Genome-Wide Identification Analysis of the MAPKKK Gene Family in Cotton and Its Role in Development and Stress Response
Yahui Deng, Nan Zhao, Shuo Ning, Yifan Wang, Weiran Wang, Meng Wang, Zixin Zhou, Yaohua Li, Caixia Li, Lingfang Ran, Jiahui Zhu, Zhiqing Liu, Jing Yang, Alifu Aierxi, Jie Kong, Aixing Gu, Jianping Li

TL;DR
This study explores the role of MAPKKK genes in cotton, focusing on their function in development and resistance to plant diseases.
Contribution
The paper provides the first comprehensive analysis of the MEKK subfamily of MAPKKK genes in cotton and their role in stress responses.
Findings
Genome-wide analysis identified 660 MAPKKK genes in four cotton species, categorized into three subfamilies.
WGD events were found to be the main driver of MAPKKK gene expansion in cotton.
Expression profiling revealed distinct roles of MAPKKK genes in stress adaptation and immune homeostasis.
Abstract
Mitogen-activated protein kinase kinase kinases (MAPKKKs) are pivotal upstream regulators of MAPK cascades, integrating signals that coordinate plant development and stress responses. However, the specific functions of MAPKKKs, particularly within the MEKK subfamily, in mediating cotton resistance to Verticillium wilt and Fusarium wilt remain poorly characterized. To address this, we conducted a systematic, cross-species analysis of the MAPKKK family in four key cotton species: Gossypium arboreum, Gossypium barbadense, Gossypium hirsutum, and Gossypium raimondii. Genome-wide identification and phylogenetic analysis revealed 660 MAPKKK genes, classifying them into the MEKK, Raf, and ZIK subfamilies. Evolutionary analysis indicated that Whole-Genome Duplication (WGD) events were the primary driver of family expansion. Promoter cis-element and Gene Ontology (GO) enrichment analyses…
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Taxonomy
TopicsPlant-Microbe Interactions and Immunity · Research in Cotton Cultivation · Plant Gene Expression Analysis
