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A Novel Cytoplasmic Male Sterility in Brassica napus (inap CMS) with Carpelloid Stamens via Protoplast Fusion with Chinese Woad

机译:通过中国原生质体原生质体融合在带有类胡萝卜素雄蕊的甘蓝型油菜(inap CMS)中的新型细胞质雄性不育

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摘要

A novel cytoplasmic male sterility (CMS) in Brassica napus (inap CMS) was selected from the somatic hybrid with Isatis indigotica (Chinese woad) by recurrent backcrossing. The male sterility was caused by the conversion of tetradynamous stamens into carpelloid structures with stigmatoid tissues at their tips and ovule-like tissues in the margins, and the two shorter stamens into filaments without anthers. The feminized development of the stamens resulted in the complete lack of pollen grains, which was stable in different years and environments. The pistils of inap CMS displayed normal morphology and good seed-set after pollinated by B. napus. Histological sections showed that the developmental alteration of the stamens initiated at the stage of stamen primordium differentiation. AFLP analysis of the nuclear genomic composition with 23 pairs of selective primers detected no woad DNA bands in inap CMS. Twenty out of 25 mitochondrial genes originated from I. indigotica, except for cox2-2 which was the recombinant between cox2 from woad and cox2-2 from rapeseed. The novel cox2-2 was transcribed in flower buds of inap CMS weakly and comparatively with the fertile B. napus addition line Me harboring one particular woad chromosome. The restorers of other autoplasmic and alloplasmic CMS systems in rapeseed failed to restore the fertility of inap CMS and the screening of B. napus wide resources found no fertility restoration variety, showing its distinct origin and the related mechanism of sterility. The reasons for the mitochondrial rearrangements and the breeding of the restorer for the novel CMS system were discussed.
机译:通过反复回交,从与Is蓝(Isatis indigotica)的体细胞杂种中选出甘蓝型油菜(inap CMS)的一种新型细胞质雄性不育(CMS)。雄性不育是由四子雄蕊转变为类胡萝卜素结构,其顶端有柱头组织,边缘有胚珠样组织,而两个较短的雄蕊变成没有花药的花丝。雄蕊的女性化发展导致完全缺乏花粉粒,其在不同年份和环境下都稳定。 inap CMS的雌蕊经甘蓝型油菜授粉后显示出正常的形态和良好的结实性。组织学切片显示,雄蕊的发育改变是在雄蕊原基分化阶段开始的。用23对选择性引物对核基因组组成进行AFLP分析,在inap CMS中未检测到woad DNA条带。 25个线粒体基因中有20个起源于靛蓝I.,除了cox2-2是woad的cox2和油菜的cox2-2之间的重组体。新型cox2-2在不育CMS的花蕾中弱转录,而可育的那不勒斯油菜附加系Me具有一个特定的染色体染色体。油菜中其他自体和异质CMS系统的恢复子未能恢复Iap CMS的育性,对甘蓝型油菜资源的筛选没有发现育性恢复品种,显示出其独特的起源和相关的不育机制。讨论了新型CMS系统线粒体重排的原因和修复体的繁殖。

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