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拟南芥近缘种的无性繁殖:对岩生庭荠属(十字花科)无融合生殖的遗传学研究

Asexual reproduction in a close relative of Arabidopsis: a genetic investigation of apomixis in Boechera (Brassicaceae).

作者信息

Schranz M Eric, Kantama Laksana, de Jong Hans, Mitchell-Olds Thomas

机构信息

Department of Genetics and Evolution, Max Planck Institute for Chemical Ecology, Hans Knoll Strasse 6, D-07745 Jena, Germany.

出版信息

New Phytol. 2006;171(2):425-38. doi: 10.1111/j.1469-8137.2006.01765.x.

Abstract

Understanding apomixis (asexual reproduction through seeds) is of great interest to both plant breeders and evolutionary biologists. The genus Boechera is an excellent system for studying apomixis because of its close relationship to Arabidopsis, the occurrence of apomixis at the diploid level, and its potentially simple inheritance by transmission of a heterochromatic (Het) chromosome. Diploid sexual Boechera stricta and diploid apomictic Boechera divaricarpa (carrying a Het chromosome) were crossed. Flow cytometry, karyotype analysis, genomic in situ hybridization, pollen staining and seed-production measurements were used to analyse the parents and resulting F1, F2 and selected F3 and test-cross (TC) generations. The F1 plant was a low-fertility triploid that produced a swarm of aneuploid and polyploid F2 progeny. Two of the F2 plants were fertile near-tetraploids, and analysis of their F3 and TC progeny revealed that they were sexual and genomically stabilized. The apomictic phenotype was not transmitted by genetic crossing as a single dominant locus on the Het chromosome, suggesting a complex genetic control of apomixis that has implications for future genetic and evolutionary analyses in this group.

摘要

了解无融合生殖(通过种子进行无性繁殖)对植物育种者和进化生物学家都极具吸引力。博伊切拉属是研究无融合生殖的一个出色系统,因为它与拟南芥关系密切,在二倍体水平上出现无融合生殖,并且通过一条异染色质(Het)染色体的传递可能具有简单的遗传方式。二倍体有性生殖的狭叶博伊切拉和二倍体无融合生殖的叉状博伊切拉(携带一条Het染色体)进行了杂交。使用流式细胞术、核型分析、基因组原位杂交、花粉染色和种子产量测量来分析亲本以及产生的F1、F2以及选定的F3和测交(TC)世代。F1植株是低育性的三倍体,产生了一群非整倍体和多倍体的F2后代。其中两株F2植株是可育的近四倍体,对其F3和TC后代的分析表明它们是有性生殖且基因组稳定。无融合生殖表型并非作为Het染色体上的单个显性位点通过遗传杂交传递,这表明无融合生殖存在复杂的遗传控制,这对该类群未来的遗传和进化分析具有重要意义。

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