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Normal and Abortive Buds Transcriptomic Profiling of Broccoli ogu Cytoplasmic Male Sterile Line and Its Maintainer

机译:西兰花花粉细胞质雄性不育系及其维持基因的正常和败育转录组

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摘要

Bud abortion is the main factor affecting hybrid seeds’ yield during broccoli cross breeding when using ogura cytoplasmic male sterile (ogu CMS) lines. However, the genes associated with bud abortion are poorly understood. We applied RNA sequencing to analyze the transcriptomes of normal and abortive buds of broccoli maintainer and ogu CMS lines. Functional analysis showed that among the 54,753 annotated unigenes obtained, 74 and 21 differentially expressed genes in common were upregulated and downregulated in ogu CMS abortive buds compared with ogu CMS normal buds, maintainer normal, and abortive buds, respectively. Nineteen of the common differentially expressed genes were enriched by GO terms associated with glycosyl hydrolases, reactive oxygen species scavenging, inhibitor, and protein degradation. Ethylene-responsive transcription factor 115 and transcriptional factor basic helix-loop-helix 137 were significantly upregulated; transcription factors DUO1 and PosF21/RF2a/BZIP34 were downregulated in ogu CMS abortive buds compared with the other groups. Genes related to polygalacturonase metabolism, glycosyl hydrolases, oxidation reduction process, phenylalanine metabolism, and phenylpropanoid biosynthesis were significantly changed in ogu CMS abortive buds. Our results increase our understanding of bud abortion, provide a valuable resource for further functional characterization of ogu CMS during bud abortion, and will aid in future cross breeding of Brassica crops.
机译:当使用ogura细胞质雄性不育(ogu CMS)品系时,芽流产是影响西兰花杂交育种中杂种种子产量的主要因素。但是,与芽流产相关的基因了解甚少。我们应用RNA测序来分析西兰花维持剂和ogu CMS系的正常和流产芽的转录组。功能分析表明,与ogu CMS正常芽,维持性正常芽和流产芽相比,ogu CMS流产芽中获得的54,753条带注释的单基因中,共有74个和21个差异表达的共同基因上调和下调。 19个常见的差异表达基因富含与糖基水解酶,活性氧清除,抑制剂和蛋白质降解相关的GO术语。乙烯响应转录因子115和转录因子碱性螺旋-环-螺旋137显着上调;与其他组相比,ogu CMS流产芽中的转录因子DUO1和PosF21 / RF2a / BZIP34被下调。在ogu CMS流产芽中,与聚半乳糖醛酸酶代谢,糖基水解酶,氧化还原过程,苯丙氨酸代谢和苯丙烷生物合成相关的基因发生了显着变化。我们的结果加深​​了我们对芽流产的理解,为芽流产过程中ogu CMS的进一步功能表征提供了宝贵的资源,并将有助于今后芸Bra属作物的杂交育种。

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