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砂梨(Pyrus pyrifolia)中MAPK家族成员的全基因组鉴定及分子特征分析

Genome-wide identification and molecular characterization of the MAPK family members in sand pear (Pyrus pyrifolia).

作者信息

Xu Yue, Wang Huiying, Shi Haiyan

机构信息

College of Horticulture, Hebei Agricultural University, Baoding, Hebei, 071001, China.

出版信息

BMC Genomics. 2025 May 15;26(1):485. doi: 10.1186/s12864-025-11672-0.

Abstract

BACKGROUND

'Whangkeumbae', a highly regarded variety of sand pear, is celebrated in the market for its distinctive and superior flavor. However, the rapid production of ethylene after harvest significantly shortens its shelf life, becoming a major limiting factor for enhancing its commercial value. Mitogen-activated protein kinases (MAPKs) are a highly conserved family of transferases in eukaryotes. Although the importance of this family has been extensively studied in other plants, the precise composition and functional mechanisms of MAPK members in sand pear remain elusive. A genome-wide identification and molecular characterization of the MAPK gene family were conducted in Pyrus pyrifolia. This comprehensive analysis aimed to elucidate the genomic distribution, evolutionary relationships, and potential biological roles of MAPK genes in fruit senescence.

RESULTS

Four PpMAPKs were identified from our transcriptome data of sand pear, and 22 PpMAPK proteins were identified from the sand pear genome. Specifically, the transcriptomic PpMAPK3-L (GenBank accession number: PP992971), PpMAPK7-L (GenBank accession number: PP992972), PpMAPK10-L (GenBank accession number: PP992973), and PpMAPK16-L (GenBank accession number: PP992974) exhibited sequence homology values of 99.19%, 100%, 94.51%, and 95.75%, respectively, with their corresponding genomic counterparts (EVM0007944.1, EVM0004426.1, EVM0023771.1, EVM0027166.1). These findings indicate that the integrated analysis of transcriptomic and genomic data provides critical genetic insights into the MAPK genes in sand pear, culminating in the identification of a total of 25 PpMAPK genes in this species. Further phylogenetic analysis classified these genes into four subfamilies (A, B, C, and D), with subfamilies A and B each comprising six members, subfamily C with four members, and subfamily D with nine members. The potential functional differences among the gene members of each subfamily provide valuable clues for future research into MAPK signaling pathways. Further analysis by qRT-PCR revealed that the expression of four PpMAPK genes was positively correlated with fruit senescence in Pyrus pyrifolia. Additionally, interaction analysis revealed a significant interaction between PpMAPK3-L and PpbZIP2, which coordinatively regulate the senescence traits of fruits in sand pear through their joint influence during the senescence process.

CONCLUSION

The results of this study suggest that PpMAPK3-L, PpMAPK7-L, PpMAPK10-L, and PpMAPK16-L are likely to play pivotal roles in the maturation and senescence of sand pear fruit. Specifically, the interaction between PpMAPK3-L and PpbZIP2 could play a key role in the regulation of fruit senescence, indicating that the MAPK signaling pathway may modulate the fruit's physiological state through interactions with transcription factors. This finding offers significant insights for further investigation into the functions of MAPK genes in the maturation and senescence of sand pear fruit and provides a new direction for investigating biotechnological approaches for delaying senescence and prolonging shelf life.

摘要

背景

“黄金梨”是备受推崇的砂梨品种,因其独特且优良的风味在市场上颇受青睐。然而,采后果实乙烯的快速产生显著缩短了其货架期,成为提升其商业价值的主要限制因素。丝裂原活化蛋白激酶(MAPKs)是真核生物中高度保守的转移酶家族。尽管该家族在其他植物中的重要性已得到广泛研究,但砂梨中MAPK成员的精确组成和功能机制仍不清楚。本研究对砂梨的MAPK基因家族进行了全基因组鉴定和分子特征分析。这一全面分析旨在阐明MAPK基因在果实衰老中的基因组分布、进化关系及潜在生物学作用。

结果

从砂梨转录组数据中鉴定出4个PpMAPKs,从砂梨基因组中鉴定出22个PpMAPK蛋白。具体而言,转录组的PpMAPK3-L(GenBank登录号:PP992971)、PpMAPK7-L(GenBank登录号:PP992972)、PpMAPK10-L(GenBank登录号:PP992973)和PpMAPK16-L(GenBank登录号:PP992974)与它们相应的基因组序列(EVM0007944.1、EVM0004426.1、EVM0023771.1、EVM0027166.1)的序列同源性值分别为99.19%、100%、94.51%和95.75%。这些结果表明,转录组和基因组数据的综合分析为砂梨中MAPK基因提供了关键的遗传见解,最终在该物种中鉴定出总共25个PpMAPK基因。进一步的系统发育分析将这些基因分为四个亚家族(A、B、C和D),其中亚家族A和B各包含6个成员,亚家族C有4个成员,亚家族D有9个成员。每个亚家族基因成员之间潜在的功能差异为未来MAPK信号通路的研究提供了有价值的线索。通过qRT-PCR进一步分析发现,4个PpMAPK基因的表达与砂梨果实衰老呈正相关。此外,相互作用分析揭示了PpMAPK3-L和PpbZIP2之间存在显著相互作用,它们在衰老过程中通过共同影响协同调节砂梨果实的衰老特性。

结论

本研究结果表明,PpMAPK3-L、PpMAPK7-L、PpMAPK10-L和PpMAPK16-L可能在砂梨果实成熟和衰老中起关键作用。具体而言,PpMAPK3-L和PpbZIP2之间的相互作用可能在果实衰老调控中起关键作用,这表明MAPK信号通路可能通过与转录因子的相互作用调节果实的生理状态。这一发现为进一步研究MAPK基因在砂梨果实成熟和衰老中的功能提供了重要见解,并为研究延缓衰老和延长货架期的生物技术方法提供了新方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c13/12079992/b6b018efdf63/12864_2025_11672_Fig1_HTML.jpg

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