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用于黑腹果蝇感觉刚毛自然遗传变异的新型遗传电容器和增强剂及其性状特异性

Novel genetic capacitors and potentiators for the natural genetic variation of sensory bristles and their trait specificity in Drosophila melanogaster.

作者信息

Takahashi Kazuo H

机构信息

Graduate School of Environmental and Life Science, Okayama University, 1-1-1 Tsushima-naka, Kita-ku, Okayama-si, Okayama-ken, 700-8530, Japan.

出版信息

Mol Ecol. 2015 Nov;24(22):5561-72. doi: 10.1111/mec.13407. Epub 2015 Nov 6.

Abstract

Cryptic genetic variation (CGV) is defined as the genetic variation that has little effect on phenotypic variation under a normal condition, but contributes to heritable variation under environmental or genetic perturbations. Genetic buffering systems that suppress the expression of CGV and store it in a population are called genetic capacitors, and the opposite systems are called genetic potentiators. One of the best-known candidates for a genetic capacitor and potentiator is the molecular chaperone protein, HSP90, and one of its characteristics is that it affects the genetic variation in various morphological traits. However, it remains unclear whether the wide-ranging effects of HSP90 on a broad range of traits are a general feature of genetic capacitors and potentiators. In the current study, I searched for novel genetic capacitors and potentiators for quantitative bristle traits of Drosophila melanogaster and then investigated the trait specificity of their genetic buffering effect. Three bristle traits of D. melanogaster were used as the target traits, and the genomic regions with genetic buffering effects were screened using the 61 genomic deficiencies examined previously for genetic buffering effects in wing shape. As a result, four and six deficiencies with significant effects on increasing and decreasing the broad-sense heritability of the bristle traits were identified, respectively. Of the 18 deficiencies with significant effects detected in the current study and/or by the previous study, 14 showed trait-specific effects, and four affected the genetic buffering of both bristle traits and wing shape. This suggests that most genetic capacitors and potentiators exert trait-specific effects, but that general capacitors and potentiators with effects on multiple traits also exist.

摘要

隐秘遗传变异(CGV)被定义为在正常条件下对表型变异影响较小,但在环境或遗传扰动下对可遗传变异有贡献的遗传变异。抑制CGV表达并将其储存在种群中的遗传缓冲系统被称为遗传电容器,相反的系统则被称为遗传增强剂。分子伴侣蛋白HSP90是最著名的遗传电容器和增强剂候选者之一,其特征之一是它会影响各种形态性状的遗传变异。然而,HSP90对广泛性状的广泛影响是否是遗传电容器和增强剂的普遍特征仍不清楚。在本研究中,我寻找了影响黑腹果蝇刚毛数量性状的新型遗传电容器和增强剂,然后研究了它们遗传缓冲作用的性状特异性。黑腹果蝇的三个刚毛性状被用作目标性状,利用先前检测过对翅形有遗传缓冲作用的61个基因组缺失来筛选具有遗传缓冲作用的基因组区域。结果,分别鉴定出对刚毛性状广义遗传力有显著增加和降低作用的四个和六个缺失。在本研究和/或先前研究中检测到的有显著作用的18个缺失中,14个表现出性状特异性作用,4个影响刚毛性状和翅形的遗传缓冲。这表明大多数遗传电容器和增强剂发挥性状特异性作用,但也存在对多个性状有作用的通用电容器和增强剂。

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