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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Identification of mitochondrial genome rearrangements unique to novel cytoplasmic male sterility in radish (Raphanus sativus L.)
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Identification of mitochondrial genome rearrangements unique to novel cytoplasmic male sterility in radish (Raphanus sativus L.)

机译:萝卜中新的细胞质雄性不育所特有的线粒体基因组重排的鉴定(Raphanus sativus L.)

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A novel cytoplasmic male-sterility (CMS) radish (Raphanus sativus L.) and its associated mitotype (DCGMS) were previously identified; however, no mtDNA fragments flanking the atp6 gene were found in the DCGMS mitotype. Unlike three other mitotypes in this study, a unique mtDNA organization, atp6-nad3-rps12, was found to be the major mtDNA structure associated with this mitotype. This organization may have arisen from short repeat sequence-mediated recombination events. The short repeat clusters involved in the mtDNA rearrangement around the atp6 gene also exist as repetitive sequences in the complete mitochondrial genomes of other members of the Brassicaceae family, including rapeseed and Arabidopsis. These sequences do not exist as repetitive elements in the mtDNA of tobacco, sugar beet, or rice. While studying the regions flanking atp6, we identified a truncated atp6 mtDNA fragment which consists of the 5' part of the atp6 gene linked to an unidentified sequence. This mtDNA structure was present in all mitotypes; however, a single nucleotide insertion mutation leading to a frame-shift was identified only in the DCGMS mitotype. Although this truncated atp6 organization was transcribed, there was no significantly different expression between male-sterile and fertile segregating individuals from the BC(1)F(1) population originating from a cross between male-sterile and restorer parents. Comprehensive survey of the single base-pair insertion showed that it was maternally inherited and unique to the DCGMS mitotype. Therefore, this single nucleotide polymorphism (SNP) in the coding sequence of the mtDNA will be a useful molecular marker for the detection of the DCGMS mitotype.
机译:先前已经确定了一种新型的胞质雄性不育萝卜(Raphanus sativus L.)及其相关的线型(DCGMS)。然而,在DCGMS基因型中没有发现atp6基因两侧的mtDNA片段。与本研究中的其他三种线型不同,发现独特的mtDNA组织atp6-nad3-rps12是与此线型相关的主要mtDNA结构。这种组织可能是由短重复序列介导的重组事件引起的。在atp6基因周围mtDNA重排的短重复簇也作为重复序列存在于十字花科其他成员(包括油菜籽和拟南芥)的完整线粒体基因组中。这些序列在烟草,甜菜或水稻的mtDNA中不作为重复元件存在。在研究位于atp6侧翼的区域时,我们鉴定了一个截短的atp6 mtDNA片段,该片段由与未知序列连接的atp6基因的5'部分组成。 mtDNA结构存在于所有基因型中。然而,仅在DCGMS基因型中鉴定出导致移码的单个核苷酸插入突变。尽管转录了这种截短的atp6组织,但是在BC-(1)F(1)种群中,雄性不育和可育的隔离个体之间的表达没有显着差异,该个体源自雄性不育和恢复父母之间的杂交。对单个碱基对插入的综合调查显示,它是母系遗传的,并且是DCGMS原型的唯一特征。因此,mtDNA编码序列中的这种单核苷酸多态性(SNP)将成为检测DCGMS基因型的有用分子标记。

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