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影响高等植物减数分裂的突变基因。

Mutant genes affecting higher plant meiosis.

机构信息

Department of Botany, University, Kurukshetra, 132 119, Haryana, India.

出版信息

Theor Appl Genet. 1985 Aug;70(5):449-66. doi: 10.1007/BF00305977.

Abstract

That meiosis is conditioned by a large number of genes majority of which are present in a dominant state, is evidenced by the detection of numerous monogenic recessive mutant genes which affect the premeiotic, meiotic and post-meiotic course of events. These genes are site- and stage-specific, and a few are sex specific. Of these, the most prevalent are the mutant genes affecting male meiosis and causing male sterility (ms genes) and those inhibiting synapsis and chiasma formation (synaptic genes) and leading to gametic sterility. Majority of the mutant genes affect the entire chromosomal complement but a few influence only specific chromosomes of a complement so that the chromosomes behave differentially within a genome of the same species. Some mutant genes alter chromosome form and function, others modify integrity, degree of spiralization, movement and migration of chromosomes. Their cytogenetic behaviour, genetic significance and breeding utility are described and discussed.

摘要

减数分裂受到大量基因的调控,其中大多数基因处于显性状态,这一点可以通过检测到许多影响减数分裂前、减数分裂和减数分裂后过程的单基因隐性突变基因来证明。这些基因是位点和阶段特异性的,少数是性别特异性的。其中,最常见的是影响雄性减数分裂并导致雄性不育的突变基因(ms 基因),以及那些抑制联会和交叉形成的基因(突触基因),导致配子不育。大多数突变基因影响整个染色体组,但少数基因仅影响染色体组的特定染色体,因此在同一物种的基因组中,染色体表现出不同的行为。一些突变基因改变染色体的形态和功能,另一些则改变染色体的完整性、螺旋化程度、染色体的运动和迁移。本文描述并讨论了它们的细胞遗传学行为、遗传意义和育种应用。

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