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Comparative analysis of mitochondrial genome and expression variation between UG93A and UG93B reveals a candidate gene related to cytoplasmic male sterility in kenaf

机译:UG93A和UG93B与UG93A和UG93B之间的线粒体基因组和表达变异的对比分析显示了keanaf中的细胞质雄性不育有关的候选基因

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摘要

Plant cytoplasmic male sterility (CMS) is a maternal genetic trait that results from incompatibilities between the organellar and nuclear genomes which causes pollen abortion. Cytoplasmic male sterility plays an important role in hybrid seed production and heterosis utilization. In kenaf, cytoplasmic male sterility has been exploited in hybrid seed production for several years, but its molecular mechanism has not yet been disclosed. In the present work, the mitochondrial genome of the isonuclear cytoplasmic male sterile line UG93A compared with maintainer line UG93B was described and a total of 398 single nucleotide polymorphisms (SNPs) and 230 insertions/deletions (InDels) were identified in the UG93A mitochondrial DNA. A total of 26 single nucleotide polymorphisms and insertions/deletions were identified in the coding region of atp6, indicating active mitochondrial genome rearrangement. An expression cassette containing atp6 of UG93A without a fused mitochondrial transit peptide induced male sterility in tobacco and Arabidopsis. This indicated abnormal pollen grains and lack of pollen activity. Conclusively, coding sequence of atp6, which contains single nucleotide polymorphism and indel variations may play a crucial role in regulating male sterility in kenaf. These data suggested that atp6 of UG93A may be a candidate gene for kenaf cytoplasmic male sterility and provided basic information for further study of the molecular mechanisms of cytoplasmic male sterility in kenaf.
机译:植物细胞质雄性不育(CMS)是一种母体遗传性质,从而产生导致花粉流产的细胞细胞和核基因组之间的不兼容性。细胞质雄性不育在杂交种子生产和杂种优势利用中起着重要作用。在洋麻,杂交种子产量已在几年内被利用细胞质雄性不育,但其分子机制尚未公开。在本作工作中,描述了与维护线UG93b相比的等核细胞质雄性无菌线UG93a的线粒体基因组,并且在UG93A线粒体DNA中鉴定了总共398个单核苷酸多态性(SNP)和230个插入/缺失(吲哚)。在ATP6的编码区中鉴定了总共26种单核苷酸多态性和插入/缺失,表明有源线粒体基因组重排。含有ATP6的UG93a的表达盒,没有融合的线粒体过渡肽在烟草和拟南芥中诱导雄性不育。这表明花粉颗粒异常和缺乏花粉活动。结论,ATP6的编码序列,含有单核苷酸多态性和吲哚变化可能在调节keNAF中的雄性不育中起着至关重要的作用。这些数据表明,UG93a的ATP6可以是keanAF细胞质雄性不育的候选基因,并提供了进一步研究kEnaf中细胞质雄性不育的分子机制的基本信息。

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