| Literature DB >> 21258002 |
Zhaoliang Zhang1, Shupei Zhang, Ya Zhang, Xin Wang, Dan Li, Qiuling Li, Minghui Yue, Qun Li, Yu-e Zhang, Yunyuan Xu, Yongbiao Xue, Kang Chong, Shilai Bao.
Abstract
Plants adapt their growth and development in response to perceived salt stress. Although DELLA-dependent growth restraint is thought to be an integration of the plant's response to salt stress, little is known about how histone modification confers salt stress and, in turn, affects development. Here, we report that floral initiator Shk1 kinase binding protein1 (SKB1) and histone4 arginine3 (H4R3) symmetric dimethylation (H4R3sme2) integrate responses to plant developmental progress and salt stress. Mutation of SKB1 results in salt hypersensitivity, late flowering, and growth retardation. SKB1 associates with chromatin and thereby increases the H4R3sme2 level to suppress the transcription of FLOWERING LOCUS C (FLC) and a number of stress-responsive genes. During salt stress, the H4R3sme2 level is reduced, as a consequence of SKB1 disassociating from chromatin to induce the expression of FLC and the stress-responsive genes but increasing the methylation of small nuclear ribonucleoprotein Sm-like4 (LSM4). Splicing defects are observed in the skb1 and lsm4 mutants, which are sensitive to salt. We propose that SKB1 mediates plant development and the salt response by altering the methylation status of H4R3sme2 and LSM4 and linking transcription to pre-mRNA splicing.Entities:
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Year: 2011 PMID: 21258002 PMCID: PMC3051234 DOI: 10.1105/tpc.110.081356
Source DB: PubMed Journal: Plant Cell ISSN: 1040-4651 Impact factor: 11.277