中国农业科学 ›› 2018, Vol. 51 ›› Issue (10): 1855-1867.doi: 10.3864/j.issn.0578-1752.2018.10.005

所属专题: 机械粒收推动玉米生产方式转型

• 耕作栽培·生理生化·农业信息技术 • 上一篇    下一篇

玉米品种穗部性状差异及其对籽粒脱水的影响

李璐璐(), 明博(), 谢瑞芝, 王克如, 侯鹏, 李少昆()   

  1. 中国农业科学院作物科学研究所/农业部作物生理生态重点实验室,北京100081
  • 收稿日期:2017-09-12 接受日期:2018-01-16 出版日期:2018-05-16 发布日期:2018-05-16
  • 联系方式: 联系方式:李璐璐,E-mail:lilulu19910818@163.com。明博,E-mail:mingbo@caas.cn。李璐璐和明博为同等贡献作者。
  • 基金资助:
    国家重点研发计划(2016YFD0300110)、国家自然科学基金(31371575)、国家玉米产业技术体系项目(CARS-02-25)、中国农业科学院农业科技创新工程

Differences of Ear Characters in Maize and Their Effects on Grain Dehydration

LuLu LI(), Bo MING(), RuiZhi XIE, KeRu WANG, Peng HOU, ShaoKun LI()   

  1. Institute of Crop Science, Chinese Academy of Agricultural Sciences/Key Laboratory of Crop Physiology and Ecology, Ministry of Agriculture, Beijing 100081
  • Received:2017-09-12 Accepted:2018-01-16 Published:2018-05-16 Online:2018-05-16

摘要:

目的 玉米籽粒脱水速率快、收获期含水率低是适宜机械粒收品种的基本要求。穗部性状是玉米遗传基础的直观表现,与籽粒脱水有较紧密的联系,探寻二者之间的关系、明确影响籽粒脱水速率的关键指标,对于适宜机械粒收品种的选育和筛选具有重要意义。方法 本研究以黄淮海夏玉米区当前主推的22个品种为研究对象,按苞叶、籽粒、穗轴和穗柄等部位将穗部性状分为41个指标参数,于2015—2016年进行连续观测,并与衡量籽粒脱水快慢的5个参数(生理成熟前籽粒脱水速率、生理成熟后籽粒脱水速率、籽粒总脱水速率、生理成熟期籽粒含水率和收获期籽粒含水率)进行相关分析。结果 41个穗部指标在品种间均存在极显著差异,其中部分指标与籽粒脱水特征密切相关。苞叶长度与生理成熟后籽粒脱水速率显著负相关,与收获期籽粒含水率显著正相关;“苞叶长度/果穗长度”与生理成熟后籽粒脱水速率显著负相关;果穗夹角与籽粒总脱水速率显著正相关;穗轴生理成熟期含水率与籽粒生理成熟期、收获期含水率均呈极显著正相关关系;穗粒数与生理成熟前籽粒脱水速率、总脱水速率分别达到极显著、显著水平的负相关关系;“果穗长度/行粒数”与籽粒生理成熟前、后和总脱水速率分别呈显著或极显著正相关关系,与收获期籽粒含水率呈显著负相关关系;生理成熟期百粒干重与籽粒含水率呈显著负相关关系;而穗部其他性状与籽粒脱水速率、生理成熟期和收获期籽粒含水率均无显著相关性。结论 黄淮海区域现有玉米品种穗部性状差异较大,苞叶短、穗轴生理成熟期含水率低、果穗夹角大、穗粒数少、籽粒小等穗部特征有利于籽粒脱水,可为适宜机械粒收品种的筛选和选育提供参考。

关键词: 玉米, 籽粒脱水, 苞叶, 籽粒, 穗轴, 穗柄

Abstract:

【Objective】 The high grain dehydration rate and the low grain moisture content at harvest are two ear characters, which can be established for maize mechanical grain harvesting. Ear characters are decided by genes and have close relationship with grain dehydration. This internal relationship and the key ear characters that can characterize the traits of grain dehydration remain unknown, which are of great significance for breeding and screening of suitable varieties. 【Method】 The report researched on a total of 22 main cultivars of summer maize in HuangHuaiHai plain, and their ear characters were divided into 41 parameters covering bract, grain, cob and ear-pedicel. In 2015 and 2016, these parameters were measured and were used in correlation analysis with five grain parameters describing the dehydration rate, including the grain dehydration rate before physiological maturity (GDRbpm), the grain dehydration rate after physiological maturity (GDRapm), the total grain dehydration rate (GTDR), the grain moisture content at physiological maturity (GMCpm) and at harvest (GMCh). 【Result】 These 41 parameters were significantly different between the 22 cultivars, and there were some parameters significantly linked to grain dehydration. The bract length had a significantly negative relationship with GDRapm and a significantly positive relationship with GMCh. The value of “bract length/ear length” had a significantly negative correlation with GDRapm. The ear angle was positively correlated to GTDR at a significant level. The cob moisture content at physiological maturity had significantly positive relationships with GMCpm and GMCh. The grain number per ear was positively correlated to GDRbpm and GTDR at a significant level. The value of “ear length/grain number per row” had significantly positive relationships with GDRbpm, GDRapm and GTDR and had a significantly negative relationship with GMCh. The 100-grain dry weight at physiological maturity was negatively correlated to the grain moisture content at the significant level. There were no significant correlations between the other ear parameters and the five grain dehydration parameters.【Conclusion】 The current cultivars had different ear characters in HuangHuaiHai plain. These parameters contributed to grain dehydration rate, including the shorter bract, the lower moisture content of cob at physiological maturity, the larger ear angle, the fewer grain number per ear, and the smaller grain, which could be used in breeding and screening of mechanical grain harvest cultivars.

Key words: maize, grain dehydration, bract, grain, cob, ear-pedicel