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The Maize Clade A PP2C Phosphatases Play Critical Roles in

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Zhenghua He's research works Huazhong Agricultural

Zhenghua He's 4 research works with 16 citations and 197 reads,including The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress ResponsesXiaopeng Sun's research works Huazhong Agricultural The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses. the roles and natural variations of maize PP2C-A in stress responses remain largely unknown.In Type 2C protein phosphatases in plants Request PDFThe Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses. the roles and natural variations of maize PP2C-A in stress responses remain largely unknown.In

Type 2C protein phosphatases in plants Request PDF

The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses. the roles and natural variations of maize PP2C-A in stress responses remain largely unknown.In Type 2C protein phosphatases in plants - Fuchs - 2013 Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu Dai,The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses,International Journal of Molecular Sciences,10.3390/ijms20143573,20,14,(3573),(2019).The isolation and characterization of abscisic acid Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu Dai,The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses,International Journal of Molecular Sciences,10.3390/ijms20143573,20,14,(3573),(2019).

The Maize Clade A PP2C Phosphatases Play Critical Roles in

Jul 22,2019 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses.He Z(1)(2),Wu J(1),Sun X(1),Dai M(3).Author information (1)National Key Laboratory of Crop Genetic Improvement,Huazhong Agricultural University,Wuhan 430070,China.The Maize Clade A PP2C Phosphatases Play Critical Roles in Jul 22,2019 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;All these studies from Arabidopsis indicated pleiotropic roles of clade A PP2C phosphatases in plant development and stress responses.How clade A PP2C phosphatases in maize (ZmPP2C-As) regulate stress responses and agronomic traits remain largely known.Few progresses have been made in maize PP2C-A research in recent years.The Maize Clade A PP2C Phosphatases Play Critical Roles in As the core components of abscisic acid (ABA) signal pathway,Clade A PP2C (PP2C-A) phosphatases in ABA-dependent stress responses have been well studied in Arabidopsis.However,the roles and natural variations of maize PP2C-A in stress responses remain largely unknown.In this study,we investigated the expression patterns of ZmPP2C-As treated with multiple stresses and generated

The Maize ABA Receptors ZmPYL8,9,and 12 Facilitate

et al.,2013).A number of studies revealed the important roles of SnRK2 kinases and clade A PP2C phosphatases in regulation of plant drought resistance.Mutation of SnRK2.6/OST1 caused constitutive stomatal opening and water loss (Mustilli et al.,2002).Triple mutants ofStructural Insights Into PYR/PYL/RCAR ABA Receptors and The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses.He Z,Wu J,Sun X,Dai M.He Z,et al.Int J Mol Sci.2019 Jul 22;20(14):3573.doi 10.3390/ijms20143573.Revisiting the Basal Role of ABA Roles Outside of Stress Jul 01,2019 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;Besides clade A PP2C phosphatases,a plasma membrane-localized clade E PP2C,CLADE-E GROWTH-REGULATING 2 (EGR2),has been proposed to inhibit the SnRK2s .Ubiquitylation is another important protein modification,and protein abundance of core components has been shown to be controlled via multiple ubiquitin ligases.

Protein phosphatase complement in rice genome-wide

Jul 16,2010 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;Protein phosphatases are the key components of a number of signaling pathways where they modulate various cellular responses.In plants,protein phosphatases constitute a large gene family and are reportedly involved in the regulation of abiotic stress responses and plant development.Recently,the whole complement of protein phosphatases has been identified in Arabidopsis genome.Previous123456NextXiaopeng Sun's research works Huazhong Agricultural The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses. the roles and natural variations of maize PP2C-A in stress responses remain largely unknown.In Mutation of a Conserved Motif of PP2C.D Phosphatases Jul 16,2019 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;Among the nine D-clade PP2C phosphatases,PP2C.D2,PP2C.D5,and PP2C.D6 act in a largely redundant manner to inhibit cell expansion in hypocotyls and several other organs,while the remaining family members do not appear to contribute to these growth processes (Ren et al.,2018).

Maize protein phosphatase gene family identification and

Sep 09,2014 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;Protein phosphatases (PPs) play critical roles in various cellular processes through the reversible protein phosphorylation that dictates many signal transduction pathways among organisms.Recently,PPs in Arabidopsis and rice have been identified,while the whole complement of PPs in maize is yet to be reported.In this study,we have identified 159 PP-encoding genes in the maize genome.Maize protein phosphatase gene family identification and BMC Genomics Maize protein phosphatase gene family identification and molecular characterization Kaifa Wei 0 Si Pan 0 0 School of Biological Sciences and Biotechnology,Minnan Normal University ,Zhangzhou 363000 ,China Background Protein phosphatases (PPs) play critical roles in various cellular processes through the reversible protein phosphorylation that dictates many signalIdentification and Expression Profiling of Protein Mar 20,2019 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;The protein phosphatase (PP2C) gene family,known to participate in cellular processes,is one of the momentous and conserved plant-specific gene families that regulate signal transduction in eukaryotic organisms.Recently,PP2Cs were identified in Arabidopsis and various other crop species,but analysis of PP2C in cotton is yet to be reported.In the current research,we found 87 (Gossypium

Identification and Expression Profiling of Protein

Mar 20,2019 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;The protein phosphatase (PP2C) gene family,known to participate in cellular processes,is one of the momentous and conserved plant-specific gene families that regulate signal transduction in eukaryotic organisms.Recently,PP2Cs were identified in Arabidopsis and various other crop species,but analysis of PP2C in cotton is yet to be reported.In the current research,we found 87 (Gossypium Genome-wide identification,evolution,and molecular Jun 20,2019 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;The PP2C gene family is one of the most significant gene families that play a vital role in growth and development,and abiotic stress-resistance in eukaryotic organisms (Haider et al.,2017a).Previously,many studies have been carried on the functional analysis of PP2C genes in Arabidopsis ( Kerk et al.,2002 ) and tobacco ( Djamitchatchou et Frontiers The Maize ABA Receptors ZmPYL8,9,and 12 A number of studies revealed the important roles of SnRK2 kinases and clade A PP2C phosphatases in regulation of plant drought resistance.Mutation of SnRK2.6/OST1 caused constitutive stomatal opening and water loss (Mustilli et al.,2002).

Epigenetic Regulation of ABA-Induced Transcriptional

Epigenetic Regulation of ABA-Induced Transcriptional Responses in Maize.Published on May 4,2020 in G3 Genes,Genomes,Genetics 2.63 DOI 10.1534/G3.119.400993 Copy DOIEpigenetic Regulation of ABA-Induced Transcriptional Epigenetic Regulation of ABA-Induced Transcriptional Responses in Maize.Published on May 4,2020 in G3 Genes,Genomes,Genetics 2.63 DOI 10.1534/G3.119.400993 Copy DOIEnhanced Vitamin C Production Mediated by an ABAClade A PP2C phosphatases and SnRK2 kinases have also been shown to be important in ABA signaling (Raghavendra et al.,2010).A number of studies have revealed the critical roles of PYL/RCAR ABA receptors,clade A PP2C Published by the Molecular Plant

Deletion of an Endoplasmic Reticulum Stress Response

Mar 06,2017 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;Breeding drought-tolerant maize cultivars is a priority requirement of world agriculture.Clade A PP2C phosphatases (PP2C-A),which are conserved in most plant species,play important roles in abscisic acid (ABA) signaling and plant drought response.Deletion of an Endoplasmic Reticulum Stress Response Breeding drought-tolerant maize cultivars is a priority requirement of world agriculture.Clade A PP2C phosphatases (PP2C-A),which are conserved in most plant species,play important roles in abscisic acid (ABA) signaling and plant drought response.However,natural variations of PP2C-A genes that areDeletion of an Endoplasmic Reticulum Stress Response Breeding drought-tolerant maize cultivars is a priority requirement of world agriculture.Clade A PP2C phosphatases (PP2C-A),which are conserved in most plant species,play important roles in abscisic acid (ABA) signaling and plant drought response.However,natural variations of PP2C-A genes that are

Deletion of an Endoplasmic Reticulum Stress Response

Breeding drought-tolerant maize cultivars is a priority requirement of world agriculture.Clade A PP2C phosphatases (PP2C-A),which are conserved in most plant species,play important roles in abscisic acid (ABA) signaling and plant drought response.Cited by 7Publish Year 2019Author Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu DaiThe Maize Clade A PP2C Phosphatases Play Critical RolesThe Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses Zhenghua He 1,2,y,Jinfeng Wu 1,y,Xiaopeng Sun 1 and Mingqiu Dai 1,* 1 National Key Laboratory of Crop Genetic Improvement,Huazhong Agricultural University,Wuhan 430070,ChinaCited by 7Publish Year 2019Author Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu DaiThe Maize Clade A PP2C Phosphatases Play Critical Roles in The manuscript The maize clade A PP2C phosphatases play critical roles in multiple stress responses the authors analyse the role PP2C-As in abiotic stress responses in maize.Although this is an interesting topic,the manuscript has raised different concerns 1.

Cited by 7Publish Year 2019Author Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu DaiThe Maize Clade A PP2C Phosphatases Play Critical Roles in

The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses Article (PDF Available) in International Journal of Molecular Sciences 20(14):3573 July 2019 with 35 Cited by 7Publish Year 2019Author Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu DaiThe Maize Clade A PP2C Phosphatases Play Critical Roles in As the core components of abscisic acid (ABA) signal pathway,Clade A PP2C (PP2C-A) phosphatases in ABA-dependent stress responses have been well studied in Arabidopsis.However,the roles and natural variations of maize PP2C-A in stress responses remain largely unknown.In this study,we investigated the expression patterns of ZmPP2C-As treated with multiple stresses and generatedCited by 7Publish Year 2019Author Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu Dai12345NextThe Maize Clade A PP2C Phosphatases Play Critical Roles in The manuscript The maize clade A PP2C phosphatases play critical roles in multiple stress responses the authors analyse the role PP2C-As in abiotic stress responses in maize.Although this is an interesting topic,the manuscript has raised different concerns 1.

ABAHypersensitive Germination1 encodes a protein

May 23,2007 The Maize Clade A PP2C Phosphatases Play Critical Roles in#0183;Zhenghua He,Jinfeng Wu,Xiaopeng Sun,Mingqiu Dai,The Maize Clade A PP2C Phosphatases Play Critical Roles in Multiple Abiotic Stress Responses,International Journal of Molecular Sciences,10.3390/ijms20143573,20,14,(3573),(2019).

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