Comparative proteomic analysis on chloroplast proteins provides new insights into the effects of low temperature in sugar beet
暂无分享,去创建一个
J. Long | Yuguang Wang | Fushun Zhang | Z. Pi | Wang Xing | Zedong Wu | Yinbin Zou | Jiaping Sun | Wenjing Li
[1] Sixue Chen,et al. Quantitative redox proteomics revealed molecular mechanisms of salt tolerance in the roots of sugar beet monomeric addition line M14 , 2021, Botanical studies.
[2] V. N. Popov,et al. Ultrastructural Changes in Chloroplasts of Cucumis sativus L. and Secale cereale L. during Low-Temperature Hardening , 2021, Russian Journal of Plant Physiology.
[3] Qiuhong Wang,et al. Physiological and Proteomic Analysis of Different Molecular Mechanisms of Sugar Beet Response to Acidic and Alkaline pH Environment , 2021, Frontiers in Plant Science.
[4] L. Gerber,et al. Cold acclimation preserves hindgut reabsorption capacity at low temperature in a chill-susceptible insect, Locusta migratoria. , 2020, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[5] L. Kapoor. Botanical Studies , 2020, Opium Poppy.
[6] J. Long,et al. Temporal Expression Pattern of Bolting-Related Genes During Vernalization in Sugar Beet , 2020 .
[7] E. G. Kulan,et al. Effective Seed Priming Methods Improving Germination and Emergence of Sugar Beet Under Low-Temperature Stress , 2020, Sugar Tech.
[8] Zhe-zhi Wang,et al. Genome-wide identification and expression analysis of the superoxide dismutase (SOD) gene family in Salvia miltiorrhiza. , 2020, Gene.
[9] Jun Liu,et al. Comparative transcriptome analysis reveals an ABA-responsive regulation network associated with cell wall organization and oxidation reduction in sugar beet , 2020, Plant Growth Regulation.
[10] Olga Chernomor,et al. IQ-TREE 2: New Models and Efficient Methods for Phylogenetic Inference in the Genomic Era , 2019, bioRxiv.
[11] Jijing Luo,et al. Chloroplasts— Beyond Energy Capture and Carbon Fixation: Tuning of Photosynthesis in Response to Chilling Stress , 2019, International journal of molecular sciences.
[12] Dajun Liu,et al. Analysis of differential gene expression in cold-tolerant vs. cold-sensitive varieties of snap bean (Phaseolus vulgaris L.) in response to low temperature stress , 2019, Genes & Genomics.
[13] S. Yin,et al. iTRAQ-based quantitative proteomic analysis of Takifugu fasciatus liver in response to low-temperature stress. , 2019, Journal of proteomics.
[14] Yonghong Wang,et al. A Sensitive and Simple Impedance Sensing Strategy for Glutathione and Glutathione Reductase Activity Detection , 2019, Journal of Analytical Chemistry.
[15] G. Bao,et al. Physiological effects of different concentrations of chloride deicing salt and freeze–thaw stress on Secale cereale L. seedlings , 2019, Journal of Plant Growth Regulation.
[16] F. Unrein,et al. The increase of photosynthetic carbon assimilation as a mechanism of adaptation to low temperature in Lotus japonicus , 2019, Scientific Reports.
[17] Rebecca L. Roston,et al. Low-temperature tolerance in land plants: Are transcript and membrane responses conserved? , 2018, Plant science : an international journal of experimental plant biology.
[18] R. Serrano,et al. BvCOLD1: A novel aquaporin from sugar beet (Beta vulgaris L.) involved in boron homeostasis and abiotic stress. , 2018, Plant, cell & environment.
[19] Tao Zhang,et al. Rice Premature Leaf Senescence 2, Encoding a Glycosyltransferase (GT), Is Involved in Leaf Senescence , 2018, Front. Plant Sci..
[20] J. Cui,et al. Difference of proteomics vernalization-induced in bolting and flowering transitions of Beta vulgaris. , 2018, Plant physiology and biochemistry : PPB.
[21] Jing Li,et al. Comparative Proteomic Analysis of Two Sugar Beet Cultivars with Contrasting Drought Tolerance , 2017, Journal of Plant Growth Regulation.
[22] Rikard Fristedt. Chloroplast function revealed through analysis of GreenCut2 genes. , 2017, Journal of experimental botany.
[23] M. Baier,et al. Cold regulation of plastid ascorbate peroxidases serves as a priming hub controlling ROS signaling in Arabidopsis thaliana , 2016, BMC Plant Biology.
[24] Jian-Kang Zhu,et al. Mutational Evidence for the Critical Role of CBF Transcription Factors in Cold Acclimation in Arabidopsis1 , 2016, Plant Physiology.
[25] Bin Zhang,et al. Physiological responses to low temperature in spring and winter wheat varieties. , 2016, Journal of the science of food and agriculture.
[26] Fernando Antunes,et al. The Roles of Peroxiredoxin and Thioredoxin in Hydrogen Peroxide Sensing and in Signal Transduction , 2016, Molecules and cells.
[27] S. Shen,et al. The cold responsive mechanism of the paper mulberry: decreased photosynthesis capacity and increased starch accumulation , 2015, BMC Genomics.
[28] D. Higgins,et al. Instability in progressive multiple sequence alignment algorithms , 2015, Algorithms for Molecular Biology.
[29] B. Weisshaar,et al. SMRT sequencing only de novo assembly of the sugar beet (Beta vulgaris) chloroplast genome , 2015, BMC Bioinformatics.
[30] M. Delledonne,et al. Early transcriptional changes in Beta vulgaris in response to low temperature , 2015, Planta.
[31] W. Cao,et al. Cold priming drives the sub-cellular antioxidant systems to protect photosynthetic electron transport against subsequent low temperature stress in winter wheat. , 2014, Plant physiology and biochemistry : PPB.
[32] Peter Rodgers,et al. eulerAPE: Drawing Area-Proportional 3-Venn Diagrams Using Ellipses , 2014, PloS one.
[33] M. Naghavi,et al. A proteomic analysis to identify cold acclimation associated proteins in wild wheat (Triticum urartu L.) , 2014, Molecular Biology Reports.
[34] M. Naghavi,et al. A proteomic analysis to identify cold acclimation associated proteins in wild wheat (Triticum urartu L.) , 2014, Molecular Biology Reports.
[35] Sixue Chen,et al. Proteomic analysis of salt tolerance in sugar beet monosomic addition line M14. , 2013, Journal of proteome research.
[36] Masato Nakai,et al. Uncovering the Protein Translocon at the Chloroplast Inner Envelope Membrane , 2013, Science.
[37] S. Orzechowski,et al. Analysis of the expression, subcellular and tissue localisation of phosphoglucan, water dikinase (PWD/GWD3) in Solanum tuberosum L.: a bioinformatics approach for the comparative analysis of two α-glucan, water dikinases (GWDs) from Solanum tuberosum L. , 2013, Acta Physiologiae Plantarum.
[38] S. Bryant,et al. The role of the PCM in reducing oxidative stress induced by radical initiated photoencapsulation of chondrocytes in poly(ethylene glycol) hydrogels. , 2012, Osteoarthritis and cartilage.
[39] Songnian Hu,et al. EvolView, an online tool for visualizing, annotating and managing phylogenetic trees , 2012, Nucleic Acids Res..
[40] B. Göttgens,et al. A new RNASeq-based reference transcriptome for sugar beet and its application in transcriptome-scale analysis of vernalization and gibberellin responses , 2012, BMC Genomics.
[41] Jun Yang,et al. Transcriptome profiling of low temperature-treated cassava apical shoots showed dynamic responses of tropical plant to cold stress , 2012, BMC Genomics.
[42] Sodabeh Jahanbakhsh Godehkahriz,et al. The influence of temperature on plant development in a vernalization-requiring winter wheat: A 2-DE based proteomic investigation. , 2011, Journal of proteomics.
[43] Xiaoyi Li,et al. LTD is a protein required for sorting light-harvesting chlorophyll-binding proteins to the chloroplast SRP pathway. , 2011, Nature communications.
[44] H. Shao,et al. Effects of low temperature and drought on the physiological and growth changes in oil palm seedlings , 2011 .
[45] Zhou Du,et al. agriGO: a GO analysis toolkit for the agricultural community , 2010, Nucleic Acids Res..
[46] M. Kočová,et al. The influence of low-temperature on the photochemical activity of chloroplasts and activity of antioxidant enzymes in maize leaves , 2009, Biologia Plantarum.
[47] X. Yang,et al. Zinc Efficiency is Correlated with Root Morphology, Ultrastructure, and Antioxidative Enzymes in Rice , 2009 .
[48] S. Zeeman,et al. Starch Granule Biosynthesis in Arabidopsis Is Abolished by Removal of All Debranching Enzymes but Restored by the Subsequent Removal of an Endoamylase[W][OA] , 2008, The Plant Cell Online.
[49] R. Bock,et al. Rpl33, a Nonessential Plastid-Encoded Ribosomal Protein in Tobacco, Is Required under Cold Stress Conditions[W][OA] , 2008, The Plant Cell Online.
[50] S. Komatsu,et al. Proteomic analysis of rice seedlings during cold stress , 2007, Proteomics.
[51] Jin-yuan Liu,et al. Molecular cloning and functional characterization of a DREB1/CBF-like gene (GhDREB1L) from cotton , 2007, Science in China Series C: Life Sciences.
[52] X. Xia,et al. Different effects of chilling on respiration in leaves and roots of cucumber (Cucumis sativus). , 2006, Plant physiology and biochemistry : PPB.
[53] Sixue Chen,et al. Additional freeze hardiness in wheat acquired by exposure to -3 degreesC is associated with extensive physiological, morphological, and molecular changes. , 2006, Journal of experimental botany.
[54] T. Kieselbach,et al. The chloroplast lumen and stromal proteomes of Arabidopsis thaliana show differential sensitivity to short- and long-term exposure to low temperature. , 2006, The Plant journal : for cell and molecular biology.
[55] D. Thorneycroft,et al. Evidence for Distinct Mechanisms of Starch Granule Breakdown in Plants* , 2006, Journal of Biological Chemistry.
[56] K. V. van Wijk,et al. The Oligomeric Stromal Proteome of Arabidopsis thaliana Chloroplasts *S , 2006, Molecular & Cellular Proteomics.
[57] G. Agrawal,et al. Proteome analysis of differentially displayed proteins as a tool for investigating ozone stress in rice (Oryza sativa L.) seedlings , 2002, Proteomics.
[58] M. Henry,et al. Filter-Aided Sample Preparation (FASP) for Improved Proteome Analysis of Recombinant Chinese Hamster Ovary Cells. , 2017, Methods in molecular biology.
[59] A. Fargašová,et al. Assessment of Cr and Ni phytotoxicity from cutlery-washing waste-waters using biomass and chlorophyll production tests on mustard Sinapis alba L. seedlings , 2010, Environmental science and pollution research international.
[60] Hilde van der Togt,et al. Publisher's Note , 2003, J. Netw. Comput. Appl..