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Mechanisms for independent cytoplasmic inheritance of mitochondria and plastids in angiosperms

机译:被子植物线粒体和质体独立细胞质遗传的机制

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摘要

The inheritance of mitochondria and plastids in angiosperms has been categorized into three modes: maternal, biparental and paternal. Many mechanisms have been proposed for maternal inheritance, including: (1) physical exclusion of the organelle itself during pollen mitosis I (PMI); (2) elimination of the organelle by formation of enucleated cytoplasmic bodies (ECB); (3) autophagic degradation of organelles during male gametophyte development; (4) digestion of the organelle after fertilization; and (5)-the most likely possibility-digestion of organellar DNA in generative cells just after PMI. In detailed cytological observations, the presence or absence of mitochondrial and plastid DNA in generative cells corresponds to biparental/paternal inheritance or maternal inheritance of the respective organelle examined genetically. These improved cytological observations demonstrate that the replication or digestion of organellar DNA in young generative cells just after PMI is a critical point determining the mode of cytoplasmic inheritance. This review describes the independent control mechanisms in mitochondria and plastids that lead to differences in cytoplasmic inheritance in angiosperms.
机译:线粒体和质体在被子植物中的遗传可分为三种模式:母体,双亲和父本。已经提出了许多母体遗传机制,包括:(1)在花粉有丝分裂I(PMI)期间物理排斥细胞器本身; (2)通过形成去核的细胞质体(ECB)消除细胞器; (3)雄配子体发育过程中细胞器的自噬降解; (4)受精后消化细胞器; (5)-PMI发生后生殖细胞中细胞器DNA最有可能的消化。在详细的细胞学观察中,生殖细胞中线粒体和质体DNA的存在或不存在对应于经过遗传学检查的各个细胞器的双亲/父亲遗传或母亲遗传。这些改善的细胞学观察表明,刚好在PMI之后,年轻生殖细胞中细胞器DNA的复制或消化是决定细胞质遗传方式的关键。这篇综述描述了线粒体和质体中的独立控制机制,这些机制导致被子植物的细胞质遗传差异。

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