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大豆丝氨酸/苏氨酸蛋白激酶基因家族的全基因组鉴定和非生物胁迫响应分析

Genome-wide identification and analysis of abiotic stress responsiveness of the mitogen-activated protein kinase gene family in Medicago sativa L.

机构信息

Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.

College of Grassland Science, Qingdao Agricultural University, Qingdao, 266109, China.

出版信息

BMC Plant Biol. 2024 Aug 24;24(1):800. doi: 10.1186/s12870-024-05524-4.

Abstract

BACKGROUND

The mitogen-activated protein kinase (MAPK) cascade is crucial cell signal transduction mechanism that plays an important role in plant growth and development, metabolism, and stress responses. The MAPK cascade includes three protein kinases, MAPK, MAPKK, and MAPKKK. The three protein kinases mediate signaling to downstream response molecules by sequential phosphorylation. The MAPK gene family has been identified and analyzed in many plants, however it has not been investigated in alfalfa.

RESULTS

In this study, Medicago sativa MAPK genes (referred to as MsMAPKs) were identified in the tetraploid alfalfa genome. Eighty MsMAPKs were divided into four groups, with eight in group A, 21 in group B, 21 in group C and 30 in group D. Analysis of the basic structures of the MsMAPKs revealed presence of a conserved TXY motif. Groups A, B and C contained a TEY motif, while group D contained a TDY motif. RNA-seq analysis revealed tissue-specificity of two MsMAPKs and tissue-wide expression of 35 MsMAPKs. Further analysis identified MsMAPK members responsive to drought, salt, and cold stress conditions. Two MsMAPKs (MsMAPK70 and MsMAPK75) responds to salt and cold stresses; two MsMAPKs (MsMAPK60 and MsMAPK73) responds to cold and drought stresses; four MsMAPKs (MsMAPK1, MsMAPK33, MsMAPK64 and MsMAPK71) responds to salt and drought stresses; and two MsMAPKs (MsMAPK5 and MsMAPK7) responded to all three stresses.

CONCLUSION

This study comprehensively identified and analysed the alfalfa MAPK gene family. Candidate genes related to abiotic stresses were screened by analysing the RNA-seq data. The results provide key information for further analysis of alfalfa MAPK gene functions and improvement of stress tolerance.

摘要

背景

丝裂原活化蛋白激酶(MAPK)级联反应是至关重要的细胞信号转导机制,在植物生长发育、代谢和应激反应中发挥重要作用。MAPK 级联反应包括三种蛋白激酶,MAPK、MAPKK 和 MAPKKK。这三种蛋白激酶通过顺序磷酸化将信号传递给下游反应分子。MAPK 基因家族已在许多植物中被鉴定和分析,但在紫花苜蓿中尚未进行研究。

结果

本研究在四倍体紫花苜蓿基因组中鉴定了紫花苜蓿 MAPK 基因(称为 MsMAPKs)。八十个 MsMAPKs 分为四个组,A 组有 8 个,B 组有 21 个,C 组有 21 个,D 组有 30 个。对 MsMAPKs 的基本结构分析表明存在一个保守的 TXY 基序。A、B 和 C 组含有 TEY 基序,而 D 组含有 TDY 基序。RNA-seq 分析显示两个 MsMAPKs 具有组织特异性,35 个 MsMAPKs 具有组织广泛性表达。进一步分析鉴定出对干旱、盐和冷胁迫条件有反应的 MsMAPK 成员。两个 MsMAPKs(MsMAPK70 和 MsMAPK75)对盐和冷胁迫有反应;两个 MsMAPKs(MsMAPK60 和 MsMAPK73)对冷和干旱胁迫有反应;四个 MsMAPKs(MsMAPK1、MsMAPK33、MsMAPK64 和 MsMAPK71)对盐和干旱胁迫有反应;两个 MsMAPKs(MsMAPK5 和 MsMAPK7)对所有三种胁迫均有反应。

结论

本研究全面鉴定和分析了紫花苜蓿 MAPK 基因家族。通过分析 RNA-seq 数据筛选与非生物胁迫相关的候选基因。研究结果为进一步分析紫花苜蓿 MAPK 基因功能和提高胁迫耐受性提供了关键信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5a2/11344418/ed775538da5b/12870_2024_5524_Fig1_HTML.jpg

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