首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Transcriptome Analysis Reveals Key Cold-Stress-Responsive Genes in Winter Rapeseed (Brassica rapa L.)
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Transcriptome Analysis Reveals Key Cold-Stress-Responsive Genes in Winter Rapeseed (Brassica rapa L.)

机译:转录组分析揭示了冬季油菜(Brassica rapa L.)的关键冷胁迫响应基因

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摘要

Low ambient air temperature limits the growth and selection of crops in cold regions, and cold tolerance is a survival strategy for overwintering plants in cold winters. Studies of differences in transcriptional levels of winter rapeseed (Brassica rapa L.) under cold stress can improve our understanding of transcript-mediated cold stress responses. In this study, two winter rapeseed varieties, Longyou-7 (cold-tolerant) and Lenox (cold-sensitive), were used to reveal morphological, physiological, and transcriptome levels after 24 h of cold stress, and 24 h at room temperature, to identify the mechanism of tolerance to cold stress. Compared to Lenox, Longyou-7 has a shorter growth period and greater belowground mass, and exhibits stronger physiological activity after cold stress. Subsequently, more complete genomic annotation was obtained by sequencing. A total of 10,251 and 10,972 differentially expressed genes (DEG) were identified in Longyou-7 and Lenox, respectively. Six terms closely related to cold stress were found by the Gene Ontology (GO) function annotation. Some of these terms had greater upregulated expression in Longyou-7, and the expression of these genes was verified by qRT-PCR. Most of these DEGs are involved in phenylpropanoid biosynthesis, plant hormone signal transduction, ribosome biogenesis, MAPK signaling pathway, basal transcription factors, and photosynthesis. Analysis of the genes involved in the peroxisome pathway revealed that Longyou-7 and Lenox may have different metabolic patterns. Some transcription factors may play an important role in winter rapeseed tolerance to cold stress, and Longyou-7 is slightly slower than Lenox. Our results provide a transcriptome database and candidate genes for further study of winter rapeseed cold stress.
机译:低的环境温度限制了寒冷地区农作物的生长和选择,而耐寒性是寒冷冬季越冬植物的生存策略。研究冷胁迫下冬季油菜(Brassica rapa L.)转录水平的差异可以增进我们对转录介导的冷胁迫反应的理解。在这项研究中,使用了两个冬季油菜品种,耐冷的龙游7号和耐冷的Lenox品种,揭示了冷应激24小时和室温24小时后的形态,生理和转录组水平,找出耐寒性的机制。与Lenox相比,Longyou-7具有较短的生长期和更大的地下质量,并且在冷胁迫后表现出更强的生理活性。随后,通过测序获得更完整的基因组注释。在龙游7号和莱诺克斯州分别鉴定出总共10,251个和10,972个差异表达基因(DEG)。通过基因本体论(GO)功能注释发现了六个与冷应激密切相关的术语。其中一些术语在龙游7号中的表达上调更大,并且通过qRT-PCR验证了这些基因的表达。这些DEG中的大多数都参与了苯丙烷的生物合成,植物激素信号转导,核糖体生物发生,MAPK信号通路,基础转录因子和光合作用。对涉及过氧化物酶体途径的基因进行分析后发现,龙游7号和莱诺克斯可能具有不同的代谢模式。一些转录因子可能在冬季油菜籽对冷胁迫的耐受性中起重要作用,而龙油7号比Lenox慢一些。我们的结果提供了转录组数据库和候选基因,用于进一步研究冬季油菜冷胁迫。

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