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Retracted : Cytosolic glyceraldehyde‐3‐phosphate dehydrogenase 2/5/6 increase drought tolerance via stomatal movement and reactive oxygen species scavenging in wheat
Drought is a major threat to wheat growth and crop productivity. However, there has been only limited success in developing drought‐hardy cultivars. This lack of progress is due, at least in part, to a lack of understanding of the molecular mechanisms of drought tolerance in wheat. Here, we evaluate...
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Published in: | Plant, cell and environment cell and environment, 2020-04, Vol.43 (4), p.836-853 |
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creator | Zhang, Lin Lei, Daili Deng, Xia Li, Fangfang Ji, Haikun Yang, Shushen |
description | Drought is a major threat to wheat growth and crop productivity. However, there has been only limited success in developing drought‐hardy cultivars. This lack of progress is due, at least in part, to a lack of understanding of the molecular mechanisms of drought tolerance in wheat. Here, we evaluated the potential role of three cytosolic glyceraldehyde‐3‐phosphate dehydrogenases (TaGAPC2/5/6) under drought stress in wheat and Arabidopsis. We found that TaGAPC2/5/6 all positively responded to drought stress via reactive oxygen species (ROS) scavenging and stomatal movement. The results of yeast co‐transformation and electrophoretic mobility shift assay showed that TaWRKY33 acted as a direct regulator of TaGAPC2/5/6 genes. The dual luciferase reporter assay indicated that TaWRKY33 positively activated the expression of TaGAPC2/5/6 . The results of bimolecular fluorescence complementation and yeast two‐hybrid system demonstrated that TaGAPC2/5/6 interacted with phospholipase Dδ (PLDδ). We then demonstrated that TaGAPC2/5/6 positively promoted the activity of TaPLDδ in vitro and in vivo. Furthermore, lower PLDδ activity in RNAi wheat could lead to less PA accumulation, causing higher stomatal aperture sizes under drought stress. In summary, our results establish a new positive regulatory mechanism of TaGAPCs which helps wheat fine‐tune their drought responses.
Under drought stress, induced TaWRKY33 binds to the W‐box of TaGAPC2/5/6 promoters to improve the transcription. TaGAPC2/5/6 interact directly with TaPLDδ to mediate stomatal movement. In addition, TaGAPC2/5/6 could positively regulate the activity of enzymes involved in ROS scavenging to enhance resistance to drought stress. |
doi_str_mv | 10.1111/pce.13710 |
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Under drought stress, induced TaWRKY33 binds to the W‐box of TaGAPC2/5/6 promoters to improve the transcription. TaGAPC2/5/6 interact directly with TaPLDδ to mediate stomatal movement. In addition, TaGAPC2/5/6 could positively regulate the activity of enzymes involved in ROS scavenging to enhance resistance to drought stress.</description><identifier>ISSN: 0140-7791</identifier><identifier>EISSN: 1365-3040</identifier><identifier>DOI: 10.1111/pce.13710</identifier><language>eng</language><publisher>Oxford: Wiley Subscription Services, Inc</publisher><subject>Apertures ; Cereal crops ; Complementation ; Crop production ; Cultivars ; Drought resistance ; Electrophoretic mobility ; Fluorescence ; Genetic transformation ; Glyceraldehyde ; Hybrid systems ; Molecular modelling ; Phospholipase ; Reactive oxygen species ; Regulatory mechanisms (biology) ; RNA-mediated interference ; Scavenging ; Stomata ; Wheat ; Yeast ; Yeasts</subject><ispartof>Plant, cell and environment, 2020-04, Vol.43 (4), p.836-853</ispartof><rights>2020 John Wiley & Sons, Ltd.</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c1020-b857d9b9f6bc9bc6c7f43eee8560dba3f2cbb61d111f964c42c7a8e32d5c4cb23</citedby><cites>FETCH-LOGICAL-c1020-b857d9b9f6bc9bc6c7f43eee8560dba3f2cbb61d111f964c42c7a8e32d5c4cb23</cites><orcidid>0000-0003-1350-2598</orcidid></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,27924,27925</link.rule.ids></links><search><creatorcontrib>Zhang, Lin</creatorcontrib><creatorcontrib>Lei, Daili</creatorcontrib><creatorcontrib>Deng, Xia</creatorcontrib><creatorcontrib>Li, Fangfang</creatorcontrib><creatorcontrib>Ji, Haikun</creatorcontrib><creatorcontrib>Yang, Shushen</creatorcontrib><title>Retracted : Cytosolic glyceraldehyde‐3‐phosphate dehydrogenase 2/5/6 increase drought tolerance via stomatal movement and reactive oxygen species scavenging in wheat</title><title>Plant, cell and environment</title><description>Drought is a major threat to wheat growth and crop productivity. However, there has been only limited success in developing drought‐hardy cultivars. This lack of progress is due, at least in part, to a lack of understanding of the molecular mechanisms of drought tolerance in wheat. Here, we evaluated the potential role of three cytosolic glyceraldehyde‐3‐phosphate dehydrogenases (TaGAPC2/5/6) under drought stress in wheat and Arabidopsis. We found that TaGAPC2/5/6 all positively responded to drought stress via reactive oxygen species (ROS) scavenging and stomatal movement. The results of yeast co‐transformation and electrophoretic mobility shift assay showed that TaWRKY33 acted as a direct regulator of TaGAPC2/5/6 genes. The dual luciferase reporter assay indicated that TaWRKY33 positively activated the expression of TaGAPC2/5/6 . The results of bimolecular fluorescence complementation and yeast two‐hybrid system demonstrated that TaGAPC2/5/6 interacted with phospholipase Dδ (PLDδ). We then demonstrated that TaGAPC2/5/6 positively promoted the activity of TaPLDδ in vitro and in vivo. Furthermore, lower PLDδ activity in RNAi wheat could lead to less PA accumulation, causing higher stomatal aperture sizes under drought stress. In summary, our results establish a new positive regulatory mechanism of TaGAPCs which helps wheat fine‐tune their drought responses.
Under drought stress, induced TaWRKY33 binds to the W‐box of TaGAPC2/5/6 promoters to improve the transcription. TaGAPC2/5/6 interact directly with TaPLDδ to mediate stomatal movement. In addition, TaGAPC2/5/6 could positively regulate the activity of enzymes involved in ROS scavenging to enhance resistance to drought stress.</description><subject>Apertures</subject><subject>Cereal crops</subject><subject>Complementation</subject><subject>Crop production</subject><subject>Cultivars</subject><subject>Drought resistance</subject><subject>Electrophoretic mobility</subject><subject>Fluorescence</subject><subject>Genetic transformation</subject><subject>Glyceraldehyde</subject><subject>Hybrid systems</subject><subject>Molecular modelling</subject><subject>Phospholipase</subject><subject>Reactive oxygen species</subject><subject>Regulatory mechanisms (biology)</subject><subject>RNA-mediated interference</subject><subject>Scavenging</subject><subject>Stomata</subject><subject>Wheat</subject><subject>Yeast</subject><subject>Yeasts</subject><issn>0140-7791</issn><issn>1365-3040</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2020</creationdate><recordtype>article</recordtype><recordid>eNotkUtKxEAQhhtRcBxdeIMGVy4y053O050MvmBAEF2HTqXyGJJ07O6JZucRvIbX8iT2zFhQFPX6Cuon5JKzBXe2HAAXXMScHZEZF1HoCRawYzJjPGBeHKf8lJwZs2HMFeJ0Rn5e0GoJFgt6Q1eTVUa1DdCqnQC1bAuspwJ_v76F86FWZqilRbova1VhLw1SfxkuI9r0oHGXusa2qi21qnWIHpCOjaTGqk5a2dJOjdhhb6nsC-o2wDYjUvU5ORo1A0KDhhqQI_ZV01eOSz9qlPacnJSyNXjxH-fk7f7udfXorZ8fnla3aw8485mXJ2FcpHlaRjmkOUQQl4FAxCSMWJFLUfqQ5xEv3LPKNAog8CGWCQq_CCGA3BdzcnXgDlq9b9HYbKO2uncnM18kInCckLmp68MUaGWMxjIbdNNJPWWcZTslMqdEtldC_AGlgYHv</recordid><startdate>202004</startdate><enddate>202004</enddate><creator>Zhang, Lin</creator><creator>Lei, Daili</creator><creator>Deng, Xia</creator><creator>Li, Fangfang</creator><creator>Ji, Haikun</creator><creator>Yang, Shushen</creator><general>Wiley Subscription Services, Inc</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7QP</scope><scope>7ST</scope><scope>C1K</scope><scope>SOI</scope><orcidid>https://orcid.org/0000-0003-1350-2598</orcidid></search><sort><creationdate>202004</creationdate><title>Retracted : Cytosolic glyceraldehyde‐3‐phosphate dehydrogenase 2/5/6 increase drought tolerance via stomatal movement and reactive oxygen species scavenging in wheat</title><author>Zhang, Lin ; Lei, Daili ; Deng, Xia ; Li, Fangfang ; Ji, Haikun ; Yang, Shushen</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c1020-b857d9b9f6bc9bc6c7f43eee8560dba3f2cbb61d111f964c42c7a8e32d5c4cb23</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2020</creationdate><topic>Apertures</topic><topic>Cereal crops</topic><topic>Complementation</topic><topic>Crop production</topic><topic>Cultivars</topic><topic>Drought resistance</topic><topic>Electrophoretic mobility</topic><topic>Fluorescence</topic><topic>Genetic transformation</topic><topic>Glyceraldehyde</topic><topic>Hybrid systems</topic><topic>Molecular modelling</topic><topic>Phospholipase</topic><topic>Reactive oxygen species</topic><topic>Regulatory mechanisms (biology)</topic><topic>RNA-mediated interference</topic><topic>Scavenging</topic><topic>Stomata</topic><topic>Wheat</topic><topic>Yeast</topic><topic>Yeasts</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Zhang, Lin</creatorcontrib><creatorcontrib>Lei, Daili</creatorcontrib><creatorcontrib>Deng, Xia</creatorcontrib><creatorcontrib>Li, Fangfang</creatorcontrib><creatorcontrib>Ji, Haikun</creatorcontrib><creatorcontrib>Yang, Shushen</creatorcontrib><collection>CrossRef</collection><collection>Calcium & Calcified Tissue Abstracts</collection><collection>Environment Abstracts</collection><collection>Environmental Sciences and Pollution Management</collection><collection>Environment Abstracts</collection><jtitle>Plant, cell and environment</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Zhang, Lin</au><au>Lei, Daili</au><au>Deng, Xia</au><au>Li, Fangfang</au><au>Ji, Haikun</au><au>Yang, Shushen</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Retracted : Cytosolic glyceraldehyde‐3‐phosphate dehydrogenase 2/5/6 increase drought tolerance via stomatal movement and reactive oxygen species scavenging in wheat</atitle><jtitle>Plant, cell and environment</jtitle><date>2020-04</date><risdate>2020</risdate><volume>43</volume><issue>4</issue><spage>836</spage><epage>853</epage><pages>836-853</pages><issn>0140-7791</issn><eissn>1365-3040</eissn><abstract>Drought is a major threat to wheat growth and crop productivity. However, there has been only limited success in developing drought‐hardy cultivars. This lack of progress is due, at least in part, to a lack of understanding of the molecular mechanisms of drought tolerance in wheat. Here, we evaluated the potential role of three cytosolic glyceraldehyde‐3‐phosphate dehydrogenases (TaGAPC2/5/6) under drought stress in wheat and Arabidopsis. We found that TaGAPC2/5/6 all positively responded to drought stress via reactive oxygen species (ROS) scavenging and stomatal movement. The results of yeast co‐transformation and electrophoretic mobility shift assay showed that TaWRKY33 acted as a direct regulator of TaGAPC2/5/6 genes. The dual luciferase reporter assay indicated that TaWRKY33 positively activated the expression of TaGAPC2/5/6 . The results of bimolecular fluorescence complementation and yeast two‐hybrid system demonstrated that TaGAPC2/5/6 interacted with phospholipase Dδ (PLDδ). We then demonstrated that TaGAPC2/5/6 positively promoted the activity of TaPLDδ in vitro and in vivo. Furthermore, lower PLDδ activity in RNAi wheat could lead to less PA accumulation, causing higher stomatal aperture sizes under drought stress. In summary, our results establish a new positive regulatory mechanism of TaGAPCs which helps wheat fine‐tune their drought responses.
Under drought stress, induced TaWRKY33 binds to the W‐box of TaGAPC2/5/6 promoters to improve the transcription. TaGAPC2/5/6 interact directly with TaPLDδ to mediate stomatal movement. In addition, TaGAPC2/5/6 could positively regulate the activity of enzymes involved in ROS scavenging to enhance resistance to drought stress.</abstract><cop>Oxford</cop><pub>Wiley Subscription Services, Inc</pub><doi>10.1111/pce.13710</doi><tpages>18</tpages><orcidid>https://orcid.org/0000-0003-1350-2598</orcidid></addata></record> |
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subjects | Apertures Cereal crops Complementation Crop production Cultivars Drought resistance Electrophoretic mobility Fluorescence Genetic transformation Glyceraldehyde Hybrid systems Molecular modelling Phospholipase Reactive oxygen species Regulatory mechanisms (biology) RNA-mediated interference Scavenging Stomata Wheat Yeast Yeasts |
title | Retracted : Cytosolic glyceraldehyde‐3‐phosphate dehydrogenase 2/5/6 increase drought tolerance via stomatal movement and reactive oxygen species scavenging in wheat |
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