





中国农业科学 ›› 2019, Vol. 52 ›› Issue (23): 4228-4239.doi: 10.3864/j.issn.0578-1752.2019.23.004
朱从桦1,2,张玉屏1,向镜1,张义凯1,武辉1,王亚梁1,朱德峰1,陈惠哲1(
)
收稿日期:2019-04-03
接受日期:2019-06-03
出版日期:2019-12-01
发布日期:2019-12-01
联系方式:
朱从桦,Tel:0571-63136702;E-mail:zchsicau@163.com
基金资助:
ZHU CongHua1,2,ZHANG YuPing1,XIANG Jing1,ZHANG YiKai1,WU Hui1,WANG YaLiang1,ZHU DeFeng1,CHEN HuiZhe1(
)
Received:2019-04-03
Accepted:2019-06-03
Published:2019-12-01
Online:2019-12-01
摘要:
【目的】水稻机插同步侧深施肥是一项新兴的技术,正在迅速发展。深入探究不同类型氮肥机械侧深施用对机插水稻产量及氮素利用效率的影响,有利于提高水稻机械化种植水平,为机插水稻节本增效提供理论依据。【方法】2017年和2018年开展大田试验,采用完全随机区组试验设计,设置5种施氮处理,即不施氮肥(N0)、尿素撒施(CUB)、尿素机械侧深施(CUM)、控释尿素撒施(CRUB)和控释尿素机械侧深施(CRUM),测定水稻物质生产特性、氮素积累分配、氮素利用效率、产量及产量构成因素。【结果】2年各施氮处理对水稻产量形成、氮素利用的影响基本一致。与尿素相比,控释尿素可以显著提高水稻干物质积累量、氮素积累量、氮肥利用率以及稻谷产量;2017年成熟期干物质积累量和氮素积累量、氮肥吸收利用率(NRE)、氮肥农学效率(NAE)和稻谷产量分别增加3.22%、17.50%、46.00%、17.79%和3.72%,2018年相应增幅分别为8.77%、13.27%、32.07%、12.74%和3.32%。与人工撒施相比,机械侧深施可以显著提高氮肥利用率,2017年NRE和NAE分别增加17.91%—43.14%和19.61%—37.39%;2018年NRE和NAE分别增加53.80%—54.10%和21.11%—35.11%。与人工撒施相比,机械侧深施肥处理的产量分别增加4.46%—6.95%(2017年)、5.55%—8.11%(2018年);增产的主要原因是其具有更多有效穗数和颖花总量。齐穗至成熟期,CRUM处理茎叶鞘氮素积累量和茎叶氮素表观转移量(TNT)均显著高于其他施氮处理。此外,在穗分化期和齐穗期,相比其他施氮处理,CRUM处理的氮素积累量、SPAD值、干物质积累量均显著增加。【结论】控释尿素机械侧深施(CRUM)是一种能提高机插水稻产量和氮素利用的有效施肥方法。
朱从桦, 张玉屏, 向镜, 张义凯, 武辉, 王亚梁, 朱德峰, 陈惠哲. 侧深施氮对机插水稻产量形成及氮素利用的影响[J]. 中国农业科学, 2019, 52(23): 4228-4239.
ZHU CongHua, ZHANG YuPing, XIANG Jing, ZHANG YiKai, WU Hui, WANG YaLiang, ZHU DeFeng, CHEN HuiZhe. Effects of Side Deep Fertilization on Yield Formation and Nitrogen Utilization of Mechanized Transplanting Rice[J]. Scientia Agricultura Sinica, 2019, 52(23): 4228-4239.
表1
水稻生长季平均气温、最高温度、最低温度、蒸发量、降水量、相对湿度和日照时数"
| 年份 Year | 月份 Month | 平均气温 Average air temperature (℃) | 最高温度 Maximum temperature (℃) | 最低温度 Minimum temperature (℃) | 蒸发量 Vaporization (mm) | 降水量 Precipitation (mm) | 相对湿度 Relative humidity (%) | 日照时数 Sunshine hours (h) |
|---|---|---|---|---|---|---|---|---|
| 2017 | 7月 July | 31.65 | 41.10 | 23.80 | 162.10 | 41.32 | 64.94 | 273.00 |
| 8月 August | 30.95 | 39.10 | 24.10 | 163.40 | 48.02 | 69.26 | 250.10 | |
| 9月 September | 27.03 | 38.20 | 18.20 | 121.20 | 66.61 | 73.17 | 157.70 | |
| 10月 October | 20.51 | 36.60 | 8.30 | 102.60 | 37.62 | 73.10 | 146.30 | |
| 11月 November | 14.21 | 26.10 | 6.10 | 60.30 | 138.61 | 78.87 | 95.80 | |
| 2018 | 5月 May | 23.74 | 37.40 | 12.80 | 148.20 | 233.40 | 80.39 | 141.60 |
| 6月 June | 25.45 | 36.30 | 17.20 | 166.90 | 228.50 | 82.07 | 187.20 | |
| 7月 July | 29.74 | 38.70 | 24.10 | 250.90 | 272.10 | 78.35 | 250.90 | |
| 8月 August | 29.38 | 37.30 | 22.30 | 256.20 | 232.20 | 78.06 | 225.10 | |
| 9月 September | 25.30 | 35.60 | 16.90 | 162.80 | 133.20 | 81.73 | 154.00 | |
| 10月 October | 18.14 | 27.80 | 8.60 | 118.00 | 21.00 | 72.65 | 180.10 |
表2
机械侧深施氮对水稻产量及产量构成的影响"
| 年份 Year | 处理 Treatment | 籽粒产量 Grain yield (t·hm-2) | 有效穗数 Effective panicle number (104·hm-2) | 颖花总量 Total amount of spikelet (106·hm-2) | 每穗实粒数 Number of filled grains per panicle | 结实率 Seed-setting rate (%) | 千粒重 1000-grain weight (g) |
|---|---|---|---|---|---|---|---|
| 2017 | N0 | 5.42d | 201.11e | 310.16d | 114.79abc | 74.40a | 24.29b |
| CUB | 6.62c | 269.44d | 426.85c | 116.88ab | 73.74a | 25.15ab | |
| CUM | 7.08ab | 293.89b | 482.25a | 120.54a | 73.50a | 24.53ab | |
| CRUB | 6.95b | 285.00c | 456.48b | 113.56bc | 70.86b | 24.89ab | |
| CRUM | 7.26a | 316.11a | 496.51a | 109.72c | 69.86b | 25.48a | |
| 2018 | N0 | 7.04c | 228.25c | 426.43d | 155.98b | 83.67c | 23.30b |
| CUB | 9.13b | 287.97b | 544.79c | 162.45ab | 85.95a | 23.33b | |
| CUM | 9.87a | 330.37a | 636.86ab | 163.42ab | 84.78b | 24.06a | |
| CRUB | 9.55ab | 319.77a | 602.54b | 162.19ab | 86.03a | 24.14a | |
| CRUM | 10.08a | 328.97a | 668.32a | 170.54a | 83.91c | 24.17a |
表4
机械侧深施氮对水稻干物质积累、转运和收获指数的影响"
| 年份 Year | 处理 Treatment | 干物质积累量 Dry matter accumulation (t·hm-2) | 齐穗后干物质积累所占比例RDMA-FHM (%) | 营养器官干物质输出量 DME (t·hm-2) | 营养器官干物质转运率 TRDV (%) | 收获指数 Harvest index (%) | |||
|---|---|---|---|---|---|---|---|---|---|
| 穗分化期 PI | 齐穗期 FH | 齐穗—成熟 FTM | 成熟期 MS | ||||||
| 2017 | N0 | 1.77d | 6.06d | 4.21c | 10.26d | 40.84a | 1.11c | 22.91ab | 52.91ab |
| CUB | 2.27c | 7.34c | 5.19ab | 12.53c | 41.43a | 1.19bc | 20.09ab | 52.89ab | |
| CUM | 2.67b | 8.22b | 5.36a | 13.58a | 39.38ab | 1.22bc | 18.25b | 52.12ab | |
| CRUB | 2.62b | 8.24b | 4.73b | 12.97b | 36.44bc | 1.54ab | 23.23ab | 53.64a | |
| CRUM | 2.94a | 8.97a | 5.02ab | 13.98a | 35.85c | 1.72a | 24.20a | 51.93b | |
| 2018 | N0 | 4.42c | 9.59c | 4.10c | 13.69d | 29.92a | 1.98c | 25.56a | 51.51a |
| CUB | 5.22b | 12.56b | 4.89bc | 17.45c | 27.82a | 2.38b | 23.01ab | 52.32a | |
| CUM | 6.81a | 13.67a | 5.15b | 18.81b | 27.19a | 2.78a | 25.27a | 52.46a | |
| CRUB | 5.51b | 12.60b | 6.54a | 19.14b | 34.09a | 2.05bc | 19.52b | 49.89a | |
| CRUM | 6.99a | 13.95a | 6.36a | 20.30a | 31.11a | 3.00a | 26.70a | 49.73 a | |
表5
机械侧深施氮对水稻氮素转移的影响"
| 年份 Year | 试验处理 Treatment | 茎叶氮素表观 转移量 TNT (kg·hm-2) | 茎叶氮素表观 转移率 TNTE (%) | 茎叶转移的氮对籽粒氮的贡献率 NCR (%) | 茎鞘Stem-sheath | 叶 Leaf | ||
|---|---|---|---|---|---|---|---|---|
| SNT (kg·hm-2) | SNTE (%) | LNT (kg·hm-2) | LNTE (%) | |||||
| 2017 | N0 | 40.18d | 74.93a | 64.56b | 16.06c | 69.67a | 24.12d | 78.92a |
| CUB | 49.01c | 63.77b | 56.96c | 18.65c | 57.56b | 30.36c | 68.20b | |
| CUM | 57.50b | 61.87bc | 60.59b | 22.31b | 53.04c | 35.19b | 69.12b | |
| CRUB | 68.97a | 63.11bc | 70.90a | 25.66a | 54.46bc | 43.31a | 69.61b | |
| CRUM | 74.62a | 61.46c | 72.99a | 27.13a | 51.98c | 47.49a | 68.62b | |
| 2018 | N0 | 32.50b | 52.36a | 53.25a | 16.84ab | 48.02a | 15.66b | 58.03a |
| CUB | 27.60c | 35.21c | 30.60b | 11.74c | 26.13b | 15.86b | 47.55b | |
| CUM | 38.54a | 40.12b | 33.45b | 19.71a | 34.55b | 18.82a | 48.42b | |
| CRUB | 33.24b | 37.65bc | 30.35b | 15.16bc | 30.00b | 18.08ab | 47.75b | |
| CRUM | 39.51a | 39.43bc | 28.41b | 19.70a | 33.29b | 19.81a | 48.26b | |
表6
机械侧深施氮对水稻氮素利用的影响"
| 年份 Year | 处理 Treatment | 氮素干物质生产率 N dry matter production efficiency (kg·kg-1) | 氮素稻谷生产率 N grain production efficiency (kg·kg-1) | 氮肥吸收利用率 N recovery efficiency (%) | 氮肥农学效率 N agronomic use efficiency (kg·kg-1) |
|---|---|---|---|---|---|
| 2017 | N0 | 135.69a | 71.64a | — | — |
| CUB | 109.97b | 58.17b | 25.50d | 8.05c | |
| CUM | 104.21c | 54.31c | 36.50c | 11.06b | |
| CRUB | 94.11d | 50.47d | 41.53b | 10.25b | |
| CRUM | 93.76d | 48.67d | 48.97a | 12.26a | |
| 2018 | N0 | 95.07a | 69.61a | — | — |
| CUB | 80.15b | 58.05b | 31.22c | 11.62b | |
| CUM | 73.08bc | 52.67c | 48.11b | 15.70a | |
| CRUB | 71.92cd | 54.46bc | 41.28b | 13.93ab | |
| CRUM | 64.89d | 46.85d | 63.49a | 16.87a |
| [1] | 唐珍琦 . 湖南水稻种植情况调查及不同养分管理模式对水稻产量的影响研究[D]. 长沙: 湖南农业大学, 2009: 23-31. |
| TANG Z Q . Investigation on rice cultivation and effects of different nutrient management mode on rice yield in Hunan province[D]. Changsha: Hunan Agricultural University, 2009: 23-31. (in Chinese) | |
| [2] | 段然, 汤月丰, 王亚男, 王伟政, 白玲玉, 吴翠霞, 文炯, 曾希柏 . 不同施肥方法对双季稻区水稻产量及氮素流失的影响. 中国生态农业学报, 2017,25(12):1815-1822. |
| DUAN R, TANG Y F, WANG Y N, WANG W Z, BAI L Y, WU C X, WEN J, ZENG X B . Effects of different fertilization modes on rice yield and nitrogen loss in paddy soils under double cropping rice. Chinese Journal of Eco-Agriculture, 2017,25(12):1815-1822. (in Chinese) | |
| [3] |
张洪程, 龚金龙 . 中国水稻种植机械化高产农艺研究现状及发展探讨. 中国农业科学, 2014,47(7):1273-1289.
doi: 10.3864/j.issn.0578-1752.2014.07.004 |
|
ZHANG H C, GONG J L . Research status and development discussion on high-yielding agronomy of mechanized planting rice in China. Scientia Agricultura Sinica, 2014,47(7):1273-1289. (in Chinese)
doi: 10.3864/j.issn.0578-1752.2014.07.004 |
|
| [4] | 侯红乾, 冀建华, 刘益仁, 黄永兰, 冯兆滨, 刘秀梅, 胡兆平, 韦礼和, 王子君 . 缓/控释肥对双季稻产量、氮素吸收和平衡的影响. 土壤, 2018,50(1):43-50. |
| HOU H Q, JI J H, LIU Y R, HUANG Y L, FENG Z B, LIU X M, HU Z P, WEI L H, WANG Z J . Effects of slow/controlled-release fertilizer on grain yield, N uptake and soil N balance in double cropping rice. Soils, 2018,50(1):43-50. (in Chinese) | |
| [5] | 张雪凌, 姜慧敏, 刘晓, 郭康莉, 杨俊诚, 邓仕槐, 张建峰 . 优化氮肥用量和基追比例提高红壤性水稻土肥力和双季稻氮素的农学效应. 植物营养与肥料学报, 2017,23(2):351-359. |
| ZHANG X L, JIANG H M, LIU X, GUO K L, YANG J C, DENG S H, ZHANG J F . Optimization of nitrogen rate and base and topdressing ratio to improve agronomic soil fertility and use efficiency of nitrogen in rice. Journal of Plant Nutrition and Fertilizer, 2017,23(2):351-359. (in Chinese) | |
| [6] | 赵红玉, 徐寿军, 杨成林, 王丽妍 . 侧深施肥技术对寒地水稻生长及产量形成的影响. 内蒙古民族大学学报(自然科学版), 2017,32(4):347-352. |
| ZHAO H Y, XU S J, YANG C L, WANG L Y . Effects of side deep fertilizing on growth and yield of rice in cold regions. Journal of Inner Mongolia University for Nationalities (Natural Sciences), 2017,32(4):347-352. (in Chinese) | |
| [7] |
苑俊丽, 梁新强, 李亮, 叶玉适, 傅朝栋, 宋清川 . 中国水稻产量和氮素吸收量对高效氮肥响应的整合分析. 中国农业科学, 2014,47(17):3414-3423.
doi: 10.3864/j.issn.0578-1752.2014.17.009 |
|
YUAN J L, LIANG X Q, LI L, YE Y S, FU C D, SONG Q C . Response of rice yield and nitrogen uptake to enhanced efficiency nitrogen fertilizer in China: A meta-analysis. Scientia Agricultura Sinica, 2014,47(17):3414-3423. (in Chinese)
doi: 10.3864/j.issn.0578-1752.2014.17.009 |
|
| [8] |
ALIMATA B, FOFANA B, SANSAN Y, EBENEZER S, ROBERT A, OPOKU A . Effect of fertilizer deep placement with urea supergranule on nitrogen use efficiency of irrigated rice in Sourou Valley (Burkina Faso). Nutrient Cycling in Agroecosystems, 2015,102(1):79-89.
doi: 10.1007/s10705-014-9653-6 |
| [9] |
LIU T Q, FAN D J, ZHANG X X, LI C F, CAO C G, CHEN J Z . Deep placement of nitrogen fertilizers reduces ammonia volatilization and increases nitrogen utilization efficiency in no-tillage paddy fields in central China. Field Crops Research, 2015,184:80-90.
doi: 10.1016/j.fcr.2015.09.011 |
| [10] | 马昕, 杨艳明, 刘智蕾, 孙彦坤, 于彩莲, 彭显龙 . 机械侧深施控释掺混肥提高寒地水稻的产量和效益. 植物营养与肥料学报, 2017,33(4):1095-1103. |
| MA X, YANG Y M, LIU Z L, SUN Y K, YU C L, PENG X L . Yield increasing effect of mechanical topdressing of polymer-coated urea mixed with compound fertilizer in cold area rice. Journal of Plant Nutrition and Fertilizer, 2017,33(4):1095-1103. (in Chinese) | |
| [11] | 王秀斌, 徐新朋, 孙静文, 梁国庆, 刘光荣, 周卫 . 氮肥运筹对机插双季稻产量、氮肥利用率及经济效益的影响. 植物营养与肥料学报, 2016,22(5):1167-1176. |
| WANG X B, XU X P, SUN J W, LIANG G Q, LIU G R, ZHOU W . Effects of nitrogen application on yield, nitrogen use efficiency and economic benefit of double-cropping rice by mechanical transplanting. Journal of Plant Nutrition and Fertilizer, 2016,22(5):1167-1176. (in Chinese) | |
| [12] | 孟琳, 张小莉, 蒋小芳, 王秋君, 黄启为, 徐阳春, 杨兴明, 沈其荣 . 有机肥料氮替代部分化肥氮对稻谷产量的影响及替代率. 中国农业科学, 2009,42(2):532-542. |
| MENG L, ZHANG X L, JIANG X F, WANG Q J, HUANG Q W, XU Y C, YANG X M, SHEN Q R . Effects of partial mineral nitrogen substitution by organic fertilizer nitrogen on the yields of rice grains and their proper substitution rate. Scientia Agricultura Sinica, 2009,42(2):532-542. (in Chinese) | |
| [13] | 鲁艳红, 聂军, 廖育林, 周兴, 王宇, 汤文光 . 氮素抑制剂对双季稻产量、氮素利用效率及土壤氮平衡的影响. 植物营养与肥料学报, 2018,24(1):95-104. |
| LU Y H, NIE J, LIAO Y L, ZHOU X, WANG Y, TANG W G . Effects of urease and nitrification inhibitor on yield, nitrogen efficiency and soil nitrogen balance under double-rice cropping system. Journal of Plant Nutrition and Fertilizer, 2018,24(1):95-104. (in Chinese) | |
| [14] |
侯红乾, 黄永兰, 冀建华, 刘益仁, 刘秀梅, 胡兆平 . 缓/控释肥对双季稻产量和氮素利用率的影响. 中国水稻科学, 2016,30(4):389-396.
pmid: 12812067 |
|
HOU H Q, HUANG Y L, JI J H, LIU Y R, LIU X M, HU Z P . Effects of controlled-release fertilizer application on double cropping rice yield and nitrogen use efficiency. Chinese Journal of Rice Science, 2016,30(4):389-396. (in Chinese)
pmid: 12812067 |
|
| [15] | 张宣, 丁俊山, 刘彦伶, 顾艳, 韩科峰, 吴良欢 . 机插配合控释掺混肥对水稻产量和土壤肥力的影响. 应用生态学报, 2014,25(3):783-789. |
| ZHANG X, DING J S, LIU Y L, GU Y, HAN K F, WU L H . Effects of mechanical transplanting of rice with controlled release bulk blending fertilizer on rice yield and soil fertility. Chinese Journal of Applied Ecology, 2014,25(3):783-789. (in Chinese) | |
| [16] | 贺帆, 黄见良, 崔克辉, 王强, 汤蕾蕾, 龚伟华, 徐波, 彭少兵, BURESH R J. 实时实地氮肥管理对不同杂交水稻氮肥利用率的影响. 中国农业科学, 2008,41(2):470-479. |
| HE F, HUANG J L, CUI K H, WANG Q, TANG L L, GONG W H, XU B, PENG S B, BURESH R J . Effect of real-time and site-specific nitrogen management on various hybrid rice. Scientia Agricultura Sinica, 2008,41(2):470-479. (in Chinese) | |
| [17] | 庞桂斌, 彭世彰 . 中国稻田施氮技术研究进展. 土壤, 2010,42(3):329-335. |
| PANG G B, PENG S Z . Research advances of nitrogen fertilizer application technologies in Chinese rice field. Soils, 2010,42(3):329-335. (in Chinese) | |
| [18] |
薛欣欣, 吴小平, 张永发, 罗雪华, 邹碧霞, 王大鹏, 王文斌 . 控失尿素对稻田氨挥发、氮素转运及利用效率的影响. 应用生态学报, 2018,29(1):133-140.
doi: 10.13287/j.1001-9332.201801.023 pmid: 29692021 |
|
XUE X X, WU X P, ZHANG Y F, LUO X H, ZOU B X, WANG D P, WANG W B . Effects of loss-controlled urea on ammonia volatilization, N translocation and utilization efficiency in paddy rice. Chinese Journal of Applied Ecology, 2018,29(1):133-140. (in Chinese)
doi: 10.13287/j.1001-9332.201801.023 pmid: 29692021 |
|
| [19] | 张木, 唐拴虎, 逄玉万, 易琼, 黄旭, 黄巧义 . 不同氮肥及施用方式对水稻养分吸收特征及产量形成的影响. 中国土壤与肥料, 2017(2):69-75. |
| ZHANG M, TANG S H, PANG Y W, YI Q, HUANG X, HUANG Q Y . Effects of different nitrogen fertilizer and fertilization patterns on nutrients uptake and yield formation of rice. Soil and Fertilizer Sciences in China, 2017(2):69-75. (in Chinese) | |
| [20] |
孙浩燕, 李小坤, 任涛, 丛日环, 鲁剑巍 . 浅层施肥对水稻苗期根系生长及分布的影响. 中国农业科学, 2014,47(12):2476-2484.
doi: 10.3864/j.issn.0578-1752.2014.12.020 |
|
SUN H Y, LI X K, REN T, CONG R H, LU J W . Effects of fertilizer in shallow soils on growth and distribution of rice roots at seedling stage. Scientia Agricultura Sinica, 2014,47(12):2476-2484. (in Chinese)
doi: 10.3864/j.issn.0578-1752.2014.12.020 |
|
| [21] | 孙浩燕, 王森, 李小坤, 任涛, 丛日环 . 浅层施肥对水稻苗期养分吸收及土壤养分分布的影响. 土壤, 2015,47(6):1061-1067. |
| SUN H Y, WANG S, LI X K, REN T, CONG R H . Effects of shallow fertilization on rice nutrient uptake and soil nutrient distribution at seedling stage. Soils, 2015, 47(6):1061-1067. (in Chinese) | |
| [22] |
ZHANG M, YAO Y L, ZHAO M, ZHANG B W, TIAN Y H, YIN B, ZHU Z L . Integration of urea deep placement and organic addition for improving yield and soil properties and decreasing N loss in paddy field. Agriculture Ecosystems & Environment, 2017,247:236-245.
doi: 10.1016/j.scitotenv.2019.135818 pmid: 31841898 |
| [23] | 李殿平, 曹海峰, 张俊宝, 金学泳 . 全程深施肥对水稻产量形成及稻米品质的影响. 中国水稻科学, 2006,20(1):73-78. |
| LI D P, CAO H F, ZHANG J B, JIN X Y . Effect of deep application of fertilizer in the whole growing period on yield formation and quality of rice. Chinese Journal of Rice Science, 2006,20(1):73-78. (in Chinese) | |
| [24] |
YAO Z, ZHENG X, ZHANG Y, LIU C, WANG R, LIN S, ZUO Q, BUTTERBACH-BAHL K . Urea deep placement reduces yield-scaled greenhouse gas (CH4 and N2O) and NO emissions from a ground cover rice production system. Scientific Reports, 2017,7(1):11415.
doi: 10.1038/s41598-017-11772-2 pmid: 28900234 |
| [25] |
HUDA A, GAIHRE Y K, ISLAM M R, SINGH U, ISLAM M R, SANABRIA J, SATTER M A, AFROZ H, HALDER A, JAHIRUDDIN M . Floodwater ammonium, nitrogen use efficiency and rice yields with fertilizer deep placement and alternate wetting and drying under triple rice cropping systems. Nutrient Cycling in Agroecosystems, 2016,104(1):53-66.
doi: 10.1007/s10705-015-9758-6 |
| [26] |
LIVERPOOL-TASIE L S O, ADJOGNON S, KUKU-SHITTU O . Productivity effects of sustainable intensification: The case of urea deep placement for rice production in Niger State, Nigeria. African Journal of Agricultural & Resource Economics, 2015,10(1):51-63.
doi: 10.1039/c9fo01461f pmid: 31840698 |
| [27] | 刘晓伟, 陈小琴, 王火焰, 卢殿君, 周健民, 陈照明, 朱德进 . 根区一次施氮提高水稻氮肥利用效率的效果和原理. 土壤, 2017,49(5):868-875. |
| LIU X W, CHEN X Q, WANG H Y, LU D J, ZHOU J M, CHEN Z M, ZHU D J . Effects and principle of root-zone one-time N fertilization on enhancing rice (Oryza sativa L.) N use efficiency. Soils, 2017,49(5):868-875. (in Chinese) | |
| [28] |
KARGBO , PAN S G, MO Z W, WANG Z M, LUO X W, TIAN H, HOSSAIN M F, ASHRAF U, RU T X . Physiological basis of improved performance of super rice ( Oryza sativa L.) to deep placed fertilizer with precision hill-drilling machine. International Journal of Agriculture & Biology, 2016,18(4):797-804.
doi: 10.4315/0362-028X.JFP-19-126 pmid: 31841360 |
| [29] | 朱从桦, 陈惠哲, 张玉屏, 向镜, 张义凯, 易子豪, 朱德峰 . 机械侧深施肥对机插早稻产量及氮肥利用率的影响. 中国稻米, 2019,25(1):40-43. |
| ZHU C H, CHEN H Z, ZHANG Y P, XIANG J, ZHANG Y K, YI Z H, ZHU D F . Effects of side deep mechanical fertilization on yield and nitrogen use efficiency of early rice. China Rice, 2019,25(1):40-43. (in Chinese) | |
| [30] | 武姣娜, 魏晓东, 李霞, 李金飞, 谢寅峰 . 植物氮素利用效率的研究进展. 植物生理学报, 2018,54(9):1401-1408. |
| WU J N, WEI X D, LI X, LI J F, XIE Y F . Research progress in nitrogen use efficiency in plants. Plant Physiology Journal, 2018,54(9):1401-1408. (in Chinese) | |
| [31] | 孙浩燕, 王森, 任涛, 丛日环, 李小坤 . 不同施肥方式下氮肥用量对直播稻根系形态及氮素吸收的影响. 中国土壤与肥料, 2017(6):88-92. |
| SUN H Y, WANG S, REN T, CONG R H, LI X K . Effects of nitrogen fertilizer application on root morphological characteristics and nitrogen absorption of rice under different fertilization methods. Soil and Fertilizer Sciences in China, 2017(6):88-92. (in Chinese) | |
| [32] |
彭玉, 马均, 蒋明金, 严奉君, 孙永健, 杨志远 . 缓/控释肥对杂交水稻根系形态、生理特性和产量的影响. 植物营养与肥料学报, 2013,19(5):1048-1057.
doi: 10.11674/zwyf.2013.0503 |
|
PENG Y, MA J, JIANG M J, YAN F J, SUN Y J, YANG Z Y . Effects of slow/controlled release fertilizer on root morphological and physiological characteristics of rice. Journal of Plant Nutrition and Fertilizer, 2013,19(5):1048-1057. (in Chinese)
doi: 10.11674/zwyf.2013.0503 |
|
| [33] |
YAO Y L, ZHANG M, TIAN Y H, ZHAO M, ZHANG B W, ZENG K, ZHAO M, YIN B . Urea deep placement in combination with Azolla for reducing nitrogen loss and improving fertilizer nitrogen recovery in rice field. Field Crops Research, 2018,218:141-149.
doi: 10.1016/j.fcr.2018.01.015 |
| [34] |
KE J, HE R C, HOU P F, DING C, DING Y F, WANG S H, LIU Z H, TANG S, DING C Q, CHEN L, LI G H . Combined controlled- released nitrogen fertilizers and deep placement effects of N leaching, rice yield and N recovery in machine-transplanted rice. Agriculture, Ecosystems & Environment, 2018,265:402-412.
doi: 10.1016/j.scitotenv.2019.135818 pmid: 31841898 |
| [35] |
DATTA A, SANTRA S C, ADHYA T K . Environmental and economic opportunities of applications of different types and application methods of chemical fertilizer in rice paddy. Nutrient Cycling in Agroecosystems, 2017,107(1):1-19.
doi: 10.1007/s10705-016-9799-5 |
| [36] |
DAS S, ISLAM M R, SULTANA M, AFROZ H, HASHEM M A . Effect of deep placement of nitrogen fertilizers on rice yield and N use efficiency under water regimes. SAARC Journal of Agriculture, 2015,13(2):161-172.
doi: 10.3329/sja.v13i2.26577 |
| [1] | 彭廷燊, 陆久焱, 吴美林, 严雨欣, 刘宏周, 南文斌, 秦小健, 李明, 龚俊义, 梁永书. 多年生水稻黄糯2号和长白7号产量相关性状的QTL分析[J]. 中国农业科学, 2026, 59(7): 1361-1379. |
| [2] | 王玉萍, 符质, 孙佳莹, 穆晓萌, 刘慧淋, 郭进云, 宋文菁, 侯雷平, 赵海亮. 苗期施用褪黑素对番茄短期低温胁迫的缓解作用与应用效果评价[J]. 中国农业科学, 2026, 59(7): 1523-1535. |
| [3] | 王佳诺, 陈桂平, 李盼, 王丽萍, 南运有, 何蔚, 樊志龙, 胡发龙, 柴强, 殷文, 赵连豪. 免耕地膜两年覆盖提高绿洲灌区玉米产量的灌浆期光合生理机制[J]. 中国农业科学, 2026, 59(6): 1189-1202. |
| [4] | 周新杰, 任昊, 陈应龙, 张吉旺, 赵斌, 任佰朝, 刘鹏, 王洪章. 过氧化钙对渍涝农田夏玉米根系形态及产量形成的影响[J]. 中国农业科学, 2026, 59(6): 1203-1216. |
| [5] | 何继航, 张擎, 吕相月, 薛吉全, 徐淑兔, 刘建超. 不同保绿型玉米杂交种氮效率评价[J]. 中国农业科学, 2026, 59(6): 1217-1230. |
| [6] | 陈敏, 焦紫岚, 乔承彬, 许昊, 张碧, 马东花, 孔维儒, 王敬文, 宋佳伟, 罗成科, 李培富, 田蕾. 不同亚种水稻种质资源对盐胁迫的形态生理响应及适应策略[J]. 中国农业科学, 2026, 59(4): 705-722. |
| [7] | 郭富城, 唐海江, 郝馨怡, 马国林, 杨九菊, 黄霖锋, 田蕾, 王彬, 罗成科. 不同灌溉方式对宁夏盐渍化土壤水盐运移、水稻产量及水分利用效率的影响[J]. 中国农业科学, 2026, 59(4): 750-764. |
| [8] | 张卫建, 严圣吉, 尚子吟, 唐志伟, 吴柳格, 李佳锐, 陈浩天, 邓艾兴, 张俊, 张鑫, 郑成岩, 宋振伟. 稻田甲烷不完全源于水稻种植的人为贡献[J]. 中国农业科学, 2026, 59(4): 824-833. |
| [9] | 郝琨, 陈洪德, 张威, 钟韵, 党美荣, 朱士江, 黄志坤, 金英. 基于柑橘产量、品质及水氮利用的涌泉根灌水氮综合评价[J]. 中国农业科学, 2026, 59(4): 862-873. |
| [10] | 朱姝, 国志鹏, 孙颖. 水稻雷帕霉素靶蛋白OsTOR调控根伸长的功能研究[J]. 中国农业科学, 2026, 59(3): 475-485. |
| [11] | 延廷霖, 杜娅丹, 胡笑涛, 王贺, 李晓雁, 王玉明, 牛文全, 谷晓博. 加气滴灌下氮肥有机替代对亏缺灌溉棉花产量和水分利用效率的影响[J]. 中国农业科学, 2026, 59(3): 602-618. |
| [12] | 吕文彦, 程海涛, 马兆惠, 田淑华. 育种新时代水稻杂交育种技术与策略探讨[J]. 中国农业科学, 2026, 59(2): 233-238. |
| [13] | 廖婷璐, 石亚飞, 肖东浩, 舍杨梦斐, 郭富城, 杨九菊, 唐海江, 罗成科. 外源硝普钠对碱胁迫下水稻幼苗糖代谢的影响[J]. 中国农业科学, 2026, 59(2): 265-277. |
| [14] | 蔡廷阳, 朱玉鹏, 李瑞东, 吴宗声, 徐一帆, 宋雯雯, 徐彩龙, 吴存祥. 苗期叶损伤对黄淮海夏大豆光合特性、荚果分布及产量形成的影响[J]. 中国农业科学, 2026, 59(2): 292-304. |
| [15] | 刘天生, 刘耕源, 赵安琪, 杨旭, 蔡明雪, 杨艾文, 娄铭轩, 李沐恺, 王晗, 张亚玲. 黑龙江省水稻恶苗病致病群体[J]. 中国农业科学, 2026, 59(2): 305-321. |
|
||