Overexpression of Brassica Rapa SHI-RELATED SEQUENCE Genes Suppresses Growth and Development in Arabidopsis Thaliana
Overview
Biotechnology
Affiliations
S HI-R ELATED SEQUENCE (SRS) genes are plant-specific transcription factors containing a zinc-binding RING finger motif, which play a critical role in plant growth and development. We have characterized six SRS genes in Brassica rapa. Overexpression of the SRSs BrSTY1, BrSRS7, and BrLRP1 induced dwarf and compact plants, and significantly decreased primary root elongation and lateral root formation. Additionally, the transgenic plants had upward-curled leaves of narrow widths and with short petioles, and had shorter siliques and low fertility. In stems, hypocotyls, and styles, epidermal cell lengths were also significantly reduced in transgenic plants. RT-PCR analysis of transgenic plants revealed that BrSTY1, BrSRS7, and BrLRP1 regulate expression of several gibberellin (GA)- and auxin-related genes involved in morphogenesis in shoot apical regions. We conclude that BrSTY1, BrSRS7, and BrLRP1 regulate plant growth and development by regulating expression of GA- and auxin-related genes.
Zhao Y, Li G, Zhu Z, Hu M, Jiang D, Chen M Hortic Res. 2025; 12(2):uhae299.
PMID: 39949876 PMC: 11822411. DOI: 10.1093/hr/uhae299.
Ma B, Nian L, Ain N, Liu X, Yang Y, Zhu X Plants (Basel). 2022; 11(22).
PMID: 36432830 PMC: 9693462. DOI: 10.3390/plants11223101.
An H, Zhang J, Xu F, Jiang S, Zhang X BMC Plant Biol. 2020; 20(1):182.
PMID: 32334538 PMC: 7183619. DOI: 10.1186/s12870-020-02398-0.
Gene coexpression network analysis reveals the role of genes in senescence leaf of maize ( L.).
He B, Shi P, Lv Y, Gao Z, Chen G J Genet. 2020; 99.
PMID: 32089522
Xu W, Zheng B, Bai Q, Wu L, Liu Y, Wu G PLoS One. 2019; 14(7):e0220038.
PMID: 31344072 PMC: 6658078. DOI: 10.1371/journal.pone.0220038.