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拟南芥花形态的数量性状基因座

Quantitative trait loci for floral morphology in Arabidopsis thaliana.

作者信息

Juenger T, Purugganan M, Mackay T F

机构信息

Department of Integrative Biology, University of California, Berkeley, California 94720-3140, USA.

出版信息

Genetics. 2000 Nov;156(3):1379-92. doi: 10.1093/genetics/156.3.1379.

Abstract

A central question in biology is how genes control the expression of quantitative variation. We used statistical methods to estimate genetic variation in eight Arabidopsis thaliana floral characters (fresh flower mass, petal length, petal width, sepal length, sepal width, long stamen length, short stamen length, and pistil length) in a cosmopolitan sample of 15 ecotypes. In addition, we used genome-wide quantitative trait locus (QTL) mapping to evaluate the genetic basis of variation in these same traits in the Landsberg erecta x Columbia recombinant inbred line population. There was significant genetic variation for all traits in both the sample of naturally occurring ecotypes and in the Ler x Col recombinant inbred line population. In addition, broad-sense genetic correlations among the traits were positive and high. A composite interval mapping (CIM) analysis detected 18 significant QTL affecting at least one floral character. Eleven QTL were associated with several floral traits, supporting either pleiotropy or tight linkage as major determinants of flower morphological integration. We propose several candidate genes that may underlie these QTL on the basis of positional information and functional arguments. Genome-wide QTL mapping is a promising tool for the discovery of candidate genes controlling morphological development, the detection of novel phenotypic effects for known genes, and in generating a more complete understanding of the genetic basis of floral development.

摘要

生物学中的一个核心问题是基因如何控制数量变异的表达。我们运用统计方法,在一个包含15个生态型的全球样本中,估算了拟南芥八个花部性状(鲜花质量、花瓣长度、花瓣宽度、萼片长度、萼片宽度、长雄蕊长度、短雄蕊长度和雌蕊长度)的遗传变异。此外,我们利用全基因组数量性状位点(QTL)图谱分析,评估了Landsberg erecta与Columbia重组自交系群体中这些相同性状变异的遗传基础。在天然生态型样本以及Ler×Col重组自交系群体中,所有性状均存在显著的遗传变异。此外,各性状之间的广义遗传相关性为正且较高。复合区间作图(CIM)分析检测到18个影响至少一个花部性状的显著QTL。11个QTL与多个花部性状相关,支持多效性或紧密连锁是花形态整合的主要决定因素。基于位置信息和功能论据,我们提出了几个可能是这些QTL基础的候选基因。全基因组QTL图谱分析是发现控制形态发育的候选基因、检测已知基因的新表型效应以及更全面理解花发育遗传基础的一种很有前景的工具。

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