Chinese Agricultural Science Bulletin ›› 2020, Vol. 36 ›› Issue (26): 1-8.doi: 10.11924/j.issn.1000-6850.casb20200200122
Wang Jiwei1,2(), Qi Dongliang2(
)
Received:
2020-02-21
Revised:
2020-04-17
Online:
2020-09-15
Published:
2020-09-14
Contact:
Qi Dongliang
E-mail:wjw@dyjs.com;qdl198799@126.com
CLC Number:
Wang Jiwei, Qi Dongliang. Irrigation and Nitrogen Supply Methods: Effect on Leaf Physiological Characteristics and Yield of Maize[J]. Chinese Agricultural Science Bulletin, 2020, 36(26): 1-8.
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URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb20200200122
时期 | 播后天数/d | 交替施氮 | 均匀施氮 | 交替灌水 | 均匀灌水 |
---|---|---|---|---|---|
播前 | -1 | 南侧沟 | 两侧沟 | ||
播后 | 2 | 两侧沟 | 两侧沟 | ||
拔节 | 40 | 南/北侧沟 | 两侧沟 | ||
大喇叭口 | 69 | 北侧沟 | 两侧沟 | 南/北侧沟 | 两侧沟 |
抽雄 | 80 | 南侧沟 | 两侧沟 | 南/北侧沟 | 两侧沟 |
灌浆 | 93 | 南/北侧沟 | 两侧沟 | ||
乳熟 | 105 | 南/北侧沟 | 两侧沟 |
时期 | 播后天数/d | 交替施氮 | 均匀施氮 | 交替灌水 | 均匀灌水 |
---|---|---|---|---|---|
播前 | -1 | 南侧沟 | 两侧沟 | ||
播后 | 2 | 两侧沟 | 两侧沟 | ||
拔节 | 40 | 南/北侧沟 | 两侧沟 | ||
大喇叭口 | 69 | 北侧沟 | 两侧沟 | 南/北侧沟 | 两侧沟 |
抽雄 | 80 | 南侧沟 | 两侧沟 | 南/北侧沟 | 两侧沟 |
灌浆 | 93 | 南/北侧沟 | 两侧沟 | ||
乳熟 | 105 | 南/北侧沟 | 两侧沟 |
处理 | 超氧化物歧化酶/[U/(g·min)] | 过氧化物酶/[μg/(g·min)] | 过氧化氢酶/[μmol H2O2/(g·min)] | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | |||
CICN | 710c | 745c | 703c | 56.53b | 64.11c | 50.54c | 24.54b | 32.54c | 21.11c | ||
CIAN | 720c | 753c | 710c | 58.96b | 70.54c | 55.43c | 25.38b | 35.65c | 22.34c | ||
AICN | 794a | 808a | 786a | 65.87a | 81.76a | 68.75a | 30.12a | 44.87b | 27.82b | ||
AIANS | 787a | 810a | 790a | 67.82a | 85.43a | 67.11a | 32.11a | 48.14a | 28.98b | ||
AIAND | 750b | 777b | 754b | 60.53b | 76.12b | 60.45b | 30.14a | 43.13b | 35.42a |
处理 | 超氧化物歧化酶/[U/(g·min)] | 过氧化物酶/[μg/(g·min)] | 过氧化氢酶/[μmol H2O2/(g·min)] | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | |||
CICN | 710c | 745c | 703c | 56.53b | 64.11c | 50.54c | 24.54b | 32.54c | 21.11c | ||
CIAN | 720c | 753c | 710c | 58.96b | 70.54c | 55.43c | 25.38b | 35.65c | 22.34c | ||
AICN | 794a | 808a | 786a | 65.87a | 81.76a | 68.75a | 30.12a | 44.87b | 27.82b | ||
AIANS | 787a | 810a | 790a | 67.82a | 85.43a | 67.11a | 32.11a | 48.14a | 28.98b | ||
AIAND | 750b | 777b | 754b | 60.53b | 76.12b | 60.45b | 30.14a | 43.13b | 35.42a |
处理 | 可溶性糖/(mg/g) | 可溶性蛋白/(mg/g) | 脯氨酸/(mg/g) | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | |||
CICN | 33.12a | 37.84a | 20.17a | 15.84c | 12.34c | 6.21b | 48.45a | 77.87a | 40.11a | ||
CIAN | 34.13a | 39.55a | 20.65a | 16.43c | 13.12c | 7.08b | 47.14a | 78.14a | 39.87a | ||
AICN | 28.17c | 31.22c | 20.21a | 19.42a | 16.87a | 8.13a | 43.13c | 70.21c | 33.24b | ||
AIANS | 27.14c | 32.13c | 19.38a | 20.11a | 17.61a | 9.12a | 42.76c | 68.45c | 34.13b | ||
AIAND | 30.17b | 34.37b | 19.21a | 18.45b | 15.31b | 7.56b | 45.63b | 72.14b | 36.81b |
处理 | 可溶性糖/(mg/g) | 可溶性蛋白/(mg/g) | 脯氨酸/(mg/g) | ||||||||
---|---|---|---|---|---|---|---|---|---|---|---|
抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | 抽雄期 | 灌浆期 | 乳熟期 | |||
CICN | 33.12a | 37.84a | 20.17a | 15.84c | 12.34c | 6.21b | 48.45a | 77.87a | 40.11a | ||
CIAN | 34.13a | 39.55a | 20.65a | 16.43c | 13.12c | 7.08b | 47.14a | 78.14a | 39.87a | ||
AICN | 28.17c | 31.22c | 20.21a | 19.42a | 16.87a | 8.13a | 43.13c | 70.21c | 33.24b | ||
AIANS | 27.14c | 32.13c | 19.38a | 20.11a | 17.61a | 9.12a | 42.76c | 68.45c | 34.13b | ||
AIAND | 30.17b | 34.37b | 19.21a | 18.45b | 15.31b | 7.56b | 45.63b | 72.14b | 36.81b |
处理 | 行数 | 行粒数 | 穗粒数 | 千粒质量/g | 籽粒产量/(kg/hm2) |
---|---|---|---|---|---|
CICN | 15.5b | 19.4b | 398.7c | 290.1b | 7231c |
CIAN | 16.1b | 20.0b | 402.4c | 287.6b | 7380c |
AICN | 18.7a | 24.5a | 430.1a | 315.7a | 8219a |
AIANS | 19.1a | 25.1a | 433.4a | 313.4a | 8453a |
AIAND | 17.4b | 22.2b | 415.7b | 311.4a | 7888b |
处理 | 行数 | 行粒数 | 穗粒数 | 千粒质量/g | 籽粒产量/(kg/hm2) |
---|---|---|---|---|---|
CICN | 15.5b | 19.4b | 398.7c | 290.1b | 7231c |
CIAN | 16.1b | 20.0b | 402.4c | 287.6b | 7380c |
AICN | 18.7a | 24.5a | 430.1a | 315.7a | 8219a |
AIANS | 19.1a | 25.1a | 433.4a | 313.4a | 8453a |
AIAND | 17.4b | 22.2b | 415.7b | 311.4a | 7888b |
[1] | 康绍忠, 张建华, 梁宗锁, 等. 控制性交替灌溉:一种新的农田节水思路[J]. 干旱地区农业研究, 1997,15(1):1-5. |
[2] |
Du T S, Kang S Z, Zhang J H, et al. Deficit irrigation and sustainable water-resource strategies in agriculture for China’s food security[J]. Journal of Experimental Botany, 2015,66:2253-2269.
doi: 10.1093/jxb/erv034 URL pmid: 25873664 |
[3] |
Kang S Z, Zhang J H. Controlled alternate partial root-zone irrigation: its physiological consequences and impact on water use efficiency[J]. Journal of Experimental Botany, 2004,55(407):2437-2446.
URL pmid: 15361526 |
[4] |
Hu T T, Kang S Z, Li F S, et al. Effects of partial root-zone irrigation on hydraulic conductivity in the soil-root system of maize plants[J]. Journal of Experimental Botany, 2011,62:4163-4172.
doi: 10.1093/jxb/err110 URL pmid: 21527627 |
[5] | 汪耀富, 蔡寒玉, 张晓海, 等. 分根交替灌溉对烤烟生理特性和烟叶产量的影响[J]. 干旱地区农业研究, 2006,24(5):93-98. |
[6] | 穆兴民. 水肥耦合效应与协同管理[M]. 北京: 中国林业出版社, 1999. |
[7] | 茆智, 崔远来, 董斌, 等. 水稻高效节水与持续高产的灌排技术[J]. 水利水电技术, 2002,33(2):65-67. |
[8] | 谭军利, 王林权, 王西娜, 等. 水肥异区交替灌溉对夏玉米生理指标的影响[J]. 西北植物学报, 2010,30(2):344-349. |
[9] |
Foyer C H, Descourviers P, Kunert K J. Protection against oxygen radicals: An important defense mechanism studied in transgenic plants[J]. Plant, Cell and Environment, 1994,17:507-523.
doi: 10.1111/pce.1994.17.issue-5 URL |
[10] | 李广浩, 刘平平, 赵斌, 等. 不同水分条件下控释尿素对玉米产量和叶片衰老特性的影响[J]. 应用生态学报, 2017,28(2):571-580. |
[11] |
Hu T T, Yuan L N, Wang J F, et al. Antioxidation responses of maize roots and leaves to partial root-zone irrigation[J]. Agricultural Water Management, 2010,98:164-171.
doi: 10.1016/j.agwat.2010.06.019 URL |
[12] | 张文东, 赵志成, 李曼, 等. 交替滴灌对日光温室黄瓜光合作用及抗氧化酶活性的影响[J]. 植物生理学报, 2017,53(11):1997-2006. |
[13] | 原丽娜, 胡田田, 康绍忠, 等. 局部灌水方式下玉米根系对干旱及复水的生理生化响应[J]. 节水灌溉, 2010(9):15-23. |
[14] | 原丽娜, 胡田田. 局部施氮对玉米生理生化特性和产量的影响[J]. 干旱地区农业研究, 2008,26(4):49-52. |
[15] | 张仁和, 郭东伟, 张兴华, 等. 干旱胁迫下氮肥对玉米叶片生理特性的影响[J]. 玉米科学, 2012,20(6):118-122. |
[16] |
Li G H, Zhao B, Dong S T, et al. Controlled-release urea combining with optimal irrigation improved grain yield, nitrogen uptake, and growth of maize[J]. Agricultural Water Management, 2020,227:105834.
doi: 10.1016/j.agwat.2019.105834 URL |
[17] | 漆栋良, 胡田田, 吴雪, 等. 适宜灌水施氮方式利于玉米根系生长提高产量[J]. 农业工程学报, 2015,31(11):144-149. |
[18] | 漆栋良, 胡田田. 灌水施氮方式对玉米生育期土壤NO3-N时空分布的影响[J]. 农业机械学报, 2017,48(2):279-287. |
[19] | 漆栋良, 胡田田, 宋雪. 适宜灌水施氮方式提高制种玉米产量及水氮利用效率[J]. 农业工程学报, 2018,34(21):98-104. |
[20] | 鲁剑巍, 鲁君明, 陈防, 等. 江汉平原玉米施用磷肥效果研究[J]. 玉米科学, 2004,12(2):102-104. |
[21] | 肖俊夫, 刘占东, 陈玉民. 中国玉米需水量及需水规律研究[J]. 玉米科学, 2008,16(4):21-25. |
[22] | 张志良, 翟伟菁, 李小方. 植物生理学试验指导[M]. 北京: 高等教育出版社, 2008. |
[23] |
Lindquist J L, Arkebauer T J, Walters D T, et al. Maize radiation use efficiency under optimal growth conditions[J]. Agronomy Journal, 2005,97:72-78.
doi: 10.2134/agronj2005.0072 URL |
[24] | 徐祥玉, 张敏敏, 翟丙年, 等. 施氮对不同基因型夏玉米生理特性的影响[J]. 干旱地区农业研究, 2010,28(6):81-86. |
[25] |
Chakrabarty D, Chatterjee J, Datta S K. Oxidative stress and antioxidant activity as the basis of senescence in Chrysanthemum florets[J]. Plant Growth Regulation, 2007,53:107-115.
doi: 10.1007/s10725-007-9208-9 URL |
[26] | Chaves M M, Oliveira M M. Mechanisms underlying plant resilience to water deficits: prospects for water-saving agriculture. Journal of Experimental Botany, 2004,55(407):2365-2384. |
[27] | 程铭慧. 时空亏缺灌溉对玉米生长、生理特性及水分利用效率的影响[M]. 杨凌:西北农林科技大学, 2019. |
[28] | Ahmadi S H, Andersen M N, Plauborg F. Potato root growth and distribution under three soil types and full, deficit and partial root zone drying irrigations[J]. Italian Journal of Agronomy, 2008,3(Suppl 3):631-632. |
[29] | 吴立峰, 杨秀霞, 燕辉. 水分亏缺对苗期玉米生理特性的影响[J]. 排灌机械工程学报, 2017,35(12):1069-1074. |
[30] | 张淑勇, 国静, 刘炜. 玉米苗期叶片主要生理生化指标对土壤水分的响应[J]. 玉米科学, 2011,19(5):68-72,77. |
[31] | 闫伟平, 谭国波, 赵洪祥, 等. 吉林半干旱区不同灌溉方式对土壤水分变化及玉米产量的影响[J]. 玉米科学, 2012,20(5):111-114,120. |
[32] | 胡田田, 康绍忠, 高明霞, 等. 玉米根系分区交替供应水、氮的效应与高效利用机理[J]. 作物学报, 2004,30(9):866-871. |
[33] |
Chu G, Chen T T, Wang Z Q, et al. Morphological and physiological traits of roots and their relationships with water productivity in water saving and drought-resistant rice[J]. Field Crops Research, 2014,162:108-119.
doi: 10.1016/j.fcr.2013.11.006 URL |
[34] |
Zhang H, Xue Y G, Wang Z Q, et al. Morphological and physiological traits of roots and their relationships with shoot growth in “super” rice[J]. Field Crops Research, 2009,113:31-40.
doi: 10.1016/j.fcr.2009.04.004 URL |
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