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Studying genetic control of cytoplasmic male sterility in plants: state of the problem and current approaches

机译:研究细胞质雄性的基因控制在植物不育:问题和状态当前的方法

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The organization and functions of genetic systems controlling cytoplasmic male sterility (CMS) in plants are reviewed. Mitochondrial genes that code for specific proteins disturbing the functions of mitochondria have been found by comparisons between CMS lines and fertile F_1 hybrids an between forms originating from in vitro cultures (fertile revertants, cybrids). Nuclear fertility-restore genes abrogate expression of these mitochondrial genes at the transcriptional or posttranslational level and thereby prevent synthesis of their protein products. A high mutability of the mitochondrial genome in cells cultured in vitro results in the elimination or reorganization of CMS-associated mitochondrial genes or in new mutations causing CMS. Several biotechnological methods are considered with respect to their applicability in identifying and transferring CMS-associated genes and in constructing new CMS forms.
机译:遗传系统的组织和功能控制细胞质雄性不育(CMS)植物进行了综述。为特定的蛋白质干扰代码已发现线粒体的功能对比CMS线条和肥沃的f混合动力车形式来自之间体外培养(肥沃的回复突变体,胞质杂种)。核基因fertility-restore废除这些线粒体基因的表达和转录和转译后的水平从而防止蛋白质的合成产品。基因组在细胞体外培养的结果消除或CMS-associated重组线粒体基因或突变引起CMS。被认为是对他们的适用性识别和转移CMS-associated基因并在构建新的CMS形式。

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