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整合全长转录组和代谢组分析揭示马铃薯对冻害胁迫的黄酮类调控

Integrated Full-Length Transcriptome and Metabolome Profiling Reveals Flavonoid Regulation in Response to Freezing Stress in Potato.

作者信息

Zhu Zhiguo, Wei Lingling, Guo Lei, Bao Huihui, Wang Xuemei, Kear Philip, Wang Zhen, Zhu Guangtao

机构信息

Yunnan Key Laboratory of Potato Biology, Engineering Research Center of Sustainable Development and Utilization of Biomass Energy, Ministry of Education, School of Life Sciences, Yunnan Normal University, Kunming 650500, China.

School of Life Sciences, Anhui Agricultural University, Hefei 230036, China.

出版信息

Plants (Basel). 2023 May 22;12(10):2054. doi: 10.3390/plants12102054.

Abstract

Cold stress impairs plant growth and development, resulting in crop failure. Cultivated potato ( L.) is sensitive to freezing, while its wild relative, , has a strong freezing tolerance. To decipher the anti-freezing mechanism of CM, we carried out a transcriptomic and metabolomic analysis of an anti-freezing variety of CM (a type of ) and a freeze-sensitive variety of DM (a type of L.). A total of 49,232 high-quality transcripts from 12,811 gene loci, including 46,772 coding sequences and 2018 non-coding RNAs, were identified. KEEG enrichment analysis of differentially expressed genes (DEGs) between the two varieties showed that the flavonoid biosynthesis pathway was strongly induced by freezing stress, which was proven by flavonoid metabolome analysis. Consistent with the accumulation of more flavonoids, nearly all the pathway genes were significantly upregulated in CM than those in DM. The transcript levels of two (-) isoforms and four isoforms of (-) were confirmed by qRT-PCR. Co-expression analysis identified one and three s (-) that were significantly upregulated in CM during freezing stress. Our findings support that the flavonoid pathway was significantly enhanced by freezing stress and the greater accumulation ofglycosylatedflavonoids in resistant types than that of sensitive types, maybe accounting for the increased freezing tolerance of freeze-resistant potato varieties.

摘要

低温胁迫会损害植物的生长发育,导致作物歉收。栽培马铃薯(L.)对冷冻敏感,而其野生近缘种CM则具有较强的抗冻性。为了解析CM的抗冻机制,我们对一种抗冻型CM(一种类型)和一种冻敏感型DM(一种L.类型)进行了转录组和代谢组分析。共鉴定出12811个基因位点的49232个高质量转录本,包括46772个编码序列和2018个非编码RNA。两个品种之间差异表达基因(DEGs)的KEGG富集分析表明,类黄酮生物合成途径在冷冻胁迫下被强烈诱导,这通过类黄酮代谢组分析得到证实。与更多类黄酮的积累一致,几乎所有途径基因在CM中比在DM中显著上调。通过qRT-PCR证实了两种(-)同工型和四种(-)同工型的转录水平。共表达分析确定了在冷冻胁迫期间CM中显著上调的一个和三个s(-)。我们的研究结果支持冷冻胁迫显著增强了类黄酮途径,并且抗性类型中糖基化类黄酮的积累比敏感类型更多,这可能是抗冻马铃薯品种抗冻性增加的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1604/10223400/4660d6bdbf61/plants-12-02054-g006.jpg

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