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首页> 外文期刊>Theoretical and Applied Genetics >Cytoplasmic male sterility in alloplasmic Brassica juncea carrying Diplotaxis catholica cytoplasm: molecular characterization and genetics of fertility restoration
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Cytoplasmic male sterility in alloplasmic Brassica juncea carrying Diplotaxis catholica cytoplasm: molecular characterization and genetics of fertility restoration

机译:带有Diplotaxis天主教细胞质的异质菜芥菜的细胞质雄性不育:育性恢复的分子特征和遗传

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摘要

The present study was aimed at characterizing cytoplasmic male sterility (CMS) and identifying the fertility restorer gene for CMS (Diplotaxis catholica) Brassica juncea derived through sexual hybridization. The fertility restorer gene was identified by crossing the CMS line with progeny plants derived from somatic hybrids of B. juncea and D. cathoilca. The CMS line is comparable to the nuclear donor B. juncea in all respects except for flower and silique characteristics. In CMS plants, the flowers have smaller nectaries, and anthers are converted into petals or tubular structures. Gynoecium exhibits a crooked style and trilocular ovary. Seed fertility was reduced in the CMS line. Genetic segregation data indicated that a single, dominant, nuclear gene governs fertility restoration. Restored plants showed a high female fertility and lacked gynoecium abnormalities. In fertility-restored plants, petal development was found to be variable; some flowers had the normal number of four petals, while others had zero to three petals. Interestingly, the trilocular character of the ovary was found to co-segregate with CMS and became bilocular upon male-fertility restoration. Thus, this trait appears to be affected by the interaction of nuclear and mitochondrial (mt) genomes. Restriction fragment length polymorphism analysis indicated that mt-genome of D. catholica is highly divergent from that of B. juncea. However, in Northern analysis, out of eight mt genes studied, an altered transcript pattern was recorded for only atpA. In fertility-restored plants, the atpA transcript became shorter, thereby showing its association with CMS.
机译:本研究旨在表征细胞质雄性不育(CMS)并鉴定通过性杂交获得的芥菜CMS(Diplotaxis catholica)育性恢复基因。通过将CMS品系与衍生自芥菜假单胞菌和D. cathoilca的体细胞杂种的后代植物杂交来鉴定育性恢复基因。 CMS系除花朵和角果特征外,在所有方面都可与核捐赠者B. juncea媲美。在CMS植物中,花的蜜腺较小,而花药被转化为花瓣或管状结构。妇科表现出弯曲的风格和三叶卵巢。 CMS系的种子繁殖力降低。遗传隔离数据表明,一个单一的,占主导地位的核基因控制着生育能力的恢复。恢复的植物显示出较高的雌性育性,并且缺乏妇科畸形。在恢复生育力的植物中,花瓣发育被发现是可变的。有些花朵的花瓣正常数量为四瓣,而另一些花朵的花瓣为零至三瓣。有趣的是,发现卵巢的三叶性与CMS共分离,并且在雄性育性恢复后变成双眼。因此,该性状似乎受到核基因组和线粒体(mt)基因组相互作用的影响。限制性片段长度多态性分析表明,D。catholica的mt基因组与B. juncea的mt基因组高度不同。但是,在Northern分析中,在研究的8个mt基因中,只有atpA记录了改变的转录方式。在恢复生育力的植物中,atpA转录物变短,从而显示出它与CMS的关联。

著录项

  • 来源
    《Theoretical and Applied Genetics》 |2003年第3期|455-461|共7页
  • 作者单位

    National Research Centre on Plant Biotechnology Indian Agricultural Research Institute New Delhi 110012 India;

    National Research Centre on Plant Biotechnology Indian Agricultural Research Institute New Delhi 110012 India;

    National Research Centre on Plant Biotechnology Indian Agricultural Research Institute New Delhi 110012 India;

    National Research Centre on Plant Biotechnology Indian Agricultural Research Institute New Delhi 110012 India;

    National Research Centre on Plant Biotechnology Indian Agricultural Research Institute New Delhi 110012 India;

    National Research Centre on Plant Biotechnology Indian Agricultural Research Institute New Delhi 110012 India;

    National Research Centre on Plant Biotechnology Indian Agricultural Research Institute New Delhi 110012 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Brassica juncea; Cytoplasmic male sterility; Fertility restoration; Silique; Transcript variation;

    机译:芥菜;细胞质雄性不育;生殖力恢复;Silique;转录本变异;

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