Identification of a novel gene, Bryophyte Co-retained Gene 1, that has a positive role in desiccation tolerance in the moss Physcomitrium patens

苔藓 干燥 生物 干燥耐受性 鉴定(生物学) 植物 基因 遗传学
作者
Zexi Chen,Ping Li,Jianfang He,Wenbo Wang,Xiaojun Pu,Silin Chen,Bei Gao,Xuewen Wang,Rui‐Liang Zhu,Wenya Yuan,Li Liu
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:75 (20): 6609-6624 被引量:1
标识
DOI:10.1093/jxb/erae332
摘要

The moss Physcomitrium patens is a model system for the evolutionary study of land plants, and as such, it may contain as yet unannotated genes with functions related to the adaptation to water deficiency that was required during the water-to-land transition. In this study, we identified a novel gene, Bryophyte Co-retained Gene 1 (BCG1), in P. patens that is responsive to dehydration and rehydration. Under de- and rehydration treatments, BCG1 was significantly co-expressed with DHNA, which encodes a dehydrin (DHN). Examination of previous microarray data revealed that BCG1 is highly expressed in spores, archegonia (female reproductive organ), and mature sporophytes. In addition, the bcg1 mutant showed reduced dehydration tolerance, and this was accompanied by a relatively low level of chlorophyll content during recovery. Comprehensive transcriptomics uncovered a detailed set of regulatory processes that were affected by the disruption to BCG1. Experimental evidence showed that BCG1 might function in antioxidant activity, the abscisic acid pathway, and in intracellular Ca2+ homeostasis to resist desiccation. Overall, our results provide insights into the role of a bryophyte co-retained gene in desiccation tolerance.
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