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The molecular biology of cytoplasmically inherited male sterility and prospects for its engineering

机译:细胞质遗传的雄性不育的分子生物学及其工程前景

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Nucleocytoplasmic male sterilities are binary genetic systems driven by mitochondrial, maternally inherited genes that induce male sterility and a female phenotype and which are overcome by nuclear restorers of fertility. They contribute to the reproductive biology and evolution of natural populations and are valuable tools for the commercial production of hybrid seeds in crops. For species with no natural form of cytoplasmic male sterility, such sterility can in some cases be introduced from different, but related, species through sexual crosses or somatic hybridisation. Somatic hybridisation is the only technique currently available for manipulating plant mitochondrial genomes. Recent successes in plastid transformation have opened up entirely new perspectives for the engineering of cytoplasmic male sterilities in transplastomic plants.
机译:核细胞质的雄性不育是由线粒体驱动的二元遗传系统,线粒体是母本遗传的基因,可诱导雄性不育和雌性表型,并由生育力的核恢复子克服。它们有助于生殖生物学和自然种群的进化,并且是作物中杂交种子商业化生产的宝贵工具。对于没有天然形式胞质雄性不育的物种,在某些情况下,可以通过性杂交或体细胞杂交从不同但相关的物种中引入这种不育。体细胞杂交是目前唯一可用于操纵植物线粒体基因组的技术。质体转化的最新成功为转质体植物中细胞质雄性不育的工程化开辟了崭新的前景。

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