生物
数量性状位点
巴巴多斯棉
上位性
特质
棉属
象形文字
栽培
人口
农学
遗传建筑学
棉花
植物遗传学
主茎
植物育种
锦葵科
遗传学
基因
基因组
计算机科学
程序设计语言
人口学
社会学
作者
Xianliang Song,Tianzhen Zhang
出处
期刊:Plant Science
[Elsevier BV]
日期:2009-06-12
卷期号:177 (4): 317-323
被引量:64
标识
DOI:10.1016/j.plantsci.2009.05.015
摘要
Cotton plant architecture is an important characteristic influencing the suitability of specific cotton varieties in cultivation, fiber yield and quality. However, complex multigenic relationships and substantial genotype–environment interaction underlie plant architecture, and will hinder the efficient improvement of these traits in conventional cotton breeding programs. An enhanced understanding of the molecular-genetic regulation of plant morphological developmental can aid in the modification of agronomically relevant traits. In this study, an interspecific Gossypium hirsutum and Gossypium barbadense BC1 population was used to identify QTL associated with plant architectural traits. Twenty-six single QTL were identified for seven plant architecture traits. The phenotypic variation explained by an individual QTL ranged from 9.56% to 44.57%. In addition, 11 epistatic QTL for fruit branch angle (FBA), plant height (PH), main-stem leaf size (MLS), and fruiting branch internode length (FBI) explained 2.28–15.34% of the phenotypic variation in these traits. The majority of the interactions (60%) occurred between markers linked to QTL influencing the same traits. The QTL detected in this study are expected to be valuable in future breeding programs to develop cultivars exhibiting desirable cotton architecture.
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