Zhang Xiaoxiang, Liu Peng, Qing Chunyan, Yang Cong, Shen Yaou, Ma Langlang
Maize Research Institute, Sichuan Agricultural University, Chengdu, Wenjiang, China.
State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University, Chengdu, Wenjiang, China.
PeerJ. 2021 Mar 2;9:e10765. doi: 10.7717/peerj.10765. eCollection 2021.
Salt stress affects crop yield by limiting growth and delaying development. In this study, we constructed 16 transcriptome libraries from maize seedling roots using two maize lines, with contrasting salt tolerance, that were exposed to salt stress for 0, 6, 18 and 36 h. In total, 6,584 differential expression genes (DEGs; 3,669 upregulated, 2,915 downregulated) were induced in the salt-sensitive line and 6,419 DEGs (3,876 upregulated, 2,543 downregulated) were induced in the salt-tolerant line. Several DEGs common to both lines were enriched in the ABA signaling pathway, which was presumed to coordinate the process of maize salt response. A total of 459 DEGs were specifically induced in the salt-tolerant line and represented candidate genes responsible for high salt-tolerance. Expression pattern analysis for these DEGs indicated that the period between 0 and 6 h was a crucial period for the rapid response of the tolerant genes under salt stress. Among these DEGs, several genes, Aux/IAA, SAUR, and CBL-interacting kinase have been reported to regulate salt tolerance. In addition, the transcription factors WRKY, bZIP and MYB acted as regulators in the salt-responsive regulatory network of maize roots. Our findings will contribute to understanding of the mechanism on salt response and provide references for functional gene revelation in plants.
盐胁迫通过限制生长和延缓发育来影响作物产量。在本研究中,我们使用两个耐盐性相反的玉米品系,在0、6、18和36小时盐胁迫处理下,构建了16个玉米幼苗根系转录组文库。盐敏感品系共诱导出6584个差异表达基因(DEGs;3669个上调,2915个下调),耐盐品系共诱导出6419个DEGs(3876个上调,2543个下调)。两个品系共有的几个DEGs在ABA信号通路中富集,推测该通路协调玉米的盐响应过程。耐盐品系中特异性诱导出459个DEGs,代表了负责高耐盐性的候选基因。对这些DEGs的表达模式分析表明,0至6小时是耐盐基因在盐胁迫下快速响应的关键时期。在这些DEGs中,已有报道称几个基因,Aux/IAA、SAUR和CBL互作激酶可调节耐盐性。此外,转录因子WRKY、bZIP和MYB在玉米根的盐响应调控网络中起调节作用。我们的研究结果将有助于理解盐响应机制,并为揭示植物功能基因提供参考。