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细胞器比较基因组分析揭示了 导致的新型叶绿体雄性不育

Organelle Comparative Genome Analysis Reveals Novel Alloplasmic Male Sterility with in L.

机构信息

Key Laboratory of Biology and Genetic Improvement of Horticultural Crops, Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Ministry of Agriculture, Beijing 100081, China.

State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Int J Mol Sci. 2021 Dec 8;22(24):13230. doi: 10.3390/ijms222413230.

Abstract

Ogura CMS is an alloplasmic male-sterile line introduced from radish by interspecific hybridization and protoplast fusion. The introduction of alien cytoplasm resulted in many undesirable traits, which affected the yield of hybrids. Therefore, it is necessary to identify the composition and reduce the content of alien cytoplasm in Ogura CMS. In the present study, we sequenced, assembled, and compared the organelle genomes of Ogura CMS cabbage and its maintainer line. The chloroplast genome of Ogura-type cabbage was completely derived from normal-type cabbage, whereas the mitochondrial genome was recombined from normal-type cabbage and Ogura-type radish. Nine unique regions derived from radish were identified in the mitochondrial genome of Ogura-type cabbage, and the total length of these nine regions was 35,618 bp, accounting for 13.84% of the mitochondrial genome. Using 32 alloplasmic markers designed according to the sequences of these nine regions, one novel sterile source with less alien cytoplasm was discovered among 305 materials and named Bel CMS. The size of the alien cytoplasm in Bel CMS was 21,587 bp, accounting for 8.93% of its mtDNA, which was much less than that in Ogura CMS. Most importantly, the sterility gene was replaced by , which had a 78-bp deletion, in Bel CMS. Interestingly, Bel CMS cabbage also maintained 100% sterility, although had 26 fewer amino acids than . Field phenotypic observation showed that Bel CMS was an excellent sterile source with stable 100% sterility and no withered buds at the early flowering stage, which could replace Ogura CMS in cabbage heterosis utilization.

摘要

Ogura CMS 是通过种间杂交和原生质体融合从萝卜中导入的全质体雄性不育系。异源细胞质的引入导致了许多不良性状,影响了杂种的产量。因此,有必要鉴定 Ogura CMS 中的细胞质组成并降低其异源细胞质的含量。本研究对 Ogura CMS 白菜及其保持系的细胞器基因组进行了测序、组装和比较。Ogura 型白菜的叶绿体基因组完全来源于普通型白菜,而线粒体基因组则是由普通型白菜和 Ogura 型萝卜重组而来。在 Ogura 型白菜的线粒体基因组中鉴定出 9 个来自萝卜的特有区域,这些区域的总长度为 35618bp,占线粒体基因组的 13.84%。利用根据这 9 个区域序列设计的 32 个全质体标记,在 305 份材料中发现了一个具有较少异源细胞质的新型不育源,并将其命名为 Bel CMS。Bel CMS 的异源细胞质大小为 21587bp,占其 mtDNA 的 8.93%,远小于 Ogura CMS。更为重要的是,Bel CMS 中的不育基因 被替换为 ,其缺失了 78bp。有趣的是,Bel CMS 白菜也保持了 100%的不育性,尽管 比 少了 26 个氨基酸。田间表型观察表明,Bel CMS 是一种优良的不育源,具有稳定的 100%不育性,在早期开花阶段没有枯萎的花蕾,可以替代 Ogura CMS 在白菜杂种优势利用中。

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