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短跗猥 positively regulates salt-stress tolerance in.

BREVIPEDICELLUS Positively Regulates Salt-Stress Tolerance in .

机构信息

State Key Laboratory of Crop Biology, College of Life Sciences, Shandong Agricultural University, Tai'an 271018, China.

Shandong Peanut Research Institute, Shandong Academy of Agricultural Sciences, Qingdao 266034, China.

出版信息

Int J Mol Sci. 2023 Jan 5;24(2):1054. doi: 10.3390/ijms24021054.

Abstract

Salt stress is one of the major environmental threats to plant growth and development. However, the mechanisms of plants responding to salt stress are not fully understood. Through genetic screening, we identified and characterized a salt-sensitive mutant, ses5 (sensitive to salt 5), in Arabidopsis thaliana. Positional cloning revealed that the decreased salt-tolerance of ses5 was caused by a mutation in the transcription factor BP (BREVIPEDICELLUS). BP regulates various developmental processes in plants. However, the biological function of BP in abiotic stress-signaling and tolerance are still not clear. Compared with wild-type plants, the bp mutant exhibited a much shorter primary-root and lower survival rate under salt treatment, while the BP overexpressors were more tolerant. Further analysis showed that BP could directly bind to the promoter of XTH7 (xyloglucan endotransglucosylase/hydrolase 7) and activate its expression. Resembling the bp mutant, the disruption of XTH7 gave rise to salt sensitivity. These results uncovered novel roles of BP in positively modulating salt-stress tolerance, and illustrated a putative working mechanism.

摘要

盐胁迫是影响植物生长和发育的主要环境胁迫之一。然而,植物响应盐胁迫的机制尚不完全清楚。通过遗传筛选,我们在拟南芥中鉴定并表征了一个盐敏感突变体 ses5(对盐 5 敏感)。定位克隆表明,ses5 的耐盐性降低是由于转录因子 BP(BREVIPEDICELLUS)的突变引起的。BP 调节植物的各种发育过程。然而,BP 在非生物胁迫信号转导和耐受中的生物学功能尚不清楚。与野生型植物相比,bp 突变体在盐处理下表现出较短的主根和较低的存活率,而 BP 过表达植株则更耐受。进一步分析表明,BP 可以直接结合 XTH7(木葡聚糖内转葡聚糖酶/水解酶 7)启动子并激活其表达。与 bp 突变体相似,XTH7 的破坏导致盐敏感性。这些结果揭示了 BP 在正向调节盐胁迫耐受中的新作用,并阐明了一个推测的工作机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e688/9866879/0639545f3da0/ijms-24-01054-g001.jpg

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