Special Thesis & Basic Research

Research Progress on the Effects of Deep-Water Irrigation on Rice Lodging Resistance in Rice-Fishing Symbiosis

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  • Jiangsu Key Laboratory of Crop Genetics and Physiology/Co-Innovation Center for Modern Production Technology of Grain Crops, Yangzhou University, Yangzhou, Jiangsu 225009, China

1st author: 1607390031@qq.com

*Corresponding author: gaohui@yzu.edu.cn

Received date: 2021-06-20

  Online published: 2021-09-20

Abstract

Deep water irrigation for a certain period of time is a necessary condition for rice-fishing symbiosis. The performance of quality, yield and lodging resistance of rice directly affect rice production level of rice-fishing symbiosis. The paper expounded the research progress of selection of rice cultivars, detriment of lodging and its evaluation system under rice-fish integrated farming, and the influence of deep-water irrigation on rice stem mechanical property, morphology and anatomy. The purpose of the paper was to provide reference for high-quality development of rice-fish integrated farming.

Cite this article

Linrong CHEN, Yangyang LI, Halun GUO, Zhi DOU, Qiang XU, Hui GAO . Research Progress on the Effects of Deep-Water Irrigation on Rice Lodging Resistance in Rice-Fishing Symbiosis[J]. China Rice, 2021 , 27(5) : 102 -104 . DOI: 10.3969/j.issn.1006-8082.2021.05.022

References

[1] 游修龄. 稻田养鱼——传统农业可持续发展的典型之一[J]. 农业考古,2006(4):222-224.
[2] 曹凑贵,江洋,汪金平,等. 稻虾共作模式的“双刃性”及可持续发展策略[J]. 中国生态农业学报,2017,25(9):1 245-1 253.
[3] 唐建军,李巍,吕修涛,等. 中国稻渔综合种养产业的发展现状与若干思考[J]. 中国稻米,2020,26(5):1-10.
[4] 胡亮亮,唐建军,张剑,等. 稻-鱼系统的发展与未来思考[J]. 中国生态农业学报,2015,23(3):268-275.
[5] 杨星星,谢坚,陈欣,等. 稻鱼共生系统不同水深对水稻和鱼的效应[J]. 贵州农业科学,2010,38(2):73-74.
[6] 徐富贤,徐麟,周兴兵,等. 深水灌溉条件下杂交中稻品种比较研究[J]. 中国稻米,2019,25(5):93-94.
[7] 李凤英,郑士梅,张占金. 水稻超深水栽培技术[J]. 吉林农业,1996(3):16-17.
[8] 杨勇. 稻渔共作生态特征与安全优质高效生产技术研究[D]. 扬州:扬州大学,2004.
[9] 孙炳林,章国庆,马里荣,等. 太湖县稻虾综合种养水稻品种筛选试验[J]. 安徽农业科学,2019,47(23):14-16.
[10] 唐茂艳,王强,陈雷,等. 适合稻鱼系统的水稻品种筛选研究[J]. 中国稻米,2019,25(3):129-131.
[11] 史晓宇,怀燕,邹爱雷,等. 适于稻鱼共生系统的水稻品种筛选[J]. 浙江农业科学,2019,60(10):1 737-1 741.
[12] 田伯红. 禾谷类作物抗倒伏性的研究方法与谷子抗倒性评价[J]. 植物遗传资源学报,2013,14(2):265-269.
[13] SHIMONO H, OKADA M, YAMAKAWA Y, et al.Lodging in rice can be alleviated by atmospheric CO2 enrichment[J]. Agriculture Ecosystems & Environment, 2007, 118(1-4): 223-230.
[14] TAIICHIRO O, KUNI I.Varietal difference of physical characteristics of the culm related to lodging resistance in paddy rice[J]. Japanese Journal of Crop Science, 2008, 61(3): 419-425.
[15] ISHIMARU K, TOGAWA E, OOKAWA T, et al.New target for rice lodging resistance and its effect in a typhoon[J]. Planta, 2008, 227(3): 601-609.
[16] 张巫军. 氮素对粳稻抗倒伏性的影响及其生理机制[D]. 南京:南京农业大学,2015.
[17] 郎有忠,杨晓东,王美娥,等. 结实阶段不同时期倒伏对水稻产量及稻米品质的影响[J]. 中国水稻科学,2011,25(4):407-412.
[18] 郭相平,黄双双,王振昌,等. 不同灌溉模式对水稻抗倒伏能力影响的试验研究[J]. 灌溉排水学报,2017,36(5):1-5.
[19] SETTER T L, LAURELES E V, MAZAREDO A M.Lodging reduces yield of rice by self-shading and reductions in canopy photosynthesis[J]. Field Crops Research, 1997, 49(2-3): 95-106.
[20] PUIJALONSUP L R.Nutrient enrichment affects the mechanical resistance of aquatic plants[J]. Journal of Experimental Botany, 2012, 63(17): 6 115-6 123.
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