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蔷薇科李属西伯利亚杏基因组范围鉴定、R2R3-MYB 基因家族表达分析及其在冷胁迫下的潜在作用。

Genome-wide identification, expression analysis of the R2R3-MYB gene family and their potential roles under cold stress in Prunus sibirica.

机构信息

College of Forestry, Shenyang Agricultural University, Shenyang, 110866, China.

Key Laboratory for Silviculture of Liaoning Province, Shenyang Agricultural University, Shenyang, 110866, China.

出版信息

BMC Genomics. 2024 Oct 14;25(1):953. doi: 10.1186/s12864-024-10868-0.

Abstract

BACKGROUND

The R2R3-MYB transcription factors in plants participate in various physiological and biochemical processes and responds to various external stimuli. Prunus sibirica (known as Siberian apricot) is a drupe tree species that produces extremely high nutritional value kernels. However, it is susceptiblility to frost damage during the flowering period, results in a marked reduction in kernel yield.

RESULTS

In this study, the MYB gene family of P. sibirica (PsMYB) was systematically analyzed, and 116 R2R3-MYB genes that were distributed unevenly over eight chromosomes were ultimately screened. Phylogenetic analysis divided these 116 genes into 30 subgroups. We discovered that 37 PsMYBs had cold stress-responsive promoters, and six PsMYBs were annotated to be associated with cold response. Intraspecific homology analysis identified segmental duplication as the primary gene amplification mechanism, and homology analysis of the PsMYB genes with those of five other species revealed phylogenetic relationships with Rosaceae species. Protein interaction studies revealed collaborative regulation of the PsMYB proteins with Arabidopsis protein, and transcriptome analysis identified PsMYB genes that were highly expressed at low temperatures. Additionally, the expression levels of 22 PsMYBs in different tissue parts of P. sibirica and under different low-temperature stress conditions were evaluated using quantitative real-time PCR, with the results verifying that PsMYBs are specifically expressed in different plant parts and may be involved in the growth and development of P. sibirica species. Genes upregulated after exposure to low-temperature stress and likely involved in cold response were identified.

CONCLUSION

This study lays a foundation for understanding the molecular biology of PsMYBs in P. sibirica and provides a theoretical basis for the future study of transgenic lines with cold resistance during the flowering period of this tree.

摘要

背景

植物中的 R2R3-MYB 转录因子参与各种生理和生化过程,并对外界刺激做出响应。西伯利亚杏(俗称西伯利亚杏)是一种核果类树种,其核仁具有极高的营养价值。然而,该树种在花期易受冻害,导致核仁产量显著下降。

结果

本研究对西伯利亚杏的 MYB 基因家族(PsMYB)进行了系统分析,最终筛选出分布在 8 条染色体上的 116 个不均匀分布的 R2R3-MYB 基因。系统发育分析将这些 116 个基因分为 30 个亚组。我们发现 37 个 PsMYB 具有冷胁迫响应启动子,6 个 PsMYB 被注释为与冷响应相关。种内同源性分析表明,片段重复是基因扩增的主要机制,与五个其他物种的 PsMYB 基因的同源性分析揭示了与蔷薇科物种的系统进化关系。蛋白相互作用研究表明,PsMYB 蛋白与拟南芥蛋白协同调控,转录组分析鉴定出在低温下高度表达的 PsMYB 基因。此外,采用实时荧光定量 PCR 法评估了 22 个 PsMYB 在西伯利亚杏不同组织部位和不同低温胁迫条件下的表达水平,结果表明 PsMYB 特异性表达于不同的植物部位,可能参与西伯利亚杏的生长发育。鉴定出低温胁迫后上调的基因,可能参与冷响应。

结论

本研究为了解西伯利亚杏 PsMYB 的分子生物学奠定了基础,为未来研究该树种花期的抗寒性转基因品系提供了理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aee/11472476/8270370641d7/12864_2024_10868_Fig1_HTML.jpg

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