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利用产生重复的重排来研究粗糙脉孢菌中的异核体不相容性基因。

The use of duplication-generating rearrangements for studying heterokaryon incompatibility genes in Neurospora.

作者信息

Perkins D D

出版信息

Genetics. 1975 May;80(1):87-105. doi: 10.1093/genetics/80.1.87.

Abstract

Heterokaryon (vegetative) incompatibility, governing the fusion of somatic hyphal filaments to form stable heterokaryons, is of interest because of its widespread occurrence in fungi and its bearing on cellular recognition. Conventional investigations of the genetic basis of heterokaryon incompatibility in N. crassa are difficult because in commonly used stocks differences are present at several het loci, all with similar incompatibility phenotypes. This difficulty is overcome by using duplications (partial diploids) that are unlikely to contain more than one het locus. A phenotypically expressed incompatibility reaction occurs when unlike het alleles are present within the same somatic nucleus, and this parallels the heterokaryon incompatibility reaction that occurs when unlike alleles in different haploid nuclei are introduced into the same somatic hypha by mycelial fusion. - Nontandem duplications were used to confirm that the incompatibility reactions in heterokaryons and in duplications are alternate expressions of the same genes. This was demonstrated for three loci which had previously been established by conventional heterokaryon test-het-e, het-c and mt. These were each obtained in duplications as recombinant chromosome rearrangements. The particular method of producing the duplications is irrelevant so long as the incompatibility alleles are heterozygous. - The duplication technique has made it possible to determine easily the het-e and het-c genotypes of numerous laboratory and wild strains of unknown constitution. In laboratory strains both loci are represented simply by two alleles. Analysis of het-c is more complicated in some wide strains, where differences have been demonstrated at one or more additional het loci within the duplication used and multiple allelism is also possible. - The results how that the duplication method can be used to identify and map additional vegetative incompatibility loci, without the necessity of heterokaryon tests.

摘要

异核体(营养体)不亲和性控制着体细胞菌丝丝状体的融合以形成稳定的异核体,因其在真菌中广泛存在及其与细胞识别的关系而备受关注。粗糙脉孢菌异核体不亲和性遗传基础的传统研究很困难,因为在常用菌株中,几个het位点存在差异,所有这些位点都具有相似的不亲和表型。通过使用不太可能包含多个het位点的重复(部分二倍体)克服了这一困难。当不同的het等位基因存在于同一个体细胞核内时,会发生表型表达的不亲和反应,这与当不同单倍体细胞核中的不同等位基因通过菌丝融合被引入同一个体细胞菌丝时发生的异核体不亲和反应相似。——非串联重复用于证实异核体和重复中的不亲和反应是同一基因的交替表达。这在三个位点得到了证明,这三个位点先前已通过传统异核体试验确定——het - e、het - c和mt。这些位点分别作为重组染色体重排以重复形式获得。只要不亲和等位基因是杂合的,产生重复的具体方法无关紧要。——重复技术使得轻松确定众多未知组成的实验室和野生菌株的het - e和het - c基因型成为可能。在实验室菌株中,两个位点都仅由两个等位基因代表。在一些野生菌株中,het - c的分析更复杂,在所用重复中已证明在一个或多个额外的het位点存在差异,并且也可能存在复等位现象。——结果表明,重复方法可用于识别和定位额外的营养体不亲和位点,而无需进行异核体试验。

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