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Interaction network of core ABA signaling components in maize.

Authors :
Wang, Ying-Ge
Fu, Feng-Ling
Yu, Hao-Qiang
Hu, Tao
Zhang, Yuan-Yuan
Tao, Yi
Zhu, Jian-Kang
Zhao, Yang
Li, Wan-Chen
Source :
Plant Molecular Biology; Feb2018, Vol. 96 Issue 3, p245-263, 19p
Publication Year :
2018

Abstract

Key message: <bold>We defined a comprehensive core ABA signaling network in monocot maize, including the gene expression, subcellular localization and interaction network of ZmPYLs, ZmPP2Cs, ZmSnRK2s and the putative substrates.</bold>Abstract: The phytohormone abscisic acid (ABA) plays an important role in plant developmental processes and abiotic stress responses. In Arabidopsis, ABA is sensed by the PYL ABA receptors, which leads to binding of the PP2C protein phosphatase and activation of the SnRK2 protein kinases. These components functioning diversely and redundantly in ABA signaling are little known in maize. Using Arabidopsis <italic>pyl112458</italic> and <italic>snrk2.2</italic>/<italic>3</italic>/<italic>6</italic> mutants, we identified several ABA-responsive ZmPYLs and ZmSnRK2s, and also ZmPP2Cs. We showed the gene expression, subcellular localization and interaction network of ZmPYLs, ZmPP2Cs, and ZmSnRK2s, and the isolation of putative ZmSnRK2 substrates by mass spectrometry in monocot maize. We found that the ABA dependency of PYL-PP2C interactions is contingent on the identity of the PP2Cs. Among 238 candidate substrates for ABA-activated protein kinases, 69 are putative ZmSnRK2 substrates. Besides homologs of previously reported putative AtSnRK2 substrates, 23 phosphoproteins have not been discovered in the dicot Arabidopsis. Thus, we have defined a comprehensive core ABA signaling network in monocot maize and shed new light on ABA signaling. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01674412
Volume :
96
Issue :
3
Database :
Complementary Index
Journal :
Plant Molecular Biology
Publication Type :
Academic Journal
Accession number :
128110037
Full Text :
https://doi.org/10.1007/s11103-017-0692-7