4.7 Article

Global Transcriptome Analysis Reveals Acclimation-Primed Processes Involved in the Acquisition of Desiccation Tolerance in Boea hygrometrica

期刊

PLANT AND CELL PHYSIOLOGY
卷 56, 期 7, 页码 1429-1441

出版社

OXFORD UNIV PRESS
DOI: 10.1093/pcp/pcv059

关键词

Acclimation; Autophagy; Boea hygrometrica; Desiccation tolerance; Gene expression; alpha-Tocopherol

资金

  1. National High Technology Research and Development Program of China [863 Program] [2007AA021403]
  2. National Basic Research Program of China [973 Program] [2012CB114302]
  3. National Natural Science Foundation of China [31270312, 31300230, 31100195]

向作者/读者索取更多资源

Boea hygrometrica resurrection plants require a period of acclimation by slow soil-drying in order to survive a subsequent period of rapid desiccation. The molecular basis of this observation was investigated by comparing gene expression profiles under different degrees of water deprivation. Transcripts were clustered according to the expression profiles in plants that were air-dried (rapid desiccation), soil-dried (gradual desiccation), rehydrated (acclimated) and air-dried after acclimation. Although phenotypically indistinguishable, it was shown by principal component analysis that the gene expression profiles in rehydrated, acclimated plants resemble those of desiccated plants more closely than those of hydrated acclimated plants. Enrichment analysis based on gene ontology was performed to deconvolute the processes that accompanied desiccation tolerance. Transcripts associated with autophagy and alpha-tocopherol accumulation were found to be activated in both air-dried, acclimated plants and soil-dried non-acclimated plants. Furthermore, transcripts associated with biosynthesis of ascorbic acid, cell wall catabolism, chaperone-assisted protein folding, respiration and macromolecule catabolism were activated and maintained during soil-drying and rehydration. Based on these findings, we hypothesize that activation of these processes leads to the establishment of an optimal physiological and cellular state that enables tolerance during rapid air-drying. Our study provides a novel insight into the transcriptional regulation of critical priming responses to enable survival following rapid dehydration in B. hygrometrica.

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