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粗糙脉孢菌中的一种非自我识别基因复合体。

A nonself recognition gene complex in Neurospora crassa.

作者信息

Micali Cristina O, Smith Myron L

机构信息

Biology Department, Carleton University, Ottawa, Ontario K1S 5B6, Canada.

出版信息

Genetics. 2006 Aug;173(4):1991-2004. doi: 10.1534/genetics.106.057562. Epub 2006 Jun 4.

DOI:10.1534/genetics.106.057562
PMID:16751666
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1569700/
Abstract

Nonself recognition is exemplified in the fungal kingdom by the regulation of cell fusion events between genetically different individuals (heterokaryosis). The het-6 locus is one of approximately 10 loci that control heterokaryon incompatibility during vegetative growth of N. crassa. Previously, it was found that het-6-associated incompatibility in Oak Ridge (OR) strains involves two contiguous genes, het-6 and un-24. The OR allele of either gene causes "strong" incompatibility (cell death) when transformed into Panama (PA)-background strains. Several remarkable features of the locus include the nature of these incompatibility genes (het-6 is a member of a repetitive gene family and un-24 also encodes the large subunit of ribonucleotide reductase) and the observation that un-24 and het-6 are in severe linkage disequilibrium. Here, we identify "weak" (slow, aberrant growth) incompatibility activities by un-24PA and het-6PA when transformed separately into OR strains, whereas together they exhibit an additive, strong effect. We synthesized strains with the new allelic combinations un-24PA het-6OR and un-24OR het-6PA, which are not found in nature. These strains grow normally and have distinct nonself recognition capabilities but may have reduced fitness. Comparing the Oak Ridge and Panama het-6 regions revealed a paracentric inversion, the architecture of which provides insights into the evolution of the un-24-het-6 gene complex.

摘要

在真菌界,非自我识别的一个例子是基因不同的个体之间细胞融合事件(异核体形成)的调控。het-6位点是在粗糙脉孢菌营养生长期间控制异核体不相容性的大约10个位点之一。以前发现,橡树岭(OR)菌株中与het-6相关的不相容性涉及两个相邻基因,het-6和un-24。当这两个基因中的任何一个的OR等位基因转化到巴拿马(PA)背景菌株中时,都会导致“强烈”的不相容性(细胞死亡)。该位点的几个显著特征包括这些不相容基因的性质(het-6是一个重复基因家族的成员,un-24也编码核糖核苷酸还原酶的大亚基)以及un-24和het-6处于严重连锁不平衡的观察结果。在这里,我们发现当un-24PA和het-6PA分别转化到OR菌株中时,它们会产生“弱”(生长缓慢、异常)的不相容性活性,而当它们一起转化时,则表现出累加的、强烈的效应。我们合成了自然界中不存在的新等位基因组合un-24PA het-6OR和un-24OR het-6PA的菌株。这些菌株生长正常,具有独特的非自我识别能力,但适应性可能降低。比较橡树岭和巴拿马的het-6区域发现了一个臂内倒位,其结构为un-24-het-6基因复合体的进化提供了见解。

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