干燥耐受性
干燥
生物
耐旱性
植物
基因组
营养繁殖
顽性种子
转录组
基因
遗传学
基因表达
作者
Maria-Cecília D. Costa,Mariana A S Artur,Júlio Maia,Eef M. Jonkheer,Martijn F. L. Derks,Harm Nijveen,Brett Williams,Sagadevan Mundree,José M. Jiménez‐Gómez,Thamara Hesselink,Elio Schijlen,Wilco Ligterink,Melvin J. Oliver,Jill M. Farrant,Henk W. M. Hilhorst
出处
期刊:Nature plants
[Nature Portfolio]
日期:2017-03-27
卷期号:3 (4)
被引量:129
标识
DOI:10.1038/nplants.2017.38
摘要
Desiccation tolerance is common in seeds and various other organisms, but only a few angiosperm species possess vegetative desiccation tolerance. These 'resurrection species' may serve as ideal models for the ultimate design of crops with enhanced drought tolerance. To understand the molecular and genetic mechanisms enabling vegetative desiccation tolerance, we produced a high-quality whole-genome sequence for the resurrection plant Xerophyta viscosa and assessed transcriptome changes during its dehydration. Data revealed induction of transcripts typically associated with desiccation tolerance in seeds and involvement of orthologues of ABI3 and ABI5, both key regulators of seed maturation. Dehydration resulted in both increased, but predominantly reduced, transcript abundance of genomic 'clusters of desiccation-associated genes' (CoDAGs), reflecting the cessation of growth that allows for the expression of desiccation tolerance. Vegetative desiccation tolerance in X. viscosa was found to be uncoupled from drought-induced senescence. We provide strong support for the hypothesis that vegetative desiccation tolerance arose by redirection of genetic information from desiccation-tolerant seeds.
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