica Hybrid Rice in the Sub-Suitable Region of Ratoon Rice

LI Bo1(),YANG Fan1(),QIN Qin1,ZHONG XiaoYuan1,LI QiuPing1,ZENG YuLing1,LU Hui1,CHEN Yong1,WANG Li1,TAO YouFeng1,LI Juan2,FENG BingLiang3,REN WanJun1(),DENG Fei1()   

  1. 1College of Agronomy, Sichuan Agricultural University/State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China/ Key Laboratory of Crop Physiology, Ecology, and Cultivation in Sichuan Province, Wenjiang 611130, Sichuan
    2Qianwei County Agricultural and Rural Bureau, Qianwei 614400, Sichuan
    3Longchang Agricultural and Rural Bureau, Longchang 642150, Sichuan
  • Received:2021-03-04 Accepted:2021-09-27 Online:2022-01-01 Published:2022-01-07
  • Contact: WanJun REN,Fei DENG E-mail:libo5250@163.com;1276002485@qq.com;rwjun@126.com;ddf273634096@163.com

Abstract:

【Objective】 The aim of this study was to clarify the effects of sowing dates on the eating quality of indica hybrid rice in sub-suitable area of ratoon rice, so as to provide the theoretical and practical basis for the adjustment of planting structure and high quality cultivation in sub-suitable area of ratoon rice.【Method】 Field sowing dates experiments were conducted in the two sub-suitable area of ratoon rice in Sichuan (Longchang and Qianwei) with three indica hybrid rice varieties, namely Chuanyou 6203, Yixiangyou 2115, and Fyou 498. The effects of sowing dates on eating quality of indica hybrid rice in sub-suitable area of ratoon rice were studied by the determination of amylose and protein content, and the analysis of rice aroma, appearance, palatability, flavor, cold rice texture, as well as comprehensive score following the national standard sensory evaluation method.【Result】 (1) The eating quality of indica hybrid rice was affected by location, sowing date, variety, and their interactions. (2) The effects of sowing dates on the eating quality of different rice varieties were different to the study locations in the sub-suitable area of ratoon rice. The amylose content, protein content, palatability, taste, and flavor in the two study years, as well as the palatability and comprehensive score in 2018 in Longchang were significantly lower than that in Qianwei. Compared wtih the conventional sowing date, suitably delayed sowing date could improve the amylose content, palatability, and taste of rice by decreasing the temperature stress during grain filling stage, which resulted in the increase in comprehensive score of rice. This made the taste quality of rice closer to that of the ratoon rice. (3) Correlation analysis showed that amylose content, palatability, and flavor had significantly or extremely significantly negative correlation with the average daily maximum, minimum, and average temperatures, and sunshine hours from the 20 days after heading to mature stage, while comprehensive score was significantly and negatively related to the average daily minimum temperature from the 20 days after heading to mature stage. (4) The GGE-bioplot double plot analysis showed that the third sowing date in Longchang and second and third sowing dates in Qianwei had higher score and better stability of comprehensive score. 【Conclusion】 On the basis of ensuring the yield of rice, Longchang ecological point was sowed at the third sowing date (early May), and Qianwei ecological point was sowed at the second sowing date (March 20-March 25), which could avoid high temperature stress during the grain filling period of rice and improve the eating quality of hybrid indica rice. Furthermore, the selection of high-quality eating varieties as Yixiangyou 2115 and Chuanyou 6203 with suitable delaying of sowing date possessed higher taste quality in the sub-suitable area of ratoon rice.

Key words: sowing date, ratoon rice, ecological condition, eating quality, GGE-bioplot

Table 1

Meteorological data of experiment locations in 2018"

试验点
Experimental location
品种
Variety
处理
Treatment
播种—抽穗
Sowing-Heading
抽穗—抽穗后20 d
Heading-The 20 days after heading
抽穗后20 d—成熟
The 20 days after heading-Maturity
日平均温度
ADT (℃)
降雨量
P (mm)
日照
时数
SH (h)
有效
积温
EAT (℃)
日平均温度
ADT (℃)
降雨量
P (mm)
日照
时数
SH (h)
有效
积温
EAT (℃)
日平均温度
ADT (℃)
降雨量
P (mm)
日照
时数
SH (h)
有效
积温
EAT (℃)
隆昌
Longchang
V1 S1 21.33 359.40 541.90 733.60 28.60 66.70 135.20 264.20 28.60 206.20 108.00 291.20
S2 22.10 416.20 509.40 775.40 29.50 83.60 173.70 268.30 27.70 164.20 115.70 315.20
S3 25.72 504.90 482.00 985.90 28.80 57.70 175.70 271.80 24.00 36.40 57.30 306.00
S4 26.30 596.50 486.90 994.30 29.60 57.70 186.40 284.50 21.60 79.80 27.80 270.20
RR 25.63 33.90 93.80 188.60 20.31 94.20 24.30 69.10
V2 S1 21.53 359.40 555.30 776.90 28.90 66.20 147.20 264.90 28.30 206.20 103.00 258.40
S2 22.10 416.20 509.40 775.40 29.90 68.10 192.50 276.00 27.60 164.20 112.30 325.70
S3 25.75 594.20 499.00 1010.60 29.30 57.70 185.50 275.30 23.00 53.90 34.70 311.80
S4 26.32 596.50 497.50 1007.40 29.50 60.40 179.50 288.90 21.10 81.90 24.30 264.40
RR 25.17 34.80 82.40 181.20 20.19 95.70 24.30 63.10
V3 S1 21.02 331.60 509.40 668.20 26.19 182.80 48.50 256.50 30.70 75.10 122.70 283.60
S2 21.77 356.40 482.50 706.00 26.72 115.00 67.90 265.10 28.50 227.50 137.50 340.90
S3 25.60 451.30 449.10 922.60 27.47 219.80 142.90 268.60 27.10 31.80 114.80 349.00
S4 26.24 567.00 453.00 933.20 28.12 133.00 151.50 273.00 23.50 64.80 68.80 332.20
RR 22.53 62.10 33.70 200.50 20.68 93.60 24.30 83.40
犍为
Qianwei
V1 S1 21.84 564.50 483.80 793.50 26.98 103.80 74.60 249.70 27.11 306.10 68.10 240.70
S2 22.38 596.40 437.30 834.80 27.43 124.70 93.30 264.90 26.71 336.60 90.00 253.10
S3 24.89 651.30 345.70 909.50 27.93 210.20 147.70 250.00 23.76 76.50 46.80 331.50
S4 25.38 798.90 359.70 923.70 28.44 111.40 155.90 261.80 21.83 102.00 28.40 279.00
RR 21.93 79.90 26.00 133.30 17.74 85.30 25.00 31.00
V2 S1 21.87 564.70 484.70 804.00 27.17 107.10 82.00 253.90 27.05 303.20 70.30 237.20
S2 22.40 597.50 437.30 844.20 27.69 184.60 108.80 265.10 26.69 304.40 83.30 256.60
S3 24.91 674.20 353.60 931.60 28.26 133.00 153.00 256.60 22.93 68.30 27.40 284.30
S4 25.38 807.80 365.90 944.90 28.27 88.60 152.60 264.00 21.44 103.20 34.00 260.90
RR 21.79 82.10 26.00 131.40 17.61 83.70 25.00 31.20
V3 S1 21.58 457.80 471.40 724.10 26.19 182.80 48.50 233.30 28.53 129.00 77.20 291.60
S2 22.17 548.10 430.40 760.70 26.72 115.00 67.90 249.70 27.21 315.60 93.20 279.40
S3 24.81 529.90 329.20 863.20 27.47 219.80 142.90 250.90 26.43 68.50 90.10 319.00
S4 25.28 796.10 327.70 883.70 28.12 133.00 151.50 257.40 23.31 94.40 57.20 296.40
RR 22.53 62.10 33.70 136.70 18.30 100.80 18.30 38.80

Table 2

Meteorological data of experimental locations in 2019"

生态点
Location
品种
Variety
处理
Treatment
播种—抽穗
Sowing-Heading
抽穗—抽穗后20 d
Heading-The 20 days after heading
抽穗后20 d—成熟
The 20 days after heading-Maturity
日平均温度
ADT (℃)
降雨量
P
(mm)
日照
时数
SH
(h)
有效
积温
EAT
(℃)
日平均温度
ADT (℃)
降雨量
P
(mm)
日照
时数
SH
(h)
有效
积温
EAT
(℃)
日平均温度
ADT (℃)
降雨量
P
(mm)
日照
时数
SH
(h)
有效
积温
EAT
(℃)
隆昌
Longchang
V1 S1 20.05 401.80 379.60 642.60 25.60 93.60 58.00 204.40 27.00 111.50 53.70 264.90
S2 21.53 454.60 403.80 757.80 26.94 129.80 62.10 241.30 28.81 6.90 106.30 230.10
S3 23.76 488.90 260.90 788.00 29.21 6.90 178.30 275.30 23.42 113.90 44.10 295.80
S4 24.66 521.00 263.20 801.60 27.65 5.70 107.30 296.50 22.21 124.60 87.40 271.60
RR 22.67 108.40 47.10 143.5 20.97 18.40 50.70 92.80
V2 S1 20.14 401.80 389.00 663.10 26.51 67.10 64.40 210.00 26.98 101.80 65.90 271.30
S2 21.55 459.60 403.80 766.90 27.00 112.50 73.90 240.40 29.15 3.40 109.90 262.30
S3 23.83 499.20 266.80 812.30 28.37 74.10 150.20 278.30 24.94 107.70 62.80 280.90
S4 24.89 521.00 312.10 860.70 26.50 80.80 74.40 275.70 21.86 51.20 87.30 246.30
RR 22.25 114.50 46.60 142.9 20.73 21.50 48.20 82.00
V3 S1 19.99 367.40 378.20 625.60 24.89 117.10 46.40 200.30 27.61 37.40 48.40 217.80
S2 21.45 418.40 390.20 723.30 26.88 77.00 66.90 221.60 27.64 84.40 73.50 240.30
S3 23.57 461.80 242.10 728.60 28.37 74.10 150.20 268.20 24.94 107.70 62.80 337.20
S4 24.58 514.10 252.50 775.90 27.86 5.50 119.40 296.30 22.36 115.10 85.50 276.30
RR 22.96 111.20 28.60 154.5 21.17 20.90 62.60 93.60
犍为
Qianwei
V1 S1 21.50 380.80 403.30 789.10 25.91 262.30 60.80 227.90 26.96 449.00 58.60 212.30
S2 22.75 474.50 392.10 899.50 27.15 597.20 74.60 255.00 28.61 50.60 100.80 207.90
S3 24.78 770.70 275.10 841.10 28.18 87.50 145.50 262.60 22.78 124.40 22.20 297.10
S4 25.50 890.10 266.30 829.50 26.19 82.90 75.70 265.40 21.91 110.30 62.80 265.10
RR 21.68 99.50 43.50 134 20.56 35.70 32.40 72.90
V2 S1 21.52 395.70 403.80 804.50 26.62 360.80 65.60 241.40 27.08 335.60 73.60 220.50
S2 22.80 602.00 393.40 921.70 27.15 553.90 86.20 255.10 28.55 65.30 91.50 226.80
S3 24.84 945.30 293.80 885.40 28.18 71.80 133.00 275.40 22.23 124.40 28.50 270.30
S4 25.65 925.00 300.00 883.90 25.01 83.90 45.00 237.40 21.66 105.90 67.30 252.70
RR 21.44 94.70 60.30 125.9 19.99 38.90 29.70 65.60
V3 S1 21.45 332.50 400.00 757.10 25.07 290.10 47.70 209.80 27.75 258.70 47.50 235.50
S2 22.65 459.00 384.50 857.30 27.11 296.80 72.90 252.50 27.43 365.00 75.20 219.40
S3 24.74 627.80 271.10 818.10 27.61 262.10 128.40 266.00 24.08 103.60 38.70 303.50
S4 25.39 890.10 242.50 800.30 26.53 71.40 87.90 275.60 21.96 115.20 62.80 274.30
RR 21.96 73.80 29.20 139.6 20.81 32.90 47.60 88.30

Table 3

Physical and chemical properties of the soil in the two ecological sites"

生态点
Ecological location
pH 有机质
Organic matter
(g·kg-1 )
全氮
Total N content
(g·kg-1 )
全磷
Total P content
(g·kg-1 )
全钾
Total K content
(g·kg-1 )
碱解氮
Available N
(mg·kg-1 )
速效磷
Available P
(mg·kg-1 )
速效钾
Available K
(mg·kg-1 )
2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019
隆昌 Longchang 6.92 6.63 19.72 19.16 1.37 1.15 0.93 0.89 10.89 16.93 149.36 103.46 88.68 83.15 85.59 94.33
犍为 Qianwei 6.79 6.52 16.44 14.26 1.19 1.09 0.79 0.77 11.45 10.58 97.10 93.27 84.22 97.49 99.67 83.06

Table 4

Key phenological period of rice under each experimental treatment (M-D)"

生态点
Location
处理
Treatment
品种
Variety
播种期
Sowing date
移栽期
Transplanting date
拔节期
Jointing stage
齐穗期
Full heading stage
成熟期
Mature stage
再生稻成熟期
Mature of ratoon rice
2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019
隆昌
Longchang
S1 V1 03-04 03-04 04-03 04-03 06-01 05-28 07-04 07-07 08-05 08-09 10-05 10-12
V2 03-04 03-04 04-03 04-03 06-01 05-31 07-05 07-10 08-06 08-11 10-06 10-14
V3 03-04 03-04 04-03 04-03 05-26 05-26 06-29 07-04 07-30 08-03 10-03 10-9
S2 V1 03-14 03-19 04-13 04-20 06-07 06-10 07-08 07-18 08-12 08-17
V2 03-14 03-19 04-13 04-20 06-09 06-12 07-10 07-20 08-14 08-20
V3 03-14 03-19 04-13 04-20 06-02 06-07 07-03 07-14 08-08 08-14
S3 V1 05-03 05-04 06-02 06-03 07-14 07-07 08-11 08-07 09-20 09-21
V2 05-03 05-04 06-02 06-03 07-16 07-09 08-13 08-10 09-24 09-23
V3 05-03 05-04 06-02 06-03 07-11 07-03 08-05 08-04 09-17 09-16
S4 V1 05-13 05-19 06-12 06-18 07-20 07-16 08-16 08-16 09-28 10-04
V2 05-13 05-19 06-12 06-18 07-21 07-18 08-18 08-20 09-30 10-06
V3 05-13 05-19 06-12 06-18 07-17 07-13 08-12 08-15 09-25 10-01
犍为
Qianwei
S1 V1 03-10 03-10 04-09 04-09 06-02 06-02 07-12 07-11 08-12 8-12 10-15 10-16
V2 03-10 03-10 04-09 04-09 06-03 06-04 07-13 07-13 08-13 08-15 10-16 10-19
V3 03-10 03-10 04-09 04-09 05-29 06-01 07-05 07-07 08-9 08-10 10-13 10-13
S2 V1 03-20 03-25 04-19 04-24 06-09 06-14 07-18 07-24 08-20 08-23
V2 03-20 03-25 04-20 04-24 06-10 06-17 07-20 07-26 08-21 08-26
V3 03-20 03-25 04-21 04-24 06-04 06-13 07-14 07-20 08-15 08-20
S3 V1 04-30 05-10 05-30 06-09 07-07 07-13 08-10 08-12 09-17 09-29
V2 04-30 05-10 05-31 06-09 07-08 07-16 08-11 08-16 09-18 10-03
V3 04-30 05-10 06-01 06-09 07-03 07-10 08-05 08-11 09-11 09-27
S4 V1 05-10 05-25 06-09 06-24 07-15 07-23 08-15 08-18 09-25 10-10
V2 05-10 05-25 06-09 06-24 07-17 07-25 08-17 08-22 09-27 10-13
V3 05-10 05-25 06-09 06-24 07-13 07-18 08-11 08-17 09-22 10-08

Table 5

Effects of sowing date on yield and its components of indica hybrid rice in sub-suitable area of ratoon rice (2019)"

品种
Variety
播期
Sowing date
有效穗数
Effective panicles (×104·hm-2)
每穗颖花数
Spikelet number per panicle
结实率
Seed setting rate
(%)
千粒重
1 000-grain weight
(g)
理论产量
Theoretical yield
(t hm-2)
隆昌
Longchang
犍为
Qianwei
隆昌
Longchang
犍为
Qianwei
隆昌
Longchang
犍为
Qianwei
隆昌
Longchang
犍为
Qianwei
隆昌
Longchang
犍为
Qianwei
川优 6203
Chuanyou 6203
S1 240.83a 238.89b 126.58c 166.54a 81.90a 76.96a 28.27b 28.35a 7.06a 8.65a
S2 206.67b 244.44b 163.27b 149.40a 82.56a 76.39a 29.20a 28.97a 8.13a 8.03a
S3 183.06c 194.44c 216.84a 152.90a 74.19b 62.6bc 27.12c 28.57a 8.00a 5.31b
S4 185.63c 176.67c 216.58a 155.92a 67.37b 56.83c 27.34c 26.96b 7.36a 4.24b
RR 222.22ab 311.11a 65.80d 55.69b 74.06b 65.76b 24.28d 25.38c 2.63b 2.90c
宜香优 2115
Yixiangyou 2115
S1 213.61a 205.56a 124.29b 154.70a 86.91a 85.77a 32.95a 33.29ab 7.58a 9.05a
S2 197.50a 211.11a 137.48b 146.59a 88.91a 87.08a 33.01a 34.19a 7.95a 9.22a
S3 166.67b 175.56b 194.50a 144.82a 76.43b 64.60b 33.31a 34.57a 8.22a 5.64b
S4 165.83b 162.22b 186.21a 140.46a 76.37b 63.78b 33.05a 32.37bc 7.79a 4.71b
RR 196.25a 166.67b 62.83c 66.06b 75.73b 65.71b 31.31b 31.68c 2.92b 2.36c
F优498
F you 498
S1 210.97a 202.22a 162.24c 196.82b 90.74a 91.07a 30.56a 28.73b 9.5ab 10.40a
S2 198.06a 206.67a 180.21b 199.97b 88.52a 85.81a 30.59a 29.62ab 9.69a 10.45a
S3 168.89b 171.11b 248.41a 227.23a 77.57b 66.40c 28.48b 30.06a 9.27ab 7.76b
S4 153.75b 171.11b 255.97a 215.27ab 74.19b 62.52c 28.67b 28.93ab 8.38b 6.66b
RR 155.14b 177.78b 80.07d 62.83c 74.03b 74.92b 25.42c 27.37c 2.34c 2.29c
品种 Variety 26.92** 27.80** 349.38** 103.87** 23.23** 45.05** 90.31** 21.13** 94.38** 162.74**
播期 Sowing date 22.56** 62.36** 73.80** 53.81** 6.84** 11.91** 507.32** 206.86** 9.75** 25.59**
品种×播期
Variety× Sowing date
2.85* 14.71** 3.34** 4.63** 0.75 1.22 8.79** 0.90 1.70 3.08*

Table 6

Analysis of variance of rice eating quality (F value)"

变异来源
Source of variation
直链淀粉含量
Amylose
content
蛋白质含量
Protein
content
气味
Aroma
外观
Appearance
适口性
Palatability
滋味
Flavor
冷饭质地
Cold rice texture
综合评分
Comprehensive score
2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019
生态点 Location 71.42** 155.81** 177.26** 19.07** 0.03 5.19* 30.68** 0.01 8.32** 0.40 19.50** 13.67** 2.64 1.35 16.39** 1.44
播期 Sowing date 145.66** 129.04** 48.76** 15.33** 2.92* 0.93 3.07* 11.92** 6.95** 7.20** 6.33** 5.47** 2.61* 9.30** 4.12** 9.94**
品种 Variety 253.01** 435.57** 9.38** 6.16** 8.08** 10.44** 21.39** 26.54** 11.36** 12.22** 21.47** 10.53** 73.08** 72.10** 44.04** 48.10**
生态点×播期
Location × Sowing date
16.71** 6.32** 18.70** 5.84** 1.69 1.90 5.18** 7.17** 2.28 5.76** 2.79* 4.12** 1.10 7.16** 3.12* 12.38**
生态点×品种
Location×Variety
3.91* 1.79 1.71 0.07 1.97 1.95 2.95 19.37** 3.02 1.75 0.34 5.24** 0.76 5.96** 2.19 12.32**
播期×品种
Sowing date × Variety
1.75 6.11** 1.21 1.34 1.39 3.02** 2.08 2.40* 0.45 2.01 0.99 1.13 1.68 6.78** 1.13 3.14**
生态点×播期×品种
Location×Sowing date×Variety
7.50** 4.83** 0.62 0.57 1.15 2.49* 1.84 1.91 0.46 1.10 3.03** 1.82 2.06 1.80 1.58 2.59*

Table 7

Effects of ecological location and sowing date on the eating quality in rice"

生态点
Ecological location
播期
Sowing date
直链淀粉含量
Amylose content (%)
蛋白质含量
Protein content (%)
气味
Aroma
外观
Appearance
适口性
Palatability
滋味
Flavor
冷饭质地
Cold rice texture
综合评分
Comprehensive score
2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019
隆昌
Longchang
S1 14.49d 16.27d 6.77a 7.81a 17.73a 16.90a 14.93a 14.65c 20.79a 20.95c 18.05b 17.80b 3.54a 3.18d 75.02a 73.48b
S2 14.49d 16.60d 4.55c 6.48b 17.46ab 17.06a 14.77ab 15.66a 21.19a 21.33bc 18.24ab 18.22a 3.54a 3.75ab 75.21a 76.02a
S3 18.21c 20.53c 5.45b 6.89b 17.59ab 17.03a 14.93a 15.38ab 21.25a 22.64a 18.52a 18.50a 3.50a 3.78a 75.08a 77.34a
S4 21.17b 22.33b 7.08a 7.75a 17.58ab 17.17a 14.45b 15.08bc 21.53a 22.42a 18.47a 18.45a 3.42a 3.39cd 75.45a 76.51a
RR 23.01a 24.47a 4.43c 5.81c 17.22b 17.11a 15.15a 14.83c 21.47a 22.03ab 18.27ab 18.58a 3.58a 3.53bc 75.70a 76.08a
平均值 Average 18.27B 20.04B 5.66B 6.95B 17.52A 17.05A 14.85A 15.12A 21.25B 21.87A 18.31B 18.31B 3.52A 3.53A 75.44B 75.88A
犍为
Qianwei
S1 17.69d 19.98d 7.13ab 7.57ab 17.75a 17.31a 15.00b 15.39ab 20.63c 21.32b 18.14b 18.57bc 3.59a 3.58a 75.12d 76.18b
S2 18.09d 20.69d 6.36c 6.87c 17.77a 17.36a 15.63a 15.66a 21.86b 21.79b 18.89a 18.77ab 3.59a 3.73a 77.74ab 77.31ab
S3 21.45b 24.84b 7.55a 8.01a 17.21b 17.21ab 14.99b 15.37ab 21.56b 21.82b 18.70a 18.49bc 3.34ab 3.33bc 75.80cd 76.22b
S4 20.33c 23.45c 7.30a 7.89ab 17.42ab 16.91b 15.62a 14.10c 21.88b 21.05b 18.60a 18.29c 3.21b 3.14c 76.72bc 73.49c
RR 23.24a 26.59a 6.7bc 7.32bc 17.36ab 17.46a 15.65a 15.14b 23.02a 22.84a 18.94a 19.04a 3.37ab 3.55ab 78.35a 78.03a
平均值 Average 20.16A 23.11A 7.01A 7.53A 17.50A 17.25A 15.38A 15.13A 21.79A 21.76A 18.65A 18.63A 3.42A 3.47A 76.74A 76.25A

Table 8

Effects of sowing dates and variety on rice eating quality"

品种
Variety
播期
Sowing date
直链淀粉含量
Amylose content (%)
蛋白质含量
Protein content (%)
气味
Aroma
外观
Appearance
适口性
Palatability
滋味
Flavor
冷饭质地
Cold rice texture
综合评分
Comprehensive score
2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019 2018 2019
川优 6203
Chuanyou 6203
S1 13.80d 15.15c 7.27a 8.06a 17.65a 17.47a 15.04bc 14.96b 20.90b 21.08b 18.18b 18.13b 3.84a 3.62b 75.62c 75.26b
S2 14.01d 15.35c 5.65c 6.93b 17.65a 17.51a 15.55ab 15.79a 21.87ab 22.17a 18.48ab 18.54ab 3.75a 4.09a 77.30abc 78.11a
S3 17.21c 19.45b 6.37b 7.3ab 17.54a 17.37a 15.68a 15.28ab 21.80ab 22.60a 18.73a 18.51ab 3.77a 3.68b 77.54ab 77.44a
S4 19.16b 20.39b 7.27a 8.02a 17.18a 16.87b 14.99c 14.29c 21.79ab 21.71ab 18.74a 18.40b 3.60a 3.61b 76.29bc 74.89b
RR 20.40a 22.83a 5.55c 6.74b 17.41a 17.53a 15.74a 15.25ab 22.70a 22.63a 18.82a 18.92a 3.76a 3.66b 78.43a 77.99a
平均值 Average 16.92C 18.63C 6.42A 7.41A 17.49B 17.26A 15.40A 15.11B 21.81A 22.04A 18.59A 18.50A 3.74A 3.73A 77.04A 76.74A
宜香优 2115
Yixiangyou 2115
S1 14.42c 15.39c 7.25a 8.05a 17.83ab 17.12b 15.33ab 15.86ab 21.22a 21.85a 18.31b 18.68a 3.67ab 3.73b 76.36b 77.24ab
S2 15.13c 16.30c 5.50b 6.68b 18.00a 17.23ab 15.27ab 16.09a 22.10a 22.23a 18.91a 18.78a 3.93a 4.27a 78.22a 78.61a
S3 18.40b 20.06b 6.88a 7.93a 17.48b 17.00b 14.85b 15.65ab 21.65a 22.69a 18.97a 18.59a 3.71ab 3.66b 76.66ab 77.60ab
S4 19.61b 19.96b 7.45a 7.94a 17.93ab 17.66a 15.29ab 14.95c 22.09a 21.90a 18.79a 18.65a 3.65ab 3.35c 77.75ab 76.51b
RR 22.56a 25.26a 5.64b 6.39b 17.48b 17.11b 15.54a 15.46bc 22.22a 22.32a 18.64ab 18.79a 3.53b 3.55bc 77.41ab 77.24ab
平均值 Average 18.02B 19.39B 6.54A 7.40A 17.74A 17.23A 15.26A 15.60A 21.86A 22.20A 18.73A 18.70A 3.70A 3.71A 77.28A 77.44A
F优498
F you 498
S1 20.05c 23.83b 6.33ab 6.96ab 17.73a 16.72b 14.52ab 14.24c 20.00c 20.47cd 17.79b 17.75c 3.19a 2.79b 73.23b 71.98b
S2 19.73c 24.28b 5.21c 6.41b 17.20b 16.88ab 14.76ab 15.09ab 20.61bc 20.27d 18.31a 18.17bc 3.02ab 2.87b 73.90ab 73.27b
S3 23.89b 28.54a 6.26b 7.12ab 17.18b 17.00ab 14.35b 15.20a 20.76bc 21.40bc 18.13ab 18.38ab 2.78b 3.31a 73.20b 75.29a
S4 23.49b 28.32a 6.85a 7.49a 17.38ab 16.60b 14.83ab 14.52bc 21.23ab 21.59ab 18.07ab 18.05bc 2.70b 2.84b 74.21ab 73.60b
RR 26.43a 28.49a 5.50c 6.57b 16.99b 17.20a 14.92a 14.25c 21.82a 22.35a 18.35a 18.72a 3.15a 3.41a 75.22a 75.93a
平均值 Average 22.72A 26.69A 6.03B 6.91B 17.30B 16.84B 14.68B 14.66C 20.88B 21.22B 18.13B 18.21B 2.97B 3.04C 73.95B 74.02B

Table 9

Correlation analysis of meteorological factors and rice food taste quality"

生育时期
Growth stage
气象因子
Meteorological factor
直链淀粉含量
Amylose content (%)
蛋白质含量
Protein content (%)
气味
Aroma
外观
Appearance
适口性
Palatability
滋味
Flavor
冷饭质地
Cold rice texture
综合评分
Comprehensive score
抽穗期—抽穗20 d
Heading-The 20 days after heading
X1 -0.408** 0.117 0.154 0.087 -0.137 -0.077 0.137 0.012
X2 -0.537** 0.067 0.191 0.041 -0.306* -0.175 0.177 -0.073
X3 -0.454** 0.083 0.183 0.063 -0.202 -0.112 0.142 -0.022
X4 -0.338** 0.155 0.100 -0.063 -0.251 -0.177 0.046 -0.126
X5 -0.258* -0.015 0.197 0.064 0.041 0.065 0.133 0.111
X6 -0.008 0.116 0.082 0.201 -0.065 0.148 0.114 0.102
抽穗20 d—成熟期
The 20 days after heading- Maturity
X1 -0.493** -0.029 0.077 0.023 -0.466** -0.356** 0.082 -0.218
X2 -0.484** -0.040 0.091 -0.043 -0.559** -0.412** 0.031 -0.293*
X3 -0.501** -0.052 0.098 -0.004 -0.513** -0.377** 0.065 -0.249
X4 -0.327* 0.172 0.011 -0.159 -0.402** -0.295* -0.108 -0.285*
X5 -0.417** -0.206 0.098 -0.074 -0.319* -0.295* 0.031 -0.183
X6 -0.232 0.084 0.220 0.100 -0.244 -0.002 0.025 -0.021

Fig. 1

Stabilities of sowing date and rice comprehensive score based on GGE biplot In the figure, G represents the variety, and the numbers 1, 2, and 3 at the back represent the varieties, namely Chuanyou 6203, Yixiangyou 2115, and F you 498; 2018 and 2019 represent the year. LC: Longchang, QW: Qianwei; The number 1 2, 3, 4, and 5 behind the location represent the first, second, third, fourth sowing dates and the ratoon rice, respectively"

[1] 彭波, 孙艳芳, 庞瑞华, 孔冬艳, 宋晓华, 李慧龙, 李金涛, 周棋赢, 段斌, 柳琳, 宋世枝. 水稻种子蛋白质含量遗传研究进展. 南方农业学报, 2017, 48(3): 401-407.
PENG B, SUN Y F, PANG R H, KONG D Y, SONG X H, LI H L, LI J T, ZHOU Q Y, DUAN B, LIU L, SONG S Z. Genetic of rice seed protein content: A review. Journal of Southern Agriculture, 2017, 48(3): 401-407. (in Chinese)
[2] 张昌泉, 赵冬生, 李钱峰, 顾铭洪, 刘巧泉. 稻米品质性状基因的克隆与功能研究进展. 中国农业科学, 2016, 49(22): 4267-4283.
ZHANG C Q, ZHAO D S, LI Q F, GU M H, LIU Q Q. Progresses in research on cloning and functional analysis of key genes involving in rice grain quality. Scientia Agricultura Sinica, 2016, 49(22): 4267-4283. (in Chinese)
[3] VITO M B J, NESE S, BIENEVENIDO O J. Improving rice grain quality: State-of-the-Art and future prospects. Methods in Molecular Biology, 2019, 1892: 19-55.
[4] 霍中洋, 李杰, 许轲, 戴其根, 魏海燕, 龚金龙, 张洪程. 高产栽培条件下种植方式对不同生育类型粳稻米质的影响. 中国农业科学, 2012, 45(19): 3932-3945.
HUO Z Y, LI J, XU K, DAI Q G, WEI H Y, GONG J L, ZHANG H C. Effect of planting methods on quality of different growth and development types of japonica rice under high-yielding cultivation condition. Scientia Agricultura Sinica, 2012, 45(19): 3932-3945. (in Chinese).
[5] 龚金龙, 张洪程, 胡雅杰, 龙厚元, 常勇, 王艳, 邢志鹏, 霍中洋. 灌浆结实期温度对水稻产量和品质形成的影响. 生态学杂志, 2013, 32(2): 482-491.
GONG J L, ZHANG H C, HU Y J, LONG H Y, CHANG Y, WANG Y, XING Z P, HUO Z Y. Effects of air temperature during rice grain-filling period on the formation of rice grain yield and its quality. Chinese Journal of Ecology, 2013, 32(2): 482-491. (in Chinese)
[6] 滕中华, 智丽, 吕俊, 宗学凤, 王三根, 何光华. 灌浆期高温对水稻光合特性、内源激素和稻米品质的影响. 生态学报, 2010, 30(23): 6504-6511.
TENG Z H, ZHI L, LÜ J, ZONG X F, WANG S G, HE G H. Effects of high temperature on photosynthesis characteristics, phytohormones and grain quality during filling-periods in rice. Acta Ecologica Sinica, 2010, 30(23): 6504-6511. (in Chinese)
[7] 姚义, 霍中洋, 张洪程, 夏炎, 倪晓诚, 戴其根, 许轲, 魏海燕, 肖跃成, 王显. 播期对麦茬直播粳稻产量及品质的影响. 中国农业科学, 2011, 44(15): 3098-3107.
YAO Y, HUO Z Y, ZHANG H C, XIA Y, NI X C, DAI Q G, XU K, WEI H Y, XIAO Y C, WANG X. Effects of sowing date on yield and quality of direct seeding rice of different types and varieties. Scientia Agricultura Sinica, 2011, 44(15): 3098-3107. (in Chinese)
[8] 许轲, 孙圳, 霍中洋, 戴其根, 张洪程, 刘俊, 宋云生, 杨大柳, 魏海燕, 吴爱国, 王显, 吴冬冬. 播期、品种类型对水稻产量、生育期及温光利用的影响. 中国农业科学, 2013, 46(20): 4222-4233.
XU K, SUN Z, HUO Z Y, DAI Q G, ZHANG H C, LIU J, SONG Y S, YANG D L, WEI H Y, WU A G, WANG X, WU D D. Effects of seeding date and variety type on yield, growth stage and utilization of temperature and sunshine in rice. Scientia Agricultura Sinica, 2013, 46(20): 4222-4233. (in Chinese)
[9] 邢志鹏, 曹伟伟, 钱海军, 胡雅杰, 张洪程, 戴其根, 霍中洋, 许轲. 稻麦两熟地区机插水稻品质形成的播期效应. 生态学杂志, 2016, 35(1): 1-10.
XING Z P, CAO W W, QIAN H J, HU Y J, ZHANG H C, DAI Q G, HUO Z Y, XU K. Effect of sowing date on the formation of quality of mechanically transplanted rice in rice wheat cropping areas. Chinese Journal of Ecology, 2016, 35(1): 1-10. (in Chinese)
[10] 李博, 张驰, 曾玉玲, 李秋萍, 任洪超, 卢慧, 杨帆, 陈虹, 王丽, 陈勇, 任万军, 邓飞. 播期对四川盆地杂交籼稻米饭食味品质的影响. 作物学报, 2021, 47(7): 1360-1371.
doi: 10.3724/SP.J.1006.2021.02053
LI B, ZHANG C, ZENG Y L, LI Q P, REN H C, LU H, YANG F, CHEN H, WANG L, CHEN Y, REN W J, DENG F. Effects of sowing date on eating quality of indica hybrid rice in Sichuan Basin. Acta Agronomica Sinica, 2021, 47(7): 1360-1371. (in Chinese)
doi: 10.3724/SP.J.1006.2021.02053
[11] 徐富贤, 袁驰, 王学春, 韩冬, 廖爽, 陈勇, 周兴兵, 江青山, 张林, 蒋鹏. 不同杂交中稻品种在川南再生稻区的两季产量及头季稻米品质差异. 中国生态农业学报(中英文), 2020, 28(7): 990-998.
XU F X, YUAN C, WANG X C, HAN D, LIAO S, CHEN Y, ZHOU X B, JIANG Q S, ZHANG L, JIANG P. Differences in the two-crop yields and main-crop rice qualities among different hybrid mid-season rice varieties in the ratooning rice region of southern Sichuan, China. Chinese Journal of Eco-Agriculture, 2020, 28(7): 990-998. (in Chinese)
[12] 高阳华, 陈志军, 杨世琦, 唐云辉, 袁德胜. 基于GIS的重庆市再生稻光热资源适宜性区划. 长江流域资源与环境, 2011, 20(6): 672-676.
GAO Y H, CHEN Z J, YANG S Q, TANG Y H, YUAN D S. The GIS-based photothermal resource suitability regionalization of regenerative rice in Chongqing. Resources and Environment in the Yangtze Basin, 2011, 20(6): 672-676. (in Chinese)
[13] 汪浩, 刘祥臣, 张强, 余贵龙, 张文地, 黄健, 朱安, 刘立军. 豫南地区头季和再生季水稻产量与品质差异分析. 中国水稻科学, 2020, 34(5): 425-434.
WANG H, LIU X C, ZAHNG Q, YU G L, ZHANG W D, HUANG J, ZHU A, LIU L J. Differences in grain yield and quality in main and ratoon rice in southern Henan province. Chinese Journal of Rice Science, 2020, 34(5): 425-434. (in Chinese)
[14] 赵庆勇, 朱镇, 张亚东, 陈涛, 姚姝, 周丽慧, 于新, 赵凌, 王才林. 播期和地点对不同生态类型粳稻稻米品质性状的影响. 中国水稻科学, 2013, 27(3): 297-304.
ZHAO Q Y, ZHU Z, ZHANG Y D, CHEN T, YAO S, ZHOU L H, YU X, ZHAO L, WANG C L. Effect of sowing data and site on grain quality of rice cultivars planted in different ecological types. Chinese Journal of Rice Science, 2013, 27(3): 297-304. (in Chinese)
[15] 朱镇, 赵庆勇, 张亚东, 陈涛, 姚姝, 周丽慧, 于新, 王才林. 播期和种植地点对南粳46稻米品质及RVA谱的影响. 江苏农业学报, 2013, 29(5): 921-927.
ZHU Z, ZHAO Q Y, ZHANG Y Z, CHEN T, YAO S, ZHOU L H, YU X, WANG C L. Effects of sowing date and planting site on grain quality and RVA profiles of Nanjing 46, a popular cultivar in japonica rice. Jiangsu Journal of Agricultural Sciences, 2013, 29(5): 921-927. (in Chinese)
[16] 杨帆, 钟晓媛, 李秋萍, 李书先, 李武, 周涛, 李博, 袁玉洁, 邓飞, 陈勇, 任万军. 再生稻次适宜区迟播栽对不同杂交籼稻淀粉RVA谱的影响. 作物学报, 2021, 47(4): 701-713.
doi: 10.3724/SP.J.1006.2021.02037
YANG F, ZHONG X Y, LI Q P, LI S X, LI W, ZHOU T, LI B, YUAN Y J, DENG F, CHEN Y, REN W J. Effects of delayed sowing and planting date on starch RVA profiles of different indica hybrid rice in the sub-suitable region of ratoon rice. Acta Agronomica Sinica, 2021, 47(4): 701-713. (in Chinese)
doi: 10.3724/SP.J.1006.2021.02037
[17] 卢慧, 袁玉洁, 张丝琪, 陈虹, 陈多, 钟晓媛, 李博, 邓飞, 陈勇, 李贵勇, 任万军. 基于3种方法的西南杂交籼稻稻米食味评价及品种优选. 中国农业科学, 2021, 54(6): 1243-1257.
LU H, YUAN Y J, ZHANG S Q, CHEN H, CEHN D, ZHONG X Y, LI B, DENG F, CHEN Y, LI G Y, REN W J. Evaluation of rice eating quality and optimization of varieties of southwest indica hybrid rice based on three taste evaluation methods. Scientia Agricultura Sinica, 2021, 54(6): 1243-1257. (in Chinese)
[18] 宋慧, 刘金荣, 王素英, 闫宏山, 王涛, 邢晓宁, 邢璐, 付楠. GGE双标图评价谷子‘豫谷18’的丰产稳产性和适应性. 中国农业大学学报, 2020, 25(1): 29-38.
SONG H, LIU J R, WANG S Y, YAN H S, WANG T, XING X N, XING L, FU N. Evaluation of foxtail millet yield stability and adaptability using GGE-biplot analysis: A case study of ‘Yugu18’ foxtail millet cultivar. Journal of China Agricultural University, 2020, 25(1): 29-38. (in Chinese)
[19] 严威凯. 双标图分析在农作物品种多点试验中的应用. 作物学报, 2010, 36(11): 1805-1819.
doi: 10.3724/SP.J.1006.2010.01805
YAN W K. Optimal use of biplots in analysis of multi-location variety test data. Acta Agronomica Sinica, 2010, 36(11): 1805-1819. (in Chinese)
doi: 10.3724/SP.J.1006.2010.01805
[20] 贾良, 丁雪云, 王平荣, 邓晓建. 稻米淀粉RVA谱特征及其与理化品质性状相关性的研究. 作物学报, 2008, 34(5): 790-794.
doi: 10.3724/SP.J.1006.2008.00790
JIA L, DING X Y, WANG P R, DENG X J. Rice RVA profile characteristics and correlation with the physical chemical quality. Acta Agronomica Sinica, 2008, 34(5): 790-794. (in Chinese)
doi: 10.3724/SP.J.1006.2008.00790
[21] 周小理, 王惠, 周一鸣, 张欢, 胡业芹. 不同烹煮方式对米饭食味品质的影响. 食品科学, 2017, 38(11): 75-80.
doi: 10.1111/jfds.1973.38.issue-1
ZHOU X L, WANG H, ZHOU Y M, ZHANG H, HU Y Q. Influence of different cooking methods on eating quality of rice. Food Science, 2017, 38(11): 75-80. (in Chinese)
doi: 10.1111/jfds.1973.38.issue-1
[22] DENG F, YANG F, LI Q P, ZENG Y L, LI B, ZHONG X Y, LU H, WANG L, CHEN H, CHEN Y, REN W J. Differences in starch structural and physicochemical properties and texture characteristics of cooked rice between the main crop and ratoon rice. Food Hydrocolloids, 2021, 116: 106643.
doi: 10.1016/j.foodhyd.2021.106643
[23] LIN W X. Developmental status and problems of rice ratooning. Journal of Integrative Agriculture, 2019, 18(1): 246-247.
doi: 10.1016/S2095-3119(19)62568-2
[24] HUANG J W, PAN Y P, CHEN H F, ZHANG Z X, FANG C X, SHAO C H, AMJAD H, LIN W X. Physiochemical mechanisms involved in the improvement of grain-filling, rice quality mediated by related enzyme activities in the ratoon cultivation system. Field Crops Research, 2020, 258: 107962.
doi: 10.1016/j.fcr.2020.107962
[25] CHEN H, CHEN D, HE L H, WANG T, LU H, YANG F, DENG F, CHEN Y, TAO Y F, LI M, LI G Y, REN W J. Correlation of taste values with chemical compositions and Rapid Visco Analyser profiles of 36 indica rice (Oryza sativa L.) varieties. Food Chemistry, 2021, 349: 129176.
doi: 10.1016/j.foodchem.2021.129176
[26] 习敏, 季雅岚, 吴文革, 许有尊, 孙雪原, 周永进. 水稻食味品质形成影响因素研究与展望. 中国农学通报, 2020, 36(12): 159-164.
XI M, JI Y L, WU W G, XU Y Z, SUN X Y, ZHOU Y J. Research Progress and prospects of factors affecting rice eating quality. Chinese Agricultural Science Bulletin, 2020, 36(12): 159-164. (in Chinese)
[27] 卢毅, 路兴花, 张青峰, 余建国, 肖雄雄, 庞林江, 成纪予. 稻米直链淀粉与米饭物性及食味品质的关联特征研究. 食品科技, 2018, 43(10): 219-223.
LU Y, LU X H, ZHANG Q F, YU J G, XIAO X X, PANG L J, CHENG J Y. Correlation of rice amylose with physical properties and taste quality of rice. Food Science and Technology, 2018, 43(10): 219-223. (in Chinese).
[28] XU Y J, YING Y N, OUYANG S H, DUAN X L, SUN H, JIANG S K, SUN S C, BAO J S. Factors affecting sensory quality of cooked japonica rice. Rice Science, 2018, 25(6): 330-339.
doi: 10.1016/j.rsci.2018.10.003
[29] 孙建军, 张洪程, 尹海庆, 陈波, 郭保卫, 魏海燕, 戴其根, 王生轩, 陈献功, 姜元华, 姜明波, 杜元中, 夏彦. 不同生态区播期对机插水稻产量、生育期及温光利用的影响. 农业工程学报, 2015, 31(6): 113-121.
SUN J J, ZHANG H Q, YIN H Q, CHEN B, GUO B W, WEI H Y, DAI Q G, WANG S X, CHEN X G, JIANG Y H, JIANG M B, DU Y Z, XIA Y. Effects of seeding date on yield, growth period and utilization of temperature and sunshine of mechanical transplanting rice in different ecological regions. Transactions of the Chinese Society of Agricultural Engineering, 2015, 31(6): 113-121. (in Chinese)
[30] 陈天晔, 袁嘉琦, 刘艳阳, 许轲, 郭保卫, 戴其根, 霍中洋, 张洪程, 李国辉, 魏海燕. 江淮下游不同播期对稻-麦周年作物产量、品质及温光资源利用的影响. 作物学报, 2020, 46(10): 1566-1578.
CHEN T Y, YUAN J Q, LIU Y Y, XU K, GUO B W, DAI Q G, HUO Z Y, ZHANG H C, LI G H, WEI H Y. Effects of different sowing dates on crop yield, quality, and annual light-temperature resources utilization for rice-wheat double cropping system in the lower reaches of the Yangtze-Huaihe Rivers valley. Acta Agronomica Sinica, 2020, 46(10): 1566-1578. (in Chinese)
[31] AHMED N, TETLOW I J, NAWAZ S, LQBAL A, MUBIN M, NAWAZ U R M, BUTT A, LIGHTFOOT D A, MAEKAWA M. Effect of high temperature on grain filling period, yield, amylose content and activity of starch biosynthesis enzymes in endosperm of basmati rice. Journal of the Science of Food and Agriculture, 2015, 95(11): 2237-2243.
doi: 10.1002/jsfa.2015.95.issue-11
[32] CHUN A, LEE H J, HAMAKER B R, JANASWAMY S. Effects of ripening temperature on starch structure and gelatinization, pasting, and cooking properties in rice (Oryza sativa). Journal of Agricultural and Food Chemistry, 2015, 63(12): 3085-3093.
doi: 10.1021/jf504870p
[33] DENG N Y, LING X X, SUN Y, ZHANG C D, FAHAD S, PENG S B, CUI K H, NIE L X, HUANG J L. Influence of temperature and solar radiation on grain yield and quality in irrigated rice system. European Journal of Agronomy, 2015, 64: 37-46.
doi: 10.1016/j.eja.2014.12.008
[34] 李杰, 张洪程, 董洋阳, 倪晓诚, 杨波, 龚金龙, 常勇, 戴其根, 霍中洋, 许轲, 魏海燕. 不同生态区栽培方式对水稻产量、生育期及温光利用的影响. 中国农业科学, 2011, 44(13): 2661-2672.
LI J, ZHANG H C, DONG Y Y, NI X C, YANG B, GONG J L, CHANG Y, DAI Q G, HUO Z Y, XU K, WEI H Y. Effects of cultivation methods on yield, growth stage and utilization of temperature and illumination of rice in different ecological regions. Scientia Agricultura Sinica, 2011, 44(13): 2661-2672. (in Chinese)
[35] GUO L N, CHEN W L, TAO L, HU B H, QU G L, TU B, YAUN H, MA B T, WANG Y P, ZHU X B, QIN P, LI S G. GWC1 is essential for high grain quality in rice. Plant Science, 2020, 296: 110497.
doi: 10.1016/j.plantsci.2020.110497
[36] 徐富贤, 熊洪, 张林, 朱永川, 蒋鹏, 郭晓艺, 刘茂. 再生稻产量形成特点与关键调控技术研究进展. 中国农业科学, 2015, 48(9): 1702-1717.
XU F X, XIONG H, ZHANG L, ZHU Y C, JIANG P, GUO X Y, LIU M. Progress in research of yield formation of ratooning rice and its high-yielding key regulation technologies. Scientia Agricultura Sinica, 2015, 48(9): 1702-1717.(in Chinese)
[1] ZHANG Wei,YAN LingLing,FU ZhiQiang,XU Ying,GUO HuiJuan,ZHOU MengYao,LONG Pan. Effects of Sowing Date on Yield of Double Cropping Rice and Utilization Efficiency of Light and Heat Energy in Hunan Province [J]. Scientia Agricultura Sinica, 2023, 56(1): 31-45.
[2] Yue GE,DeQuan ZHANG,ShaoBo LI,Li CHEN,XiaoChun ZHENG,Ce LIANG,TongJing YAN,JinHuo LI,ZhenYu WANG. Eating Quality Evaluation of Lamb in Different Postmortem Phases Based on Consumers’ Sensory Preferences [J]. Scientia Agricultura Sinica, 2022, 55(18): 3640-3651.
[3] LI HongYan,XUE Jun,WANG YongHong,WANG KeRu,ZHAO RuLang,MING Bo,ZHANG ZhenTao,ZHANG WenJie,LI ShaoKun. Study on Optimal Time and Construct a Prediction Model of Mechanical Grain Harvest of Maize in Ningxia [J]. Scientia Agricultura Sinica, 2022, 55(12): 2324-2337.
[4] YUAN Yuan,WANG Bo,ZHOU GuangSheng,LIU Fang,HUANG JunSheng,KUAI Jie. Effects of Different Sowing Dates and Planting Densities on the Yield and Stem Lodging Resistance of Rapeseed [J]. Scientia Agricultura Sinica, 2021, 54(8): 1613-1626.
[5] Hui LU,YuJie YUAN,SiQi ZHANG,Hong CHEN,Duo CHEN,XiaoYuan ZHONG,Bo LI,Fei DENG,Yong CHEN,GuiYong LI,WanJun REN. Evaluation of Rice Eating Quality and Optimization of Varieties of Southwest Indica Hybrid Rice Based on Three Taste Evaluation Methods [J]. Scientia Agricultura Sinica, 2021, 54(6): 1243-1257.
[6] CHEN Jing,REN BaiZhao,ZHAO Bin,LIU Peng,YANG JinSheng,ZHANG JiWang. Determination on Suitable Sowing Date of Summer Maize Hybrids Based on Effective Accumulated Temperature in Growth Period [J]. Scientia Agricultura Sinica, 2021, 54(17): 3632-3646.
[7] LI XiaoYong,GU ChiMing,LIU Kang,LIAO Xing,HUANG Wei,YANG ZhiYuan,QIN Lu. Effects of Nitrogen Application Rate on Nitrogen Use Efficiency, Yield and Quality of Late Sowing Rapeseed [J]. Scientia Agricultura Sinica, 2021, 54(17): 3726-3736.
[8] YanBing YANG,Ling QIN,RunFeng WANG,ErYing CHEN,XiuBo YIN,YuQin LIU,SuMei ZHANG,XinJun CONG,GuoYu LI,LeZheng WANG,YanAn GUAN. Effects of Climatic Factors Under Diverse Ecological Conditions on Foxtail Millet (Setaria italica) Yield in Shandong [J]. Scientia Agricultura Sinica, 2020, 53(7): 1348-1358.
[9] YuXian CAO,JianQiang ZHU,Jun HOU. Yield Gap of Ratoon Rice and Their Influence Factors in China [J]. Scientia Agricultura Sinica, 2020, 53(4): 707-719.
[10] ZHAO ChunFang,YUE HongLiang,HUANG ShuangJie,ZHOU LiHui,ZHAO Ling,ZHANG YaDong,CHEN Tao,ZHU Zhen,ZHAO QingYong,YAO Shu,LIANG WenHua,LU Kai,WANG CaiLin. Eating Quality and Physicochemical Properties in Nanjing Rice Varieties [J]. Scientia Agricultura Sinica, 2019, 52(5): 909-920.
[11] XIAO MengYing,ZHANG RuiDong,ZHANG Zhuang,XU XiaoXue,CHEN XiaoFei,ZHOU YuFei,KONG FanHua,HUANG RuiDong. Taste Quality Traits of Sorghum Landraces from Liaoning Province [J]. Scientia Agricultura Sinica, 2019, 52(4): 591-601.
[12] LUO Yan, QU Yang, YANG QingHua, ZHANG WeiLi, GONG XiangWei, LI Jing, GAO XiaoLi, GAO JinFeng, YANG Pu, WANG PengKe, FENG BaiLi. Effect of Sowing Date on Agronomic Traits and Starch Physicochemical Properties of Proso Millet [J]. Scientia Agricultura Sinica, 2019, 52(22): 4154-4165.
[13] YANG YanBing, CHEN ErYing, WANG RunFeng, QIN Ling, YIN XiuBo, ZHANG HuiDi, LI FeiFei, GUAN YanAn. Yellow Pigment Contents in Foxtail Millet (Setaria italica) Under Diverse Ecological Conditions [J]. Scientia Agricultura Sinica, 2019, 52(18): 3232-3241.
[14] QU Yang,ZHANG Fei,WANG KeZhen,HAN Fang,LIU Yang,LUO Yan,GAO XiaoLi,LU Feng, . Response of Sorghum (Sorghum bicolor (L.) Moench) Yield and Quality to Climatic and Ecological Conditions on the West Yellow-Huaihe-Haihe Rivers Plain [J]. Scientia Agricultura Sinica, 2019, 52(18): 3242-3257.
[15] ZHANG Lang,XU HuaQin,LI LinLin,CHEN YuanWei,ZHENG HuaBing,TANG QiYuan,TANG JianWu. Comparative Study on CH4Emission from Ratoon Rice and Double-Cropping Rice Fields [J]. Scientia Agricultura Sinica, 2019, 52(12): 2101-2113.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!