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Sexual conflict and gene expression Exploring sex-specific associations between fitness and transcriptional variation

机译:性冲突和基因表达探索适应性与转录变异之间的性别特异性关联

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摘要

In recent years, the field of evolutionary biology received a fresh impulse from the increased technical and logistical availability and cost-effectiveness of genomics techniques. In particular, we have for the first time the opportunity to effectively explore and understand the genetic basis of traits variation in laboratory (and ultimately wild) populations. Traits that are most relevant in -evolutionary and ecological contexts (e.g., morphological, life-history and behavioral traits) typically show a complex genetic architecture, being affected by many loci with small effect. Such loci often interact with one another over the same trait (epistasis), affect several traits simultaneously (pleiotropy), and/or depend in their effects on the "environmental condition" in which they are expressed (genotype by environment interactions). Modern genomics offers tools, such as microarrays and high-throughput sequencing, to gather an unprecedented amount of data on gene expression and sequence variation, and can be used in the attempt to construct a genotype-phenotype map, linking genes (or gene networks), and the variation in their sequence and expression, with the natural variation of phenotypic characters.(1)
机译:近年来,进化生物学领域因基因组学技术的不断提高的技术和后勤可用性以及成本效益而受到了新的推动。特别是,我们第一次有机会有效地探索和了解实验室(最终是野生)种群性状变异的遗传基础。在进化和生态环境中最相关的特征(例如形态,生活史和行为特征)通常表现出复杂的遗传结构,受许多基因座的影响很小。这样的基因座经常在相同的性状上相互相互作用(脓毒症),同时影响多个性状(多效性),和/或取决于它们在其中表达的“环境条件”的影响(通过环境相互作用的基因型)。现代基因组学提供诸如微阵列和高通量测序之类的工具,以收集前所未有的有关基因表达和序列变异的数据,并可用于构建基因型-表型图,连接基因(或基因网络)的尝试。 ,以及其序列和表达的变化,以及表型特征的自然变化。(1)

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