4.5 Article

C-repeat binding factor gene family identified in non-heading Chinese cabbage is functional in abiotic and biotic stress response but different from that in Arabidopsis

期刊

ACTA PHYSIOLOGIAE PLANTARUM
卷 36, 期 12, 页码 3217-3229

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s11738-014-1688-4

关键词

Non-heading Chinese cabbage; C-repeat binding factor; Cold; Abiotic stress; Biotic stress

资金

  1. National Natural Science Foundation of China [31330067]
  2. National High Technology Research and Development Program of China (863 Program) [2012AA100101]
  3. Specialized Research Fund for the Doctoral Program of Higher Education [20120097120032]

向作者/读者索取更多资源

C-repeat binding factor (CBF) signaling pathway is involved in cold acclimation responsive to low temperature and some other stresses. CBF transcription factor family is the key component of this pathway. In this study, eight CBF-like genes, BrCBF1, BrCBF2, BrCBF3, BrCBF4, BrCBF5, and BrCBF6A/B/C were isolated from non-heading Chinese cabbage (Brassica campestris ssp. chinensis L. Makino, NHCC). The deduced CBF proteins shared high similarity with their Arabidopsis orthologs and localized to the nucleus. Furthermore, quantitative real-time PCR (qPCR) analysis showed that BrCBF1 similar to 3 were induced by cold (4 A degrees C) but not drought or abscisic acid (ABA), indicating that they are involved in an ABA-independent pathway; however, BrCBF4 similar to 6 were regulated by both drought and ABA, suggesting that they were involved in an ABA-dependent pathway. Nevertheless, unlike Arabidopsis, BrCBF4 similar to 6 showed response to both cold and ABA, indicates ABA-independent and ABA-dependent parts of CBF pathway in NHCC might not be completely separate, and these genes may act as the connection points in the network. BrCBFs were also accumulated in response to salicylic acid (SA), methyljasmonate (MeJA), and ethylene (ET), indicating that BrCBF genes might participate in the response to biotic stresses. Taken together, eight CBF genes were isolated from NHCC which compose a functional CBF signaling pathway by participating in response to multiple stresses and performing roles from Arabidopsis to some extent.

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