Scientia Agricultura Sinica ›› 2012, Vol. 45 ›› Issue (16): 3256-3264.doi: 10.3864/j.issn.0578-1752.2012.16.004

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

Analysis on Grain Filling Characteristics of Indica and Japonica Rice in Rapeseed (Wheat) - Rice Planting Area in Chengdu Basin

 LI  Xu-Yi, CHI  Zhong-Zhi, JIANG  Xin-Lu, ZHENG  Jia-Guo   

  1. 1.四川省农业科学院作物研究所,成都 610066
    2. 德阳市水稻专家大院,四川广汉 618300
  • Received:2012-04-05 Online:2012-08-15 Published:2012-05-21

Abstract: 【Objective】In order to provide a scientific basis for planting japonica rice in Chengdu basin, the difference in grain filling characteristics and yield formation between indica and japonica rice was studied in rapeseed (wheat) - rice planting area in Chengdu basin.【Method】A field experiment was conducted with indica rice varieties Fuyou 838 and Luyou 578, japonica rice varieties Liaoxing 15 and Liaoxing 19. The grain-filling processes of superior and inferior grains of different varieties were studied with Richards equation. On that basis, the relationship between grain filling characteristics with dry matter accumulation and transformation after heading and yield formation was analyzed in different varieties.【Result】With bigger sink potential and higher seed setting rate, the grain yield of Liaoxing 19 was significantly higher than Liaoxing 15 in japonica rice, even achieved the level of indica rice (Fuyou 838 and Luyou 578).The types of indica and japonica rice initiated their grain filling for superior and inferior grains were synchronous type and asynchronous type, respectively, and the effects of panicle size on grain filling and seed setting were also different between indica and japonica rice. The ability of dry matter transformation after heading for Liaoxing 19 was closer to local indica rice, so it was beneficial to start its grain-filling. Although grains per spike of Liaoxing 19 were significantly higher than Liaoxing 15, the grain filling rate of its inferior grains was not decreased, and the grain filling rate declined slower after reaching peak, grain filling time was also prolonged to some extent, at last the seed setting rate was improved significantly.【Conclusion】 The japonica rice varieties of Liaoxing 19 had more grains per spike, but with the improved dry matter transformation after heading, it still gained higher seed setting rate by better grain-filling. So it has the high yield potentiality for planting in Chengdu basin.

Key words: japonica rice, grain filling, seed setting rate, introducing japonica rice from the North to the South

[1] 卜 祥. 粳稻潜力可挖. 农经杂志, 2011(3):42-44.

Bo X. The potential of Japonica rice can be explored. Agriculture Economics Magazine, 2011(3): 42-44. (in Chinese)

[2] 陈温福, 张龙步, 徐正进, 杨守仁, 左震东. 北粳南引研究的进展与前景. 沈阳农业大学学报,1994, 25(2):131-135.

Chen W F, Zhang L B, Xu Z J, Yang S R, Zuo Z D. The research advances of introducing japonica rice from the north to the south of china. Journal of Shenyang Agricultural University,1994, 25(2): 131-135. ( in Chinese)

[3] 陈温福, 潘文博, 徐正进. 我国粳稻生产现状及发展趋势. 沈阳农业大学学报,2006, 37(6): 801-805.

Chen W F, Fan W B, Xu Z J. Current situation and trends in production of japonica rice in China. Journal of Shenyang Agricultural University, 2006, 37(6): 801-805. ( in Chinese)

[4] 邓华凤, 何  强, 舒  服, 张武汉, 杨  飞, 荆彦辉, 东  丽, 谢  辉. 中国杂交粳稻研究现状与对策. 杂交水稻, 2006, 21(1) : 1-6.

Deng H F, He Q, Shu F, Zhang W H, Yang F, Jing Y H, Dong L, Xie H. Status and technical strategy on development of japonica hybrid rice in China . Hybric Rice, 2006, 21(1): 1-6. (in Chinese)

[5] 张培江, 付  强, 占新春, 吴  爽. 超高产杂交粳稻育种研究与实践. 中国农学通报, 2007, 23(10): 124-130.

Zhang P J, Fu Q, Zhan X C, Wu S. The practice and studies on the breeding of japonica hybrid rice combination with the super-high yield. Chinese Agricultural Science Bulletin, 2007, 23(10): 124-130. (in Chinese)

[6] 王才林, 朱 镇, 张亚东, 赵  凌. 江苏省粳稻品质改良的成就、问题与对策. 江苏农业学报, 2008, 24(2): 199-203.

Wang C L, Zhu Z, Zhang Y D, Zhao L. Achievement and consideration on improving of grain quality for japonica rice in Jiangsu, China. Jiangsu Journal of Agricultural Sciences,2008, 24(2): 199-203. (in Chinese)

[7] 苏泽胜, 李泽福. 安徽省超级稻研究与应用现状及展望. 沈阳农业大学学报, 2007, 38(5): 739- 743.

Su Z S, Li Z F. Present status and prospect of super - rice research and utilization in Anhui Province. Journal of Shenyang Agricultural University, 2007, 38(5): 739- 743. (in Chinese)

[8] 杨建昌, 杜  永, 吴长付, 刘立军, 王志琴, 朱庆森. 超高产粳型水稻生长发育特性的研究. 中国农业科学, 2006,39(7):1336-1345.

Yang J C, Du Y, Wu C F, Liu L J, Wang Z Q, Zhu Q S. Growth and development characteristics of super-high-yielding mid-season japonica rice. Scientia Agricultura Sinica, 2006, 39(7):1336-1345. (in Chinese)

[9] 张洪程, 赵品恒, 孙菊英, 吴桂成, 徐  军, 端木银熙, 戴其根, 霍中洋, 许  轲, 魏海燕. 机插杂交粳稻超高产形成群体特征. 农业工程学报, 2012, 28(2):39-44.

Zhang H C, Zhao P H, Sun J Y, Wu G C, Xu J, Duan M Y X, Dai Q G, Huo Z Y, Xu K, Wei H Y. Population characteristics of super high yield formation of mechanical transplanted japonica hybrid rice. Transactions of the CSAE , 2012, 28(2):39-44. (in Chinese)

[10] 张洪程, 吴桂成, 李德剑, 肖跃成, 龚金龙, 李  杰, 戴其根, 霍中洋, 许  轲, 高  辉, 魏海燕, 沙安勤, 周有炎, 王宝金, 吴爱国. 杂交粳稻13.5 t/hm2 超高产群体动态特征及形成机制的探讨. 作物学报, 2010, 36(9): 1547-1558.

Zhang H C, Wu G C, Li D J, Xiao Y C, Gong J L, Li J, Dai Q G, Huo Z Y, Xu K, Gao H, Wei H Y, Sha A Q, Zhou Y Y, Wang B J, Wu A G. Population characteristics and formation mechanism for super-high yielding hybrid japonica rice(13.5 t/hm2). Acta Agronomica Sinica, 2010, 36(9): 1547-1558. (in Chinese)

[11] 李刚华, 张国发, 陈功磊, 王绍华, 凌启鸿, 丁艳锋. 超高产常规粳稻宁粳1 号和宁粳3 号群体特征及对氮的响应. 作物学报, 2009, 35(6): 1106-1114.

Li G H, Zhang G F, Chen G L, Wang S H, Ling Q H, Ding Y F. Population characteristics of super japonica rice Ningjing 1 and Ningjing3 and its responses to nitrogen. Acta Agronomica Sinica, 2009, 35(6): 1106-1114. (in Chinese)

[12] 彭俊华, 李有春. 水稻籼、粳两亚种产量构成特点的剖析与比较. 四川农业大学学报,1990, 8(3):162-168 .

Peng J H, Li Y C. The dissection and comparison of yield formation for indica and sinica subspecies in rice. Journal of Sichuan Agricultural University,1990, 8(3):162-168. (in Chinese)

[13] 何光华, 郑家奎, 李  耘, 杨正林. 不同类型水稻产量组分研究. 西南农业大学学报, 1993, 15(3): 438-440.

He G H, Zheng J K, Li Y, Yang Z L. A comparative study of yield components of various types of rice. Journal of Southwest Agricultural University, 1993, 15(3): 438-440. (in Chinese)

[14] 李  杰, 张洪程, 龚金龙, 常  勇, 戴其根, 霍中洋, 许  轲, 魏海燕, 高  辉. 不同种植方式对超级稻籽粒灌浆特性的影响. 作物学报, 2011, 37(9): 1631-1641.

Li J, Zhang H C, Gong J L, Chang Y, Dai Q G, Huo Z Y, Xu K, Wei H Y, Gao H. Influence of planting methods on grain-filling properties of super rice. Acta Agronomica Sinica, 2011, 37(9): 1631-1641. (in Chinese)

[15] 朱庆森, 曹显祖, 骆亦其. 水稻籽粒灌浆的生长分析. 作物学报, 1988, 14(3):183-193.

Zhu Q S, Cao X Z, Luo Y Q. Growth analysis on the process of grain filling in rice. Acta Agronomica Sinica, 1998, 14(3): 183-193. (in Chinese)

[16] 谢光辉, 杨建昌, 王志琴, 朱庆森. 水稻籽粒灌浆特性及其与籽粒生理活性的关系. 作物学报, 2001, 27(5): 557-565.

Xie G H, Yang J C, Wang Z Q, Zhu Q S. Grain filling characteristics of rice and their relationships to physiological activities of grains. Acta Agronomica Sinica, 2001, 27(5): 557-565.(in Chinese)

[17] 唐 塘, 吕 冰, 梁建生. 不同水稻品种(组合)籽粒灌浆特性的比较. 扬州大学学报:农业与生命科学版, 2009, 30(1):78-83.

Tang H, Lu B, Liang J S. Comparison of grain filling characteristics of varieties (combinations). Journal of Yangzhou University: Agricultural and Life Science Edition, 2009, 30(1):78-83. (in Chinese)

[18] 袁继超, 刘从军, 朱庆森, 李俊青, 杨建昌. 播期对水稻籽粒灌浆特性的影响. 西南农业学报, 2004, 17(2): 164-168.

Yuan J C, Liu C J, Zhu Q S, Li J Q, Yang J C. Effects of sowing date on grain-filling properties of rice. Southwest China Journal of Agricultural Sciences, 2004, 17(2): 164-168. (in Chinese)

[19] 张亚芳, 陈宗祥, 娄丽娟, 左示敏, 潘学彪. 几个水稻品种源库关系分析. 扬州大学学报: 农业与生命科学版, 2011, 32(1): 6-9.

Zhang Y F, Chen Z X, Lou L J, Zuo S M, Pan X B. Analysis on source-sink relations for several rice varieties. Journal of Yangzhou University: Agricultural and Life Science Edition, 2011,32(1):6-9. (in Chinese)

[20] 顾世梁, 朱庆森, 杨建昌, 彭少兵. 不同水稻材料籽粒灌浆特性的分析. 作物学报, 2001, 27(1): 7-14.

Gu S L, Zhu Q S, Yang J C, Peng S B. Analysis on grain filling characteristics for different rice types. Acta Agronomica Sinica, 2001, 27(1): 7-14. (in Chinese)

[21] 徐  海, 刘宏光, 杨  莉, 朱春杰, 王嘉宇, 杨乾华, 徐正进, 郑家奎. 不同生态条件下籼粳稻杂交后代亚种特性的比较研究. 作物学报, 2007,33(3):370-377.

Xu H, Liu H G, Yang L, Zhu C J, Wang J Y, Yang Q H, Xu Z J, Zheng J K. Subspecies characteristies in filial generation of cross between indica and japonica under diferent environments. Acta Agronomica Sinica, 2007,33(3):370-377. (in Chinese)

[22] 徐正进, 陈温福, 张龙步, 杨守仁. 水稻理想穗型设计的原理与参数. 科学通报, 2005, 50(1): 1-4.

Xu Z J, Chen W F, Zhang L B, Yang S R. Design principle and parameters of rice ideal panicle type. Chinese Science Bulletin, 2005, 50(19): 2253-2256. (in Chinese)

[23] 陈温福, 徐正进, 张龙步, 张文忠, 马殿荣. 北方粳型稻超高产育种理论与实践. 中国农业科学, 2007, 40(5): 869-874.

Chen W F, Xu Z J, Zhang L B, Zhang W Z, Ma D R. Theories and practices of breeding japonica rice for super high yield. Scientia Agricultura Sinica, 2007, 40(5): 869-874. (in Chinese)

[24] 顾自奋, 朱庆森, 曹显祖. 水稻结实率的研究-稻穗上强弱势的干重积累过程与空秕粒的分布. 中国农业科学, 1981, 14(6): 38-44.

Gu Z F, Zhu Q S, Cao X Z. Study on the grain ripening rate of rice-the relationship between the accumulation of dry weight in vigorous and weak spikelets and the distribution of sterile, abortive kernsel. Scientia Agricultura Sinica, 1981, 14(6): 38-44. (in Chinese)

[25] 段  俊, 梁承邺, 黄毓文, 陈宝源, 罗廉源. 不同类型水稻品种(组合)籽粒灌浆特性及库源关系的比较研究. 中国农业科学, 1996, 29(3): 66-73.

Duan J, Liang C Y, Huang Y W, Chen B Y, Luo L Y. Comparative studies on the grain-filling characterictics and relationship between source and sink among various types of rice. Scientia Agricultura Sinica, 1996, 29(3): 66-73. (in Chinese)

[26] 杨建昌, 苏宝林, 王志琴, 郎有忠, 朱庆森. 亚种间杂交稻籽粒灌浆特性及其生理的研究. 中国农业科学, 1998, 31(1): 7-14.

Yang J C, Su B L, Wang Z Q, Lang Y Z, Zhu Q S. Characteristics and physiology of grain-filling in intersubspecific hybrid rice. Scientia Agricultura Sinica, 1998, 31(1): 7-14. (in Chinese)

[27] 左清凡, 谢  平, 宋宇, 陈  莹, 李  伟, 刘亚云. 水稻籽粒不同发育时期灌浆速率的遗传及其与环境互作的分析. 中国农业科学, 2002, 35(5):465-470.

Zuo Q F, Xie P, Song Y, Chen Y, Li W, Liu Y Y. Analyses of genotype and environment interaction and heredity of filling rate in different developmental stages of rice grain. Scientia Agricultura Sinica, 2002, 35(5):465-470. (in Chinese)

[28] Laza M R C, Peng S B, Akita S, Saka H. Effect of panicle size on grain yield of IRRI-released indica rice cultivars in wet season. Plant Production Science, 2004, 7(3): 271-276.

[29] 王嘉宇, 范淑秀, 徐正进, 陈温福. 几个不同穗型水稻品种籽粒灌浆特性的研究. 作物学报, 2007, 33(8): 1366-1371.

Wang J Y, Fan S X, Xu Z J, Chen W F. Filling properties of grains on different positions in a panicle of rice with different panicle types. Acta Agronomica Sinica, 2007, 33(8): 1366-1371. (in Chinese)

[30] 梁建生, 曹显祖, 张海燕, 宋  平, 朱庆森. 水稻籽粒灌浆期间茎鞘贮存物质含量变化及其影响因素的研究. 中国水稻科学, 1994, 8(3): 151-156.

Liang J S, Cao X Z, Zhang H P, Song P, Zhu Q S. The changes and afecting factors of stem-sheath reserve contents of rice during grain filling. Chinese Journal of Rice Science, 1994, 18(3): 151-156. (in Chinese)

[31] 杨从党, 周  能, 袁平荣, 贺庆瑞. 水稻结实率和若干生理因素的品种间差异及其相关研究. 中国水稻科学, 1998, 12(3): 144-148.

Yang C D, Zhou N, Yuan P R, He Q R. Differences and correlation between seed-setting rate and some physiologic traits of rice. Chinese Journal of Rice Science, 1998, 12(3): 144-148. (in Chinese)

[32] 刘晓斌. 两系杂交稻茎鞘物质运转与籽粒充实特性的研究. 安徽农业科学, 2004, 32(6): 1118-1121.

Liu X B. Characteristics of carbohydrate transfer of stem and sheath and grain-filling in two-line hybrid rice. Journal of Anhui Agricultural Science, 2004, 32(6):1118-1121. (in Chinese)
[1] FENG XiangQian,YIN Min,WANG MengJia,MA HengYu,CHU Guang,LIU YuanHui,XU ChunMei,ZHANG XiuFu,ZHANG YunBo,WANG DanYing,CHEN Song. Effects of Meteorological Factors on Quality of Late Japonica Rice During Late Season Grain Filling Stage Under ‘Early Indica and Late Japonica’ Cultivation Pattern in Southern China [J]. Scientia Agricultura Sinica, 2023, 56(1): 46-63.
[2] ZHAO LiMing,HUANG AnQi,WANG YaXin,JIANG WenXin,ZHOU Hang,SHEN XueFeng,FENG NaiJie,ZHENG DianFeng. Effect of Deep Tillage Under Continuous Rotary Tillage on Yield Formation of High-Quality Japonica Rice in Cold Regions [J]. Scientia Agricultura Sinica, 2022, 55(22): 4550-4566.
[3] SHAO XiaoLong,XU Wen,WANG Xiao,YANG XiaoJing,SHEN Fei,LIU Qin. Fissure Development of Three Japonica Rice Grain during Water Desorption [J]. Scientia Agricultura Sinica, 2022, 55(2): 390-402.
[4] XIAO ShanShan, ZHANG YiFei, YANG KeJun, MING LiWei, DU JiaRui, XU RongQiong, SUN YiShan, LI WeiQing, LI GuiBin, LI ZeSong, LI JiaYu. Effects of Intercropping with Different Maturity Varieties on Grain Filling, Dehydration Characteristics and Yield of Spring Maize [J]. Scientia Agricultura Sinica, 2022, 55(12): 2294-2310.
[5] DENG AiXing,LIU YouHong,MENG Ying,CHEN ChangQing,DONG WenJun,LI GeXing,ZHANG Jun,ZHANG WeiJian. Effects of 1.5℃ Field Warming on Rice Yield and Quality in High Latitude Planting Area [J]. Scientia Agricultura Sinica, 2022, 55(1): 51-60.
[6] HU DanDan,LI RongFa,LIU Peng,DONG ShuTing,ZHAO Bin,ZHANG JiWang,REN BaiZhao. Mixed-Cropping Improved on Grain Filling Characteristics and Yield of Maize Under High Planting Densities [J]. Scientia Agricultura Sinica, 2021, 54(9): 1856-1868.
[7] MA HuiZhen,CHEN XinYi,WANG ZhiJie,ZHU Ying,JIANG WeiQin,REN GaoLei,MA ZhongTao,WEI HaiYan,ZHANG HongCheng,LIU GuoDong. Analysis on Appearance and Cooking Taste Quality Characteristics of Some High Quality Japonica Rice in China [J]. Scientia Agricultura Sinica, 2021, 54(7): 1338-1353.
[8] XU FangFu,BIAN JinLong,HAN Chao,CHEN ZhiQing,LIU GuoDong,XING ZhiPeng,HU YaJie,WEI HaiYan,ZHANG HongCheng. Temperature and Light Adaptability of High-Quality Japonica Rice and Optimum Seeding Date in Huaibei Region [J]. Scientia Agricultura Sinica, 2021, 54(7): 1365-1381.
[9] JIANG WeiQin,HU Qun,YU Hang,MA HuiZhen,REN GaoLei,MA ZhongTao,ZHU Ying,WEI HaiYan,ZHANG HongCheng,LIU GuoDong,HU YaJie,GUO BaoWei. Effect of One-Time Basal Application of the Mixed Controlled-Release Nitrogen Fertilizer in Japonica Rice with Good Taste Quality [J]. Scientia Agricultura Sinica, 2021, 54(7): 1382-1396.
[10] 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.
[11] ZHANG YaWen, BAO ShuHui, TANG ZhenJia, WANG XiaoWen, YANG Fang, ZHANG DeChun, HU YiBing. Function of Sucrose Transporter OsSUT5 in Rice Pollen Development and Seed Setting [J]. Scientia Agricultura Sinica, 2021, 54(16): 3369-3380.
[12] ZHANG ZhiXing,MIN XiuMei,SONG Guo,CHEN Hua,XU HaiLong,LIN WenXiong. Identification of 14-3-3 Client Proteins in Rice Grains and Their Response to Exogenous Hormones During the Grain Filling Stage [J]. Scientia Agricultura Sinica, 2021, 54(12): 2523-2537.
[13] YIN Min,LIU ShaoWen,CHU Guang,XU ChunMei,WANG DanYing,ZHANG XiuFu,CHEN Song. Differences in Yield and Growth Traits of Different Japonica Varieties in the Double Cropping Late Season in the Lower Reaches of the Yangtze River [J]. Scientia Agricultura Sinica, 2020, 53(5): 890-903.
[14] ZHU DongMei,WANG Hui,LIU DaTong,GAO DeRong,Lü GuoFeng,WANG JunChan,GAO ZhiFu,LU ChengBin. Characteristics of Grain Filling and Dehydration in Wheat [J]. Scientia Agricultura Sinica, 2019, 52(23): 4251-4261.
[15] SHEN GuanYu, YANG XiWen, ZHOU SuMei, MEI JingJing, CHEN Xu, PENG HongYang, JIANG Xiang, HE DeXian. Impacts of Soil Tillage Techniques on Seedling Quality, Root Function and Grain Weight in Wheat [J]. Scientia Agricultura Sinica, 2019, 52(12): 2042-2055.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!