iTRAQ-Based Quantitative Proteomic Analysis Reveals Cold Responsive Proteins Involved in Leaf Senescence in Upland Cotton (Gossypium hirsutum L.).

PubWeight™: 0.75‹?›

🔗 View Article (PMID 28926933)

Published in Int J Mol Sci on September 16, 2017

Authors

Xuewei Zheng1,2, Shuli Fan3, Hengling Wei4, Chengcheng Tao5, Qiang Ma6, Qifeng Ma7, Siping Zhang8, Hongbin Li9, Chaoyou Pang10, Shuxun Yu11

Author Affiliations

1: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. xwzheng0529@163.com.
2: College of Life Sciences, Key laboratory of Agrobiotechnology, Shihezi University, Shihezi 832003, China. xwzheng0529@163.com.
3: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. fansl@cricaas.com.cn.
4: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. henglingwei@163.com.
5: College of Life Sciences, Key laboratory of Agrobiotechnology, Shihezi University, Shihezi 832003, China. taocc_124@163.com.
6: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. maqiang5@126.com.
7: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. maqf@cricaas.com.cn.
8: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. zhsp5337@163.com.
9: College of Life Sciences, Key laboratory of Agrobiotechnology, Shihezi University, Shihezi 832003, China. lihb@shzu.edu.cn.
10: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. chypang@163.com.
11: State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang 455000, China. ysx195311@163.com.

Articles cited by this

The COG database: a tool for genome-scale analysis of protein functions and evolution. Nucleic Acids Res (2000) 49.22

MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantification. Nat Biotechnol (2008) 38.00

BiNGO: a Cytoscape plugin to assess overrepresentation of gene ontology categories in biological networks. Bioinformatics (2005) 24.04

Inhibition of leaf senescence by autoregulated production of cytokinin. Science (1995) 4.50

Evidence for Chilling-Induced Oxidative Stress in Maize Seedlings and a Regulatory Role for Hydrogen Peroxide. Plant Cell (1994) 4.28

Water Relations of Cotton Plants under Nitrogen Deficiency: III. STOMATAL CONDUCTANCE, PHOTOSYNTHESIS, AND ABSCISIC ACID ACCUMULATION DURING DROUGHT. Plant Physiol (1981) 3.46

The draft genome of a diploid cotton Gossypium raimondii. Nat Genet (2012) 3.18

Genome sequence of the cultivated cotton Gossypium arboreum. Nat Genet (2014) 2.61

Drought- and salt-tolerant plants result from overexpression of the AVP1 H+-pump. Proc Natl Acad Sci U S A (2001) 2.50

The role of sugars in integrating environmental signals during the regulation of leaf senescence. J Exp Bot (2005) 1.96

Induction of 33-kD and 60-kD Peroxidases during Ethylene-Induced Senescence of Cucumber Cotyledons. Plant Physiol (1988) 1.83

Gene expression changes and early events in cotton fibre development. Ann Bot (2007) 1.64

Effects of cotton rootstock on endogenous cytokinins and abscisic acid in xylem sap and leaves in relation to leaf senescence. J Exp Bot (2008) 1.50

Defining senescence and death. J Exp Bot (2003) 1.43

The Arabidopsis thaliana Myo-inositol 1-phosphate synthase1 gene is required for Myo-inositol synthesis and suppression of cell death. Plant Cell (2010) 1.37

Arabidopsis SHMT1, a serine hydroxymethyltransferase that functions in the photorespiratory pathway influences resistance to biotic and abiotic stress. Plant J (2005) 1.36

An abscisic acid-AtNAP transcription factor-SAG113 protein phosphatase 2C regulatory chain for controlling dehydration in senescing Arabidopsis leaves. Plant Physiol (2011) 1.34

Senescence-specific regulation of catalases in Arabidopsis thaliana (L.) Heynh. Plant Cell Environ (2006) 1.31

Trehalose 6-phosphate is required for the onset of leaf senescence associated with high carbon availability. Plant Physiol (2012) 1.27

Convergence and divergence in gene expression profiles induced by leaf senescence and 27 senescence-promoting hormonal, pathological and environmental stress treatments. Plant Cell Environ (2011) 1.21

Generation of hydrogen peroxide in chloroplasts of Arabidopsis overexpressing glycolate oxidase as an inducible system to study oxidative stress. Plant Physiol (2008) 1.19

Arabidopsis class I and class II TCP transcription factors regulate jasmonic acid metabolism and leaf development antagonistically. Plant Physiol (2012) 1.19

An Arabidopsis senescence-associated protein SAG29 regulates cell viability under high salinity. Planta (2010) 1.09

Age-dependent action of an ABA-inducible receptor kinase, RPK1, as a positive regulator of senescence in Arabidopsis leaves. Plant Cell Physiol (2011) 1.01

Regulation and execution of molecular disassembly and catabolism during senescence. New Phytol (2007) 0.98

An Arabidopsis chloroplast-targeted Hsp101 homologue, APG6, has an essential role in chloroplast development as well as heat-stress response. Plant J (2006) 0.98

An efficient protein preparation for proteomic analysis of developing cotton fibers by 2-DE. Electrophoresis (2006) 0.97

iTRAQ-based quantitative proteomics analysis of Brassica napus leaves reveals pathways associated with chlorophyll deficiency. J Proteomics (2014) 0.96

Performance of isobaric and isotopic labeling in quantitative plant proteomics. J Proteome Res (2012) 0.91

Global analysis of the Gossypium hirsutum L. Transcriptome during leaf senescence by RNA-Seq. BMC Plant Biol (2015) 0.88

iTRAQ-facilitated proteomic profiling of anthers from a photosensitive male sterile mutant and wild-type cotton (Gossypium hirsutum L.). J Proteomics (2015) 0.88

To grow old: regulatory role of ethylene and jasmonic acid in senescence. Front Plant Sci (2015) 0.88

Cold acclimation and low temperature resistance in cotton: Gossypium hirsutum phospholipase Dalpha isoforms are differentially regulated by temperature and light. J Exp Bot (2010) 0.88

iTRAQ-based quantitative proteomics analysis revealed alterations of carbohydrate metabolism pathways and mitochondrial proteins in a male sterile cybrid pummelo. J Proteome Res (2014) 0.87

Hyperhydricity in micropropagated carnation shoots: the role of oxidative stress. Physiol Plant (2004) 0.87

Salt stress and senescence: identification of cross-talk regulatory components. J Exp Bot (2014) 0.87

Quantitative phosphoproteomic profiling of fiber differentiation and initiation in a fiberless mutant of cotton. BMC Genomics (2014) 0.86

Impairment in Sulfite Reductase Leads to Early Leaf Senescence in Tomato Plants. Plant Physiol (2014) 0.85

Chilling stress--the key predisposing factor for causing Alternaria alternata infection and leading to cotton (Gossypium hirsutum L.) leaf senescence. PLoS One (2012) 0.83

Adaptation to altitude affects the senescence response to chilling in the perennial plant Arabis alpina. J Exp Bot (2014) 0.82

Simultaneous analysis of multiple endogenous plant hormones in leaf tissue of oilseed rape by solid-phase extraction coupled with high-performance liquid chromatography-electrospray ionisation tandem mass spectrometry. Phytochem Anal (2011) 0.82

Isolation and Functional Analysis of ZmLTP3, a Homologue to Arabidopsis LTP3. Int J Mol Sci (2013) 0.81

Universal Stress Protein Exhibits a Redox-Dependent Chaperone Function in Arabidopsis and Enhances Plant Tolerance to Heat Shock and Oxidative Stress. Front Plant Sci (2015) 0.81

Characterization and molecular cloning of a serine hydroxymethyltransferase 1 (OsSHM1) in rice. J Integr Plant Biol (2015) 0.81

Interactions between temperature and sugars in the regulation of leaf senescence in the perennial herb Arabis alpina L. J Integr Plant Biol (2012) 0.80

A genetic framework for H2O2 induced cell death in Arabidopsis thaliana. BMC Genomics (2015) 0.80

Abscisic Acid as an Internal Integrator of Multiple Physiological Processes Modulates Leaf Senescence Onset in Arabidopsis thaliana. Front Plant Sci (2016) 0.79

The role of ANAC072 in the regulation of chlorophyll degradation during age- and dark-induced leaf senescence. Plant Cell Rep (2016) 0.79

iTRAQ-Based Quantitative Proteomic Analysis of Cotton Roots and Leaves Reveals Pathways Associated with Salt Stress. PLoS One (2016) 0.79

Nitrite is the driver, phytohormones are modulators while NO and H2O2 act as promoters of NO2-induced cell death. J Exp Bot (2016) 0.78

Characterization of the Arabidopsis thaliana 2-Cys peroxiredoxin interactome. Plant Sci (2016) 0.77

Losses of leaf area owing to herbivory and early senescence in three tree species along a winter temperature gradient. Int J Biometeorol (2016) 0.76

Cell death patterns in Arabidopsis cells subjected to four physiological stressors indicate multiple signalling pathways and cell cycle phase specificity. Protoplasma (2016) 0.76

Distribution of food-borne Staphylococcus aureus enterotoxin genes. Genet Mol Res (2016) 0.75

Evaluation of Three Protein-Extraction Methods for Proteome Analysis of Maize Leaf Midrib, a Compound Tissue Rich in Sclerenchyma Cells. Front Plant Sci (2016) 0.75

Differences in Sugar Accumulation and Mobilization between Sequential and Non-Sequential Senescence Wheat Cultivars under Natural and Drought Conditions. PLoS One (2016) 0.75

Functional and regulatory conservation of the soybean ER stress-induced DCD/NRP-mediated cell death signaling in plants. BMC Plant Biol (2016) 0.75

Transcriptome Analysis of Pepper (Capsicum annuum) Revealed a Role of 24-Epibrassinolide in Response to Chilling. Front Plant Sci (2016) 0.75