4.7 Article

Genome-wide investigation of calcium-dependent protein kinase gene family in pineapple: evolution and expression profiles during development and stress

期刊

BMC GENOMICS
卷 21, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12864-020-6501-8

关键词

Pineapple; CPK; Genome-wide; Expression pattern; Stress

资金

  1. National Natural Science Foundation of China [U1605212, 31761130074, 31700279, 31970333]
  2. Guangxi Distinguished Experts Fellowship [NA160391]
  3. Newton Advanced Fellowship [NA160391]
  4. Science and Technology Major Project of Guangxi-Research and application of ecological and high efficient cultivation techniques for dominant and characteristic fruits [AA17204097-6]
  5. Project of Guangxi featured fruit innovation team on pineapple breeding and cultivation post under national modern agricultural industry technology system [nycytxgxcxtd-17-05]

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Background Calcium-dependent protein kinase (CPK) is one of the main Ca2+ combined protein kinase that play significant roles in plant growth, development and response to multiple stresses. Despite an important member of the stress responsive gene family, little is known about the evolutionary history and expression patterns of CPK genes in pineapple. Results Herein, we identified and characterized 17 AcoCPK genes from pineapple genome, which were unevenly distributed across eight chromosomes. Based on the gene structure and phylogenetic tree analyses, AcoCPKs were divided into four groups with conserved domain. Synteny analysis identified 7 segmental duplication events of AcoCPKs and 5 syntenic blocks of CPK genes between pineapple and Arabidopsis, and 8 between pineapple and rice. Expression pattern of different tissues and development stages suggested that several genes are involved in the functional development of plants. Different expression levels under various abiotic stresses also indicated that the CPK family underwent functional divergence during long-term evolution. AcoCPK1, AcoCPK3 and AcoCPK6, which were repressed by the abiotic stresses, were shown to be function in regulating pathogen resistance. Conclusions 17 AcoCPK genes from pineapple genome were identified. Our analyses provide an important foundation for understanding the potential roles of AcoCPKs in regulating pineapple response to biotic and abiotic stresses

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