4.6 Article

The Grapevine Uncharacterized Intrinsic Protein 1 (VvXIP1) Is Regulated by Drought Stress and Transports Glycerol, Hydrogen Peroxide, Heavy Metals but Not Water

期刊

PLOS ONE
卷 11, 期 8, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0160976

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资金

  1. European Union Funds (FEDER/COMPETE Operational Competitiveness Programme)
  2. Portuguese national Funds (FCT-Portuguese Foundation for Science and Technology) [KBBE-2012-6-3117 Inovinne, FCOMP-01-0124-FEDER-022692, PTDC/AGR-ALI/100636/2008]
  3. FCT [SFRH/BD/74257/2010, SFRH/BD/65046/2009]
  4. Interuniversity Attraction Poles Programme-Belgian Science Policy [IAP7/29]
  5. Belgian French community [ARC11/16-036]
  6. Fundação para a Ciência e a Tecnologia [PTDC/AGR-ALI/100636/2008, SFRH/BD/65046/2009] Funding Source: FCT

向作者/读者索取更多资源

A MIP (Major Intrinsic Protein) subfamily called Uncharacterized Intrinsic Proteins (XIP) was recently described in several fungi and eudicot plants. In this work, we cloned a XIP from grapevine, VvXIP1, and agrobacterium-mediated transformation studies in Nicotiana benthamiana revealed that the encoded aquaporin shows a preferential localization at the endoplasmic reticulum membrane. Stopped-flow spectrometry in vesicles from the aqy-null yeast strain YSH1172 overexpressing VvXIP1 showed that VvXIP1 is unable to transport water but is permeable to glycerol. Functional studies with the ROS sensitive probe CM-H(2)DCFDA in intact transformed yeasts showed that VvXIP1 is also able to permeate hydrogen peroxide (H2O2). Drop test growth assays showed that besides glycerol and H2O2, VvXIP1 also transports boric acid, copper, arsenic and nickel. Furthermore, we found that VvXIP1 transcripts were abundant in grapevine leaves from field grown plants and strongly repressed after the imposition of severe water-deficit conditions in potted vines. The observed downregulation of VvXIP1 expression in cultured grape cells in response to ABA and salt, together with the increased sensitivity to osmotic stress displayed by the aqy-null yeast overexpressing VvXIP1, corroborates the role of VvXIP1 in osmotic regulation besides its involvement in H2O2 transport and metal homeostasis.

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