专论与研究

黑龙江省水稻主栽品种(系)节水抗旱栽培下的抗倒性研究

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  • 黑龙江省农业科学院水稻研究所/农业农村部寒地粳稻冷害科学观测实验站,黑龙江 佳木斯 154026

第一作者:chenshuqiang@163.com

收稿日期: 2020-08-21

  网络出版日期: 2021-01-20

基金资助

国家重点研发计划(2017YFD0300505-4);黑龙江省自然科学基金(LH2019C063);黑龙江省博士后科研启动金资助(LBH-Q15134);黑龙江省省级领军人才梯队后备带头人资助(2017);黑龙江省农业科学院院级课题(2018KYJL021);黑龙江省现代农业产业技术协同创新推广体系(2019)

Study on Lodging Resistance and Drought Resistance of Main Rice Varieties (Lines) under Water Saving Cultivation in Heilongjiang Province

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  • Jiamusi Rice Research Institute, Heilongjiang Academy of Agriculture Sciences/Scientific Observing and Experimental Station of Rice Cold Damage in Cold Region, Ministry of Agriculture and Rural Affairs, Jiamusi, Heilongjiang 154026, China

1st author: chenshuqiang@163.com

Received date: 2020-08-21

  Online published: 2021-01-20

摘要

倒伏是严重影响水稻产量与品质的一个因素。通过常规灌溉和节水抗旱栽培模式下与水稻抗倒性密切相关的性状指标的变化,探讨了黑龙江省各积温带水稻主栽品种(系)的抗倒性。结果表明,节水抗旱处理使部分品种(系)的倒伏指数减小,倒2节带鞘抗折力增加,节间干物质量增加,节间横切面积减少,茎壁增厚;抗倒性、抗旱力指数和实测产量等指标表现均较高的品种(系)第一积温带有龙稻16和龙稻24,第二积温带有绥粳4号、绥粳17、绥粳18、北稻7号、绥锦089290,第三积温带有绥粳15、龙粳56、龙粳51、龙粳58、龙粳20、龙交08119、龙丰12500、龙粳3100和龙粳1424,第四积温带有龙粳24、龙粳1525、龙交13S6,第五积温带有龙粳4344。通过对倒伏性状的调查研究,了解各积温带主栽品种(系)的抗倒性情况,可为黑龙江省水稻节水抗旱栽培和抗倒伏种质的研究与利用奠定基础。

本文引用格式

陈书强, 薛菁芳, 杜晓东, 周通, 杨丽敏, 赵海新, 蔡永盛 . 黑龙江省水稻主栽品种(系)节水抗旱栽培下的抗倒性研究[J]. 中国稻米, 2021 , 27(1) : 51 -58 . DOI: 10.3969/j.issn.1006-8082.2021.01.010

Abstract

Lodging is an important factor that seriously affects rice yield and quality. Through the changes of traits closely related to rice lodging resistance under conventional irrigation and water-saving and drought-resistant cultivation modes, the lodging resistance of main rice varieties (lines) in various accumulative temperature zones in Heilongjiang province were studied. The results showed that the water-saving and drought-resistant treatment reduced the lodging index of some varieties (lines), increased the flexural resistance of the two-section sheath, increased the inter-node dry weight, reduced the inter-section cross-sectional area, and thickened the stem wall. The first accumulated temperate zone varieties Longdao 16 and Longdao 24, the second accumulative temperature varieties Suigeng 4, Suigeng 17, Suigeng 18, Beidao 7, Suigeng 089290, the third accumulative temperature zone varieties Suigeng 15, Longgeng 56, Longgeng 51, Longgeng 58, Longgeng 20, Longjiao 08119, Longfeng 12500, Longgeng 3100 and Longgeng 1424, the fourth accumulated temperate zone varieties Longgeng 24, Longgeng 1525, Longjiao 13S6, the fifth accumulated temperature zone variety Longgeng 4344 have high lodging resistance, comprehensive drought resistance index and relative high measured yield. Through investigation and research, we can understand the lodging resistance of the main varieties (lines) in each accumulative temperate zone, which laid a foundation for the research and utilization of rice water-saving and drought-resistant cultivation and lodging resistance germplasm in Heilongjiang province.

参考文献

[1] 章秀福. 中国粮食安全和水稻生产[J]. 农业现代化研究,2005,26(2):85-88.
[2] 茆智. 水稻节水灌溉在节水增产防污中发挥重要作用[J]. 中国水利,2009(21):11-12.
[3] 李文熙. 水稻倒伏的原因及减轻危害的对策[J]. 韩国作物学会志,1991,36(5):383-393.
[4] 金善宝. 中国小麦学[M]. 北京:中国农业出版社,1996:57-96.
[5] STAM P P.Seedling traits of maize as indicators of root lodging[J]. Agronomy, 1992, 12(2):157-162.
[6] 阎志利,张景奎,林瑞敏,等. 倒伏对水稻产量影响的分析研究[J]. 盐碱地利用,1990(3):7-9.
[7] 松江勇次. 移栽和倒伏时期对稻米食味理化特性的影响[J]. 日本作物学会纪事,1991,60(4):490-496.
[8] 郭相平,甄博,王振昌,等. 旱涝交替胁迫增强水稻抗倒伏性能[J]. 农业工程学报,2013,29(12) :130-135.
[9] 瀬古秀生,佐本啓智,鈴木嘉一郎. 水稲の倒伏に及ぼす二,三栽培条件の影響(Ⅱ)[J].日本作物学会纪事,1959,27(2):173-176.
[10] 周毓衍,张燕之,邹吉承,等. 水稻抗旱鉴定方法与指标研究[J]. 辽宁农业科学,1996(3):13-15.
[11] 姜元华,张洪程,赵可,等. 机插条件下籼粳杂交稻茎秆的抗倒性评价及成因分析[J]. 农业工程学报,2014,30(19):19-29.
[12] 李杰,张洪程,龚金龙,等. 不同种植方式对超级稻植株抗倒伏能力的影响[J]. 中国农业科学,2011,44(11):2 234-2 243.
[13] 孙旭初. 水稻茎秆抗倒性的研究[J]. 中国农业科学,1987,20(4):32-37.
[14] 段传人,王伯初,王凭青,等. 水稻茎秆的结构及其性能的相关性[J]. 重庆大学学报(自然科学版),2003,26(11):38-40.
[15] 赵建明,姜兴强,胡宁,等. 水稻抗倒伏的材料学特性[J]. 北方水稻,2007(3):69-72.
[16] 董明辉,张洪程,戴其根,等. 不同粳稻品种倒伏指数及其相关农艺性状的分析[J]. 吉林农业大学学报,2003,25(2):120-123.
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