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比较转录组分析揭示了温度敏感细胞质雄性不育小麦育性转换的关键见解。

Comparative Transcriptome Analysis Reveals Key Insights into Fertility Conversion in the Thermo-Sensitive Cytoplasmic Male Sterile Wheat.

机构信息

Beijing Key Laboratory of Molecular Genetics in Hybrid Wheat, Institute of Hybrid Wheat Beijing Academy of Agriculture and Forestry Science, Beijing 100097, China.

College of Agronomy, Northwest A&F University, Xianyang 712100, China.

出版信息

Int J Mol Sci. 2022 Nov 18;23(22):14354. doi: 10.3390/ijms232214354.

Abstract

Thermo-sensitive cytoplasmic male sterility (TCMS) plays a crucial role in hybrid production and hybrid breeding; however, there are few studies on molecular mechanisms related to anther abortion in the wheat TCMS line. In this study, FA99, a new wheat thermo-sensitive cytoplasmic male sterility line, was investigated. Fertility conversion analysis showed that FA99 was mainly controlled by temperature, and the temperature-sensitive stage was pollen mother cell formation to a uninucleate stage. Further phenotypic identification and paraffin section showed that FA99 was characterized by indehiscent anthers and aborted pollen in a sterile environment and tapetum was degraded prematurely during the tetrad period, which was the critical abortion period of FA99. The contents of O, HO, MDA and POD were significantly changed in FA99 under a sterile environment by the determination of physiological indexes. Furthermore, through transcriptome analysis, 252 differentially expressed genes were identified, including 218 downregulated and 34 upregulated genes. Based on KOG function classification, GO enrichment and KEGG pathways analysis, it was evident that significant transcriptomic changes in FA99 under different fertility environments, and the major differences were "phenylalanine metabolism", "phenylpropanoid biosynthesis", "cutin, suberine and wax biosynthesis", "phenylalanine, tyrosine and tryptophan biosynthesis" and "citrate cycle (TCA cycle)". Finally, we proposed an intriguing transcriptome-mediated pollen abortion and male sterility network for FA99. These findings provided data on the molecular mechanism of fertility conversion in thermo-sensitive cytoplasmic male sterility wheat.

摘要

热敏感细胞质雄性不育(TCMS)在杂种生产和杂种选育中起着至关重要的作用;然而,关于小麦 TCMS 系花药败育相关的分子机制研究甚少。本研究以新的小麦温敏细胞质雄性不育系 FA99 为材料。育性转换分析表明,FA99 主要受温度控制,其温度敏感阶段是花粉母细胞形成到单核期。进一步的表型鉴定和石蜡切片表明,FA99 的特征是在不育环境下花药不开裂和花粉败育,绒毡层在四分体时期过早降解,这是 FA99 的关键败育期。通过生理指标测定,在不育环境下,FA99 的 O、HO、MDA 和 POD 含量明显变化。此外,通过转录组分析,鉴定出 252 个差异表达基因,包括 218 个下调基因和 34 个上调基因。根据 KOG 功能分类、GO 富集和 KEGG 通路分析,明显看出 FA99 在不同育性环境下的转录组发生了显著变化,主要差异在“苯丙氨酸代谢”、“苯丙烷生物合成”、“角质、栓质和蜡生物合成”、“苯丙氨酸、酪氨酸和色氨酸生物合成”和“柠檬酸循环(TCA 循环)”。最后,我们提出了一个有趣的 FA99 花粉败育和雄性不育的转录组介导网络。这些发现为热敏感细胞质雄性不育小麦育性转换的分子机制提供了数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/659d/9693999/e8714a568363/ijms-23-14354-g001.jpg

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