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秀丽隐杆线虫热敏感致死生殖系表型的突变、选择与流行率

Mutation, selection, and the prevalence of the Caenorhabditis elegans heat-sensitive mortal germline phenotype.

作者信息

Saber Sayran, Snyder Michael, Rajaei Moein, Baer Charles F

机构信息

Department of Biology, University of Florida, Gainesville, FL 32611-8525, USA.

University of Florida Genetics Institute, Gainesville, FL 32610, USA.

出版信息

G3 (Bethesda). 2022 May 6;12(5). doi: 10.1093/g3journal/jkac063.

Abstract

Caenorhabditis elegans strains with the heat-sensitive mortal germline phenotype become progressively sterile over the course of a few tens of generations when maintained at temperatures near the upper range of C. elegans' tolerance. Mortal germline is transgenerationally heritable, and proximately under epigenetic control. Previous studies have suggested that mortal germline presents a relatively large mutational target and that mortal germline is not uncommon in natural populations of C. elegans. The mortal germline phenotype is not monolithic. Some strains exhibit a strong mortal germline phenotype, in which individuals invariably become sterile over a few generations, whereas other strains show a weaker (less penetrant) phenotype in which the onset of sterility is slower and more stochastic. We present results in which we (1) quantify the rate of mutation to the mortal germline phenotype and (2) quantify the frequency of mortal germline in a collection of 95 wild isolates. Over the course of ∼16,000 meioses, we detected one mutation to a strong mortal germline phenotype, resulting in a point estimate of the mutation rate UMrt≈ 6×10-5/genome/generation. We detected no mutations to a weak mortal germline phenotype. Six out of 95 wild isolates have a strong mortal germline phenotype, and although quantification of the weak mortal germline phenotype is inexact, the weak mortal germline phenotype is not rare in nature. We estimate a strength of selection against mutations conferring the strong mortal germline phenotype s¯≈0.1%, similar to selection against mutations affecting competitive fitness. The appreciable frequency of weak mortal germline variants in nature combined with the low mutation rate suggests that mortal germline may be maintained by balancing selection.

摘要

具有热敏性生殖系死亡表型的秀丽隐杆线虫品系,在接近秀丽隐杆线虫耐受温度上限的温度下维持时,在几十代的过程中会逐渐不育。生殖系死亡具有跨代遗传性,并且直接受表观遗传控制。先前的研究表明,生殖系死亡呈现出相对较大的突变靶点,并且生殖系死亡在秀丽隐杆线虫的自然种群中并不罕见。生殖系死亡表型并非单一的。一些品系表现出强烈的生殖系死亡表型,其中个体在几代内总是会不育,而其他品系则表现出较弱(较低外显率)的表型,其中不育的开始较慢且更具随机性。我们展示了以下结果:(1)量化生殖系死亡表型的突变率,以及(2)量化95个野生分离株集合中生殖系死亡的频率。在约16000次减数分裂过程中,我们检测到一次向强烈生殖系死亡表型的突变,导致突变率的点估计值(U_{Mrt}≈ 6×10^{-5}/基因组/代)。我们未检测到向弱生殖系死亡表型的突变。95个野生分离株中有6个具有强烈的生殖系死亡表型,尽管对弱生殖系死亡表型的量化并不精确,但弱生殖系死亡表型在自然界中并不罕见。我们估计针对赋予强烈生殖系死亡表型的突变的选择强度(\bar{s}≈0.1%),类似于针对影响竞争适应性的突变的选择。自然界中弱生殖系死亡变体的可观频率与低突变率相结合表明,生殖系死亡可能通过平衡选择得以维持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7a87/9073675/49d12f3437a5/jkac063f1.jpg

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