| 注册
首页|期刊导航|中国生态农业学报|氮肥对不同耐低氮性玉米品种花后物质生产及叶片功能特性的影响

氮肥对不同耐低氮性玉米品种花后物质生产及叶片功能特性的影响

李强 马晓君 程秋博 豆攀 余东海 罗延宏 袁继超 孔凡磊

中国生态农业学报Issue(1):17-26,10.
中国生态农业学报Issue(1):17-26,10.DOI:10.13930/j.cnki.cjea.150744

氮肥对不同耐低氮性玉米品种花后物质生产及叶片功能特性的影响

Effects of nitrogen fertilizer on post-silking dry matter production and leaves function characteristics of low-nitrogen tolerance maize

李强 1马晓君 1程秋博 1豆攀 1余东海 2罗延宏 3袁继超 1孔凡磊1

作者信息

  • 1. 农业部西南作物生理生态与耕作重点实验室/四川农业大学农学院 成都 611130
  • 2. 眉山市东坡区农业技术推广站眉山 620032
  • 3. 四川省烟草公司宜宾市公司烟叶生产技术推广应用中心 宜宾 644002
  • 折叠

摘要

Abstract

In order to clarify the features of dry matter production and leaf function during post-silking stage in maize varieties with different low-nitrogen tolerance, a field experiment with 6 levels of nitrogen application rates [0 kg(N)×hm-2 (B1)、90 kg(N)×hm-2 (B2)、180 kg(N)×hm-2 (B3)、270 kg(N)×hm-2 (B4)、360 kg(N)×hm-2 (B5), 450 kg(N)×hm-2 (B6)] was conducted using low-nitrogen tolerant maize cultivar‘Zhenghong 311’ and low-nitrogen sensitive maize cultivar‘Xianyu 508’ as experimental materials. The results showed that nitrogen application significantly increased dry matter accumulation, leaf area index and leaf photosynthetic rate. It also alleviated the reductions of both chlorophyll and nitrogen contents of maize leaf at post-silking stage due to nitrogen deficiency, which was in turn reduced leaf C/N ratio at late growth stage, and increased maize yield. Dry matter accumulation, photosynthetic rate and leaf area index at post-silking stage and yield of low-nitrogen tolerant cultivar ‘Zhenghong 311’ increased by 30.5%, 9.2%, 35.0% and 8.8%, respectively, compared with those of low-nitrogen sensitive cultivar‘Xianyu 508’. Chlorophyll content in leaves of‘Zhenghong 311’ enhanced by 4.85%compared to that of ‘Xianyu508’ at post-silking stage. Low-nitrogen tolerant maize cultivar ‘Zhenghong 311’ maintained high chlorophyll content to ensure high dry matter production. There was no significant difference in leaf nitrogen content between two maize cultivars after silking stage. Compared with silking stage, however, leaf nitrogen content decreased by 31.5% for‘Zhenghong 311’ and by 34.9% for ‘Xianyu 508’ at maturity stage. C/N ratio in leaf of ‘Xianyu 508’ was higher than that of‘Zhenghong 311’ by 5.95% at post-silking stage. Compared with low-nitrogen sensitive cultivar ‘Xianyu 508’, low-nitrogen tolerant cultivar‘Zhenghong 311’ kept higher photosynthetic rate and leaf area index during post-silking period, the amplitude of decline in both chlorophyll and nitrogen contents was alleviated, and C/N ratio in leaf kept lower level at later growth stage, all which were beneficial for prolonging leaf functional period, delaying leaf senescence, and increasing dry matter accumulation and yield of‘Zhenghong 311’. In summary, nitrogen fertilizer effectively increased dry matter accumulation, leaf area index and grain yield. It reduced the increase of C/N ratio in leaf of ‘Zhenghong 311’. However, ‘Xianyu 508’ needed high nitrogen fertilization application to maintain effective leaf photosynthetic rate and nitrogen content.

关键词

氮肥/玉米/耐低氮性/花后/干物质积累/碳氮比/光合速率

Key words

Nitrogen fertilizer/Maize/Low-nitrogen tolerance/Post-silking stage/Dry matter accumulaiton/C/N ratio/Photosynthetic rate

分类

农业科学

引用本文复制引用

李强,马晓君,程秋博,豆攀,余东海,罗延宏,袁继超,孔凡磊..氮肥对不同耐低氮性玉米品种花后物质生产及叶片功能特性的影响[J].中国生态农业学报,2016,(1):17-26,10.

基金项目

公益性行业(农业)科研专项经费(201503127)、国家“十二五”科技支撑计划项目(2012BAD04B13)、四川省科技支撑计划项目(2014NZ0040)和四川省玉米产业技术体系岗位专家项目资助* This work was supported by the Special Fund for Agro-scientific Research in the Public Interest (No.201503127), the National Key Technologies R&D Program of China (No.2012BAD04B13), the Key Technology R&D Program of Sichuan Province (No.2014NZ0040), and the Sichuan Province Corn Industry Technical System Post Expert Project (农业)

中国生态农业学报

OA北大核心CSCDCSTPCD

2096-6237

访问量1
|
下载量0
段落导航相关论文