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Genome Size Quantitative Genetics and the Genomic Basis for Flower Size Evolution in Silene latifolia

机译:阔叶银耳花基因组大小数量遗传学和基因组基础

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摘要

• Background and Aims The overall goal of this paper is to construct an overview of the genetic basis for flower size evolution in Silene latifolia. It aims to examine the relationship between the molecular bases for flower size and the underlying assumption of quantitative genetics theory that quantitative variation is ultimately due to the impact of a number of structural genes.• Scope Previous work is reviewed on the quantitative genetics and potential for response to selection on flower size, and the relationship between flower size and nuclear DNA content in S. latifolia. These earlier findings provide a framework within which to consider more recent analyses of a joint quantitative trait loci (QTL) analysis of flower size and DNA content in this species.• Key Results Flower size is a character that fits the classical quantitative genetics model of inheritance very nicely. However, an earlier finding that flower size is correlated with nuclear DNA content suggested that quantitative aspects of genome composition rather than allelic substitution at structural loci might play a major role in the evolution of flower size. The present results reported here show that QTL for flower size are correlated with QTL for DNA content, further corroborating an earlier result and providing additional support for the conclusion that localized variations in DNA content underlie evolutionary changes in flower size.• Conclusions The search image for QTL should be broadened to include overall aspects of genome regulation. As we prepare to enter the much-heralded post-genomic era, we also need to revisit our overall models of the relationship between genotype and phenotype to encompass aspects of genome structure and composition beyond structural genes.
机译:•背景和目的本文的总体目标是对阔叶银耳花大小演变的遗传基础进行概述。它旨在检查花朵大小的分子基础与定量遗传学理论的基本假设(定量变异最终归因于许多结构基因的影响)之间的关系。•范围回顾了有关定量遗传学及其潜力的先前工作。对花序选择的反应,以及花序链花中花序大小与核DNA含量之间的关系。这些较早的发现提供了一个框架,可以在其中考虑对该物种的花朵大小和DNA含量进行联合定量性状位点(QTL)分析的最新分析。•主要结果花朵大小是适合经典遗传定量遗传模型的一个特征很友好地。但是,较早的发现表明花的大小与核DNA含量有关,这表明基因组组成的定量方面而非结构位点的等位基因取代可能在花的大小演变中起主要作用。此处报道的当前结果表明,花朵大小的QTL与DNA含量的QTL相关,进一步证实了较早的结果,并为以下结论提供了额外的支持:DNA含量的局部变化是花朵大小的进化变化的基础。•结论QTL应该扩大到包括基因组调控的整体方面。当我们准备进入备受赞誉的后基因组时代时,我们还需要重新研究基因型和表型之间关系的整体模型,以涵盖基因组结构和结构基因以外的组成方面。

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