Genome-plasmon interactions in wheat

K. Tsunewaki
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引用次数: 70

Abstract

This article reviews our studies of plastome, chondriome and plasmon diversity among Triticum (wheat) and Aegilops species, and of interactions among wheat genomes and alien plasmons. Restriction fragment length polymorphisms (RFLPs) of chloroplast and mitochondrial DNAs of nearly all species of those genera were studied by means of restriction endonuclease analysis and Southern hybridization analysis. The results show that the plasmons of the two genera can be classified into 18 types, most of which appear to have diversified at the diploid level. The maternal lineages of most polyploid species, including emmer, timopheevi and common wheats, can be ascertained. These results have been supported by the observed differences in the effects of alien plasmons on various characters of 12 common wheats. The phenotypic outcomes of the interactions between wheat genomes and alien plasmons were, in some cases, novel; several may be of practical use. The genes involved in these interactions were analyzed using various aneuploids of a common wheat Chinese Spring.
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小麦基因组-等离子体相互作用
本文综述了小麦和小麦的质体体、线粒体和等离子体多样性以及小麦基因组与外来等离子体相互作用的研究进展。采用限制性内切酶分析和Southern杂交分析方法,对这些属中几乎所有种的叶绿体和线粒体dna进行了限制性内切片段长度多态性(RFLPs)研究。结果表明,这两个属的等离子体激元可分为18种类型,其中大多数在二倍体水平上出现了多样化。大多数多倍体品种,包括小麦、小麦和普通小麦,都可以确定母系。这些结果得到了对12种普通小麦的异源等离子体激元效应差异的支持。小麦基因组与外源等离子体相互作用的表型结果在某些情况下是新颖的;有几种方法可能具有实际用途。利用中国春小麦的不同非整倍体,对参与这些相互作用的基因进行了分析。
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