4.7 Article

Insight into the CBL and CIPK gene families in pecan (Carya illinoinensis): identification, evolution and expression patterns in drought response

期刊

BMC PLANT BIOLOGY
卷 22, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12870-022-03601-0

关键词

Carya illinoinensis; CBL-CIPK; Drought; Evolution; Gene expression

资金

  1. National Key Research and Development Program of China [2018YFD1000604]
  2. Natural Science Foundation of Jiangsu Province [BK20190749]
  3. China Postdoctoral Science Foundation [2020 M681628]
  4. Postdoctoral Research Funding Program of Jiangsu Province [013010428]
  5. Startup Foundation of Nanjing Forestry University [163010226]

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This study identified and analyzed the CBL and CIPK genes in the pecan genome and revealed their potential roles in drought stress response. The analysis showed that the CBL and CIPK gene families in pecan underwent segmental duplication events and experienced strong negative selection. Tissue-specific expression profiles and coexpression network analysis provided insights into the functional diversity and potential candidates for drought response regulation.
Background Calcium (Ca2+) serves as a ubiquitous second messenger and plays a pivotal role in signal transduction. Calcineurin B-like proteins (CBLs) are plant-specific Ca2+ sensors that interact with CBL-interacting protein kinases (CIPKs) to transmit Ca2+ signals. CBL-CIPK complexes have been reported to play pivotal roles in plant development and response to drought stress; however, limited information is available about the CBL and CIPK genes in pecan, an important nut crop. Results In the present study, a total of 9 CBL and 30 CIPK genes were identified from the pecan genome and divided into four and five clades based on phylogeny, respectively. Gene structure and distribution of conserved sequence motif analysis suggested that family members in the same clade commonly exhibited similar exon-intron structures and motif compositions. The segmental duplication events contributed largely to the expansion of pecan CBL and CIPK gene families, and Ka/Ks values revealed that all of them experienced strong negative selection. Phylogenetic analysis of CIPK proteins from 14 plant species revealed that CIPKs in the intron-poor clade originated in seed plants. Tissue-specific expression profiles of CiCBLs and CiCIPKs were analysed, presenting functional diversity. Expression profiles derived from RNA-Seq revealed distinct expression patterns of CiCBLs and CiCIPKs under drought treatment in pecan. Moreover, coexpression network analysis helped to elucidate the relationships between these genes and identify potential candidates for the regulation of drought response, which were verified by qRT-PCR analysis. Conclusions The characterization and analysis of CBL and CIPK genes in pecan genome could provide a basis for further functional analysis of CiCBLs and CiCIPKs in the drought stress response of pecan.

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