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寄生隐孢壳菌交配型特异序列的PCR扩增

PCR amplification of the mating-type idiomorphs in Cryphonectria parasitica.

作者信息

Marra R E, Milgroom M G

机构信息

Department of Plant Pathology, Cornell University, Ithaca, NY 14853, USA.

出版信息

Mol Ecol. 1999 Nov;8(11):1947-50. doi: 10.1046/j.1365-294x.1999.00783.x.

Abstract

In the laboratory, the ascomycete fungus Cryphonectria parasitica is rarely self-fertile, and has a self-incompatibility system that resolves into two intersterility groups, controlled by a single locus. In natural populations, however, self-fertilization occurs frequently. In this report, we show that the C. parasitica self-incompatibility locus (MAT) comprises two idiomorphs (alleles that are highly divergent in sequence), conforming to the paradigm of self-incompatibility as described for other ascomycetes. Starting with a fragment putatively from the MAT-2 idiomorph, we used a PCR-based cloning approach to identify 3.5- and 2-kb sequences unique to MAT-1 and MAT-2 isolates, respectively. These sequences were then used to design idiomorph-specific PCR primer pairs, allowing us to efficiently identify the mating types of isolates, a crucial component of our research on the environmental and genetic factors underlying this mixed mating system.

摘要

在实验室中,子囊菌纲真菌寄生隐孢壳菌很少自交可育,并且具有一种自我不亲和系统,该系统可分为两个互交不育组,由单个位点控制。然而,在自然种群中,自花受精频繁发生。在本报告中,我们表明寄生隐孢壳菌的自我不亲和位点(MAT)由两个不同形态(序列高度不同的等位基因)组成,符合其他子囊菌所描述的自我不亲和模式。从一个推测来自MAT - 2不同形态的片段开始,我们使用基于PCR的克隆方法分别鉴定了MAT - 1和MAT - 2分离株特有的3.5 kb和2 kb序列。然后利用这些序列设计不同形态特异性的PCR引物对,使我们能够有效地鉴定分离株的交配类型,这是我们研究这种混合交配系统背后的环境和遗传因素的关键组成部分。

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