College of Horticulture, Vegetable Genetics and Breeding Laboratory, Anhui Agricultural University, 130 West Changjiang Road, Hefei, 230036, Anhui, China.
Provincial Engineering Laboratory for Horticultural Crop Breeding of Anhui, 130 West of Changjiang Road, Hefei, 230036, Anhui, China.
BMC Genomics. 2021 Sep 11;22(1):654. doi: 10.1186/s12864-021-07985-5.
The discovery of male sterile materials is of great significance for the development of plant fertility research. Wucai (Brassica campestris L. ssp. chinensis var. rosularis Tsen) is a variety of non-heading Chinese cabbage. There are few studies on the male sterility of wucai, and the mechanism of male sterility is not clear. In this study, the male sterile mutant MS7-2 and the wild-type fertile plant MF7-2 were studied.
Phenotypic characteristics and cytological analysis showed that MS7-2 abortion occurred at the tetrad period. The content of related sugars in the flower buds of MS7-2 was significantly lower than that of MF7-2, and a large amount of reactive oxygen species (ROS) was accumulated. Through transcriptome sequencing of MS7-2 and MF7-2 flower buds at three different developmental stages (a-c), 2865, 3847, and 4981 differentially expressed genes were identified in MS7-2 at the flower bud development stage, stage c, and stage e, respectively, compared with MF7-2. Many of these genes were enriched in carbohydrate metabolism, phenylpropanoid metabolism, and oxidative phosphorylation, and most of them were down-regulated in MS7-2. The down-regulation of genes involved in carbohydrate and secondary metabolite synthesis as well as the accumulation of ROS in MS7-2 led to pollen abortion in MS7-2.
This study helps elucidate the mechanism of anther abortion in wucai, providing a basis for further research on the molecular regulatory mechanisms of male sterility and the screening and cloning of key genes in wucai.
雄性不育材料的发现对于植物育性研究的发展具有重要意义。五彩(芸薹属白菜亚种芸薹变种鸡冠型)是一种不结球白菜。关于五彩的雄性不育的研究较少,雄性不育的机制尚不清楚。本研究以雄性不育突变体 MS7-2 和野生可育型 MF7-2 为材料。
表型特征和细胞学分析表明,MS7-2 败育发生在四分体时期。MS7-2 的花蕾中相关糖的含量明显低于 MF7-2,并且大量的活性氧(ROS)积累。通过 MS7-2 和 MF7-2 花蕾在三个不同发育阶段(a-c)的转录组测序,在花蕾发育阶段、c 阶段和 e 阶段,MS7-2 分别有 2865、3847 和 4981 个差异表达基因与 MF7-2 相比。这些基因中有许多富集在碳水化合物代谢、苯丙烷代谢和氧化磷酸化中,并且大多数在 MS7-2 中下调。MS7-2 中参与碳水化合物和次生代谢物合成的基因下调以及 ROS 的积累导致 MS7-2 花粉败育。
本研究有助于阐明五彩花药败育的机制,为进一步研究五彩雄性不育的分子调控机制以及五彩关键基因的筛选和克隆提供了依据。