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STERILE APETALA 的一个错义突变导致中国白菜( Brassica campestris ssp. pekinensis )的雌性不育。

A missense mutation of STERILE APETALA leads to female sterility in Chinese cabbage (Brassica campestris ssp. pekinensis).

机构信息

Department of Horticulture, Shenyang Agricultural University, 120 Dongling Road, Shenhe District, Shenyang, 110866, People's Republic of China.

Key Laboratory of Plant Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, People's Republic of China.

出版信息

Plant Reprod. 2019 Jun;32(2):217-228. doi: 10.1007/s00497-019-00368-7. Epub 2019 Feb 26.

Abstract

Flower development is essential for the sexual reproduction and crop yield of plants. Thus, a better understanding of plant sterility from the perspective of morphological and molecular genetics is imperative. In our previous study, a recessive female-sterile Chinese cabbage mutant fsm was obtained from a doubled haploid line 'FT' via an isolated microspore culture combined with EMS mutagenesis. Pistil aniline blue staining and stigma scanning observation showed that the growth of the stigma papillar cells and pollen tubes of the mutant fsm were normal. Therefore, the female sterility was due to abnormal development of the ovules. To map the mutant fsm, 3108 F individuals were selected for linkage analysis. Two closely linked markers, Indel-I2 and Indel-I7, were localized on the flanking region of fsm at distances of 0.05 cM and 0.06 cM, respectively. The physical distance between Indel-I2 and Indel-I7 was ~ 1376 kb, with 107 genes remaining in the target region. This region was located on the chromosome A04 centromere, on which low recombination rates and a high frequency of repetitive sequences were present. Whole-genome re-sequencing detected a single-nucleotide (C-to-A) transition (TCG/TAG) on the exon of BraA04001030, resulting in a premature stop codon. Genotyping revealed that the female-sterile phenotype was fully cosegregated with this SNP. BraA04001030 encodes a homologue of STERILE APETALA (SAP) transcriptional regulator, which plays vital roles in floral development. The results of the present study suggest that BraA04001030 is a strong candidate gene for fsm and provide the basis for exploring the molecular mechanism underlying female sterility in Chinese cabbage.

摘要

花的发育对于植物的有性繁殖和作物产量至关重要。因此,从形态学和分子遗传学的角度更好地理解植物不育性是至关重要的。在我们之前的研究中,通过孤雌生殖花粉培养与 EMS 诱变相结合,从双单倍体系 'FT' 中获得了一个隐性雌性不育的白菜突变体 fsm。柱头吖啶橙染色和柱头扫描观察表明,突变体 fsm 的柱头乳突细胞和花粉管的生长正常。因此,雌性不育是由于胚珠的异常发育所致。为了对突变体 fsm 进行作图,选择了 3108 个 F 个体进行连锁分析。两个紧密连锁的标记,Indel-I2 和 Indel-I7,分别位于 fsm 的侧翼区域,距离为 0.05 cM 和 0.06 cM。Indel-I2 和 Indel-I7 之间的物理距离约为 1376 kb,目标区域内仍有 107 个基因。该区域位于 A04 染色体着丝粒上,该区域存在低重组率和高重复序列频率。全基因组重测序检测到 BraA04001030 外显子上的单个核苷酸(C 到 A)转换(TCG/TAG),导致提前出现终止密码子。基因分型表明,雌性不育表型与该 SNP 完全共分离。BraA04001030 编码 STERILE APETALA (SAP) 转录调控因子的同源物,在花发育中起着至关重要的作用。本研究结果表明,BraA04001030 是 fsm 的一个强候选基因,为研究白菜雌性不育的分子机制提供了依据。

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