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籼稻中七种必需氨基酸含量的遗传及基因型与环境的互作效应

Genetic and genotype x environment interaction effects for the content of seven essential amino acids in indica rice.

作者信息

Wu J G, Shi C H, Zhang X M, Katsura T

机构信息

Agronomy Department, College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310029, People's Republic of China.

出版信息

J Genet. 2004 Aug;83(2):171-8. doi: 10.1007/BF02729894.

Abstract

It is necessary for rice breeders to understand the genetic basis of nutrient quality traits of rice. Essential amino acids are most important in determining the nutrient quality of rice grain and can affect the health of people who depend on rice as a staple food. In view of the paucity of genetic information available on essential amino acids in indica rice, we estimated the genetic main effects and genotype x environment (G x E) interaction effects on the content of essential amino acids. Nine cytoplasmic male sterile lines as females and five restorer lines as males were introduced in a North Carolina II design across environments. Estimates of the content of the essential amino acids valine, methionine, leucine and phenylalanine showed that they were mainly controlled by genetic main effects, while the contents of threonine, cysteine and isoleucine were mainly affected by G x E effects. In the case of genetic main effects, both cytoplasmic and maternal genetic effects were predominant for all essential amino acids, indicating that selection for improving essential amino acid content based on maternal performance would be more effective than that based on seeds. The total narrow-sense heritabilities were high and ranged from 0.72 to 0.83. Since general heritabilities for these essential amino acids (except for cysteine) were found to be much larger than G x E interaction heritability, the improvement of content of most essential amino acids under selection would be expected under various environments. Rice varieties such as Zhenan 3, Yinchao 1, T49, 26715, 102 and 1391 should be selected as optimal parents for increasing the content of most essential amino acids, while the total genetic effects from Zhexie 2, Xieqingzao, Gangchao 1, V20, Zuo 5 and Zhenshan 97 were mainly negative and these parents could decrease the contents of most essential amino acids.

摘要

水稻育种者有必要了解水稻营养品质性状的遗传基础。必需氨基酸在决定稻米营养品质方面最为重要,并且会影响以稻米为主食的人们的健康。鉴于籼稻中关于必需氨基酸的遗传信息匮乏,我们估算了必需氨基酸含量的遗传主效应和基因型×环境(G×E)互作效应。采用北卡罗来纳设计Ⅱ,在不同环境下以9个细胞质雄性不育系为母本、5个恢复系为父本进行试验。对缬氨酸、蛋氨酸、亮氨酸和苯丙氨酸等必需氨基酸含量的估算结果表明,它们主要受遗传主效应控制,而苏氨酸、半胱氨酸和异亮氨酸的含量主要受G×E效应影响。在遗传主效应方面,所有必需氨基酸的细胞质和母体遗传效应均占主导,这表明基于母体表现来选择提高必需氨基酸含量比基于种子选择更为有效。总狭义遗传力较高,范围在0.72至0.83之间。由于发现这些必需氨基酸(半胱氨酸除外)的广义遗传力远大于G×E互作遗传力,因此预计在各种环境下选择时大多数必需氨基酸含量都会得到改善。应选择珍汕3、银超1、T49、26715、102和1391等水稻品种作为提高大多数必需氨基酸含量的最佳亲本,而浙协2、协青早、冈超1、V20、左5和珍汕97的总遗传效应主要为负,这些亲本会降低大多数必需氨基酸的含量。

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