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自动表型分析表明,蛹的大小是一个具有明显多基因基础的高度可遗传性状。

Automated Phenotyping Indicates Pupal Size in Is a Highly Heritable Trait with an Apparent Polygenic Basis.

作者信息

Reeves R Guy, Tautz Diethard

机构信息

Department of Evolutionary Genetics, Max Planck Institute for Evolutionary Biology, 24306 Plön, Germany

Department of Evolutionary Genetics, Max Planck Institute for Evolutionary Biology, 24306 Plön, Germany.

出版信息

G3 (Bethesda). 2017 Apr 3;7(4):1277-1286. doi: 10.1534/g3.117.039883.

Abstract

The intense focus on studying human height has done more than any other genetic analysis to advance our understanding of the heritability of highly complex phenotypes. Here, we describe in detail the properties of a previously unexplored trait in that shares many salient properties with human height. The total length of the pupal case varies between 2.8 and 3.9 mm among natural variants, and we report that it is among the most heritable traits reported in this species. We have developed a simple semiautomatic phenotyping system with which a single operator can reliably score >5000 individuals in a day. The precision of the automated system is 0.042 mm (± 0.030 SD). All phenotyped individuals are available to be mated in subsequent generations or uniquely archived for future molecular work. We report both broad sense and narrow sense heritability estimates for two biologically distinct data sets. Narrow sense heritability () ranged from 0.44 to 0.50, and broad sense heritability () ranged from 0.58 to 0.61. We present results for mapping the trait in 195 recombinant inbred lines, which suggests that there are no loci with >10% effect size in this panel. We propose that pupal size genetics in could represent a model complex trait amenable to deep genetic dissection using the automated system described.

摘要

对人类身高的深入研究比其他任何基因分析都更有助于我们增进对高度复杂表型遗传力的理解。在此,我们详细描述了一种先前未被探索的性状的特性,该性状与人类身高具有许多显著特征。在自然变体中,蛹壳的总长度在2.8至3.9毫米之间变化,我们报告称这是该物种中遗传性最强的性状之一。我们开发了一种简单的半自动表型分析系统,一名操作员使用该系统一天内能够可靠地对5000多个个体进行评分。该自动化系统的精度为0.042毫米(±0.030标准差)。所有经过表型分析的个体都可用于后续世代的交配,或单独存档以备将来进行分子研究。我们报告了两个生物学上不同数据集的广义遗传力和狭义遗传力估计值。狭义遗传力()范围为0.44至0.50,广义遗传力()范围为0.58至0.61。我们展示了在195个重组自交系中对该性状进行定位的结果,这表明在这个样本中没有效应大小大于10%的基因座。我们提出,[物种名称]的蛹大小遗传学可能代表一种适合使用所述自动化系统进行深入基因剖析的模型复杂性状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e08d/5386876/5b562db7272b/1277f1.jpg

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