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恢复基因的剂量效应通过生长素信号传导和类黄酮生物合成调节棉花CMS-D2恢复系的花粉育性。

Dose effects of restorer gene modulate pollen fertility in cotton CMS-D2 restorer lines via auxin signaling and flavonoid biosynthesis.

作者信息

Zang Rong, Shahzad Kashif, Zhang Xuexian, Guo Liping, Qi Tingxiang, Tang Huini, Wang Ruijie, Wang Hailin, Qiao Xiuqin, Zhang Meng, Wu Jianyong, Xing Chaozhu

机构信息

National Key Laboratory of Cotton Bio-Breeding and Integrated Utilization, Institute of Cotton Research of Chinese Academy of Agricultural Sciences, Key Laboratory for Cotton Genetic Improvement, Ministry of Agriculture and Rural Affairs, 38 Huanghe Dadao, Anyang, 455000, Henan, China.

出版信息

Plant Cell Rep. 2023 Nov;42(11):1705-1719. doi: 10.1007/s00299-023-03053-2. Epub 2023 Sep 16.

Abstract

Dose effects of Rf gene regulated retrieval mechanism of pollen fertility for CMS-D2 cotton. Cytoplasmic male sterility conditioned by Gossypium harknessii cytoplasm (CMS-D2) is an economical pollination control system for producing hybrid cotton seeds compared to artificial and chemical emasculation methods. However, the unstable restoring ability of restorer lines is a main barrier in the large-scale application of "three-line" hybrid cotton in China. Our phenotypic investigation determined that the homozygous RfRf allelic genotype had a stronger ability to generate fertile pollen than the heterozygous Rfrf allelic genotype. To decipher the genetic mechanisms that control the differential levels of pollen fertility, an integrated metabolomic and transcriptomic analysis was performed at two environments using pollen grains of four cotton genotypes differing in Rf alleles or cytoplasm. Totally 5,391 differential metabolite features were detected, and 369 specific differential metabolites (DMs) were identified between homozygous and heterozygous Rf allelic genotypes with CMS-D2 cytoplasm. In addition, transcriptome analysis identified 2,490 differentially expressed genes (DEGs) and 96 unique hub DEGs with dynamic regulation in this comparative combination. Further integrated analyses revealed that several key DEGs and DMs involved in indole biosynthesis, flavonoid biosynthesis, and sugar metabolism had strong network linkage with fertility restoration. In vitro application of auxin analogue NAA and inhibitor Auxinole confirmed that over-activated auxin signaling might inhibit pollen development, whereas suppressing auxin signaling partially promoted pollen development in CMS-D2 cotton. Our results provide new insight into how the dosage effects of the Rf gene regulate pollen fertility of CMS-D2 cotton.

摘要

Rf基因对细胞质雄性不育系D2棉花花粉育性恢复机制的剂量效应。与人工去雄和化学去雄方法相比,哈克尼棉细胞质(CMS-D2)导致的细胞质雄性不育是一种生产杂交棉种子的经济授粉控制系统。然而,恢复系恢复能力不稳定是我国“三系”杂交棉大规模应用的主要障碍。我们的表型研究确定,纯合RfRf等位基因型比杂合Rfrf等位基因型产生可育花粉的能力更强。为了解析控制花粉育性差异水平的遗传机制,利用四种Rf等位基因或细胞质不同的棉花基因型的花粉粒,在两种环境下进行了代谢组学和转录组学的综合分析。共检测到5391个差异代谢物特征,在具有CMS-D2细胞质的纯合和杂合Rf等位基因型之间鉴定出369种特异性差异代谢物(DMs)。此外,转录组分析确定了2490个差异表达基因(DEGs)和96个在该比较组合中具有动态调控的独特核心DEGs。进一步的综合分析表明,参与吲哚生物合成、类黄酮生物合成和糖代谢的几个关键DEGs和DMs与育性恢复有很强的网络联系。生长素类似物NAA和抑制剂Auxinole的体外应用证实,生长素信号过度激活可能抑制花粉发育,而抑制生长素信号则部分促进CMS-D2棉花的花粉发育。我们的研究结果为Rf基因的剂量效应如何调节CMS-D2棉花的花粉育性提供了新的见解。

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