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Overexpression of the CsFUS3 gene encoding a B3 transcription factor promotes somatic embryogenesis in Citrus.

Authors :
Liu, Zheng
Ge, Xiao-Xia
Qiu, Wen-Ming
Long, Jian-Mei
Jia, Hui-Hui
Yang, Wei
Dutt, Manjul
Wu, Xiao-Meng
Guo, Wen-Wu
Source :
Plant Science. Dec2018, Vol. 277, p121-131. 11p.
Publication Year :
2018

Abstract

Highlights • The expression of CsFUS 3 is positively related with the capacity of citrus callus for somatic embryogenesis (SE). • Overexpression of CsFUS 3 promotes SE and restores normal late embryogenesis in fus 3. • Overexpression of CsFUS 3 has effects on the expression of SE-related transcription factors and hormone pathways, especially the ABA and GA pathways. Abstract In citrus, genetic improvement via biotechnology is challenging due to insufficient understanding of molecular barriers that prevent regeneration by somatic embryogenesis (SE). Our previous study indicated that LEC genes were involved in SE in citrus, but their regulatory roles remain to be elucidated. Here, we cloned one of the LEC genes, CsFUS3 , and show that it is preferentially expressed during SE and in the embryogenic callus (EC) derived from citrus varieties with strong embryogenic competence. The overexpression of CsFUS3 in recalcitrant citrus callus restored embryogenic competence. Complementation of the loss-of-function Arabidopsis fus3 mutant with the CsFUS3 gene restored normal late embryogenesis, which is consistent with the CsFUS3 and AtFUS3 proteins contributing to the same regulatory network in Arabidopsis. Transcriptome profiling revealed that the expression of particular TFs that promote SE was up-regulated in the citrus overexpression (OE) line. The 104 differentially expressed genes associated with hormone biosynthesis, catabolism, and signaling are particularly noteworthy. The dynamic change in the ratio of ABA to GA during SE in wild-type callus mirrored the expression pattern of CsFUS3. In contrast, in the OE line, the ratio of ABA to GA was higher and the capacity for SE was greater when the OE line was separately treated with ABA and GA biosynthesis inhibitors. Taken together, our results demonstrate that the overexpression of CsFUS3 appears to establish a cellular environment favorable to SE, at least in part by promoting a high ABA to GA ratio and by regulating the expression of TFs that promote SE. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01689452
Volume :
277
Database :
Academic Search Index
Journal :
Plant Science
Publication Type :
Academic Journal
Accession number :
133092722
Full Text :
https://doi.org/10.1016/j.plantsci.2018.10.015