Brittle culm 25, which encodes an UDP-xylose synthase, affects cell wall properties in rice
暂无分享,去创建一个
Shan Wang | D. Zeng | Meng-chen Zhang | Qun Xu | Yaolong Yang | Xiao-ping Yuan | Siliang Xu | Junhua Ye | Xinghua Wei | Junrong Liu | Dongxiu Hu | Yue Feng | Zhen Li | Yuanyuan Zhang | Yan-qun Sun | Xinghua Wei | Xinghua Wei
[1] S. Persson,et al. Xylan-based nanocompartments orchestrate plant vessel wall patterning , 2022, Nature Plants.
[2] Quan Xu,et al. FRAGILE CULM 18 encodes a UDP-glucuronic acid decarboxylase required for xylan biosynthesis and plant growth in rice. , 2022, Journal of experimental botany.
[3] Jianxiong Li,et al. The OsmiRNA166b‐OsHox32 pair regulates mechanical strength of rice plants by modulating cell wall biosynthesis , 2021, Plant biotechnology journal.
[4] Yihua Zhou,et al. The Plant Cell Wall: Biosynthesis, construction, and functions. , 2020, Journal of integrative plant biology.
[5] Q. Qian,et al. Disruption of EARLY LESION LEAF 1, encoding a cytochrome P450 monooxygenase, induces ROS accumulation and cell death in rice. , 2020, The Plant journal : for cell and molecular biology.
[6] Yihua Zhou,et al. Arabinosyl Deacetylase Modulates the Arabinoxylan Acetylation Profile and Secondary Wall Formation , 2019, Plant Cell.
[7] Sudhir Kumar,et al. MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms. , 2018, Molecular biology and evolution.
[8] Christopher Kesten,et al. Regulation of cellulose synthesis in response to stress. , 2017, Current opinion in plant biology.
[9] A. Ragauskas,et al. OsCESA9 conserved‐site mutation leads to largely enhanced plant lodging resistance and biomass enzymatic saccharification by reducing cellulose DP and crystallinity in rice , 2017, Plant biotechnology journal.
[10] Chengcai Chu,et al. Control of secondary cell wall patterning involves xylan deacetylation by a GDSL esterase , 2017, Nature Plants.
[11] Monika S. Doblin,et al. Role of UDP-Glucuronic Acid Decarboxylase in Xylan Biosynthesis in Arabidopsis. , 2016, Molecular plant.
[12] Xueyong Li,et al. A Missense Mutation in the Zinc Finger Domain of OsCESA7 Deleteriously Affects Cellulose Biosynthesis and Plant Growth in Rice , 2016, PloS one.
[13] Q. Qian,et al. Fine Mapping Identifies a New QTL for Brown Rice Rate in Rice (Oryza Sativa L.) , 2016, Rice.
[14] Q. Qian,et al. PGL, encoding chlorophyllide a oxygenase 1, impacts leaf senescence and indirectly affects grain yield and quality in rice , 2015, Journal of experimental botany.
[15] P. Adams,et al. Identification and Characterization of a Golgi-Localized UDP-Xylose Transporter Family from Arabidopsis[OPEN] , 2015, Plant Cell.
[16] A. Bacic,et al. Biochemical and molecular changes associated with heteroxylan biosynthesis in Neolamarckia cadamba (Rubiaceae) during xylogenesis , 2014, Front. Plant Sci..
[17] Paul Theodor Pyl,et al. HTSeq—a Python framework to work with high-throughput sequencing data , 2014, bioRxiv.
[18] D. Mohnen,et al. A review of xylan and lignin biosynthesis: Foundation for studying Arabidopsis irregular xylem mutants with pleiotropic phenotypes , 2014, Critical reviews in biochemistry and molecular biology.
[19] H. Scheller,et al. Xylan biosynthesis. , 2014, Current opinion in biotechnology.
[20] Q. Qian,et al. Characterization and cloning of a brittle culm mutant (bc88) in rice (Oryza sativa L.) , 2013 .
[21] H. Ling,et al. Disruption of secondary wall cellulose biosynthesis alters cadmium translocation and tolerance in rice plants. , 2013, Molecular plant.
[22] M. Pauly,et al. Hemicellulose biosynthesis , 2013, Planta.
[23] K. Kavanagh,et al. Structure and Mechanism of Human UDP-xylose Synthase , 2012, The Journal of Biological Chemistry.
[24] I. Wilson,et al. UDP-xylose and UDP-galactose synthesis in Trichomonas vaginalis , 2012, Molecular and biochemical parasitology.
[25] Sascha Gille,et al. O-Acetylation of Plant Cell Wall Polysaccharides , 2011, Front. Plant Sci..
[26] S. Kawasaki,et al. Rice Brittle culm 6 encodes a dominant-negative form of CesA protein that perturbs cellulose synthesis in secondary cell walls , 2011, Journal of experimental botany.
[27] A. Showalter,et al. IRX14 and IRX14-LIKE, two glycosyl transferases involved in glucuronoxylan biosynthesis and drought tolerance in Arabidopsis. , 2010, Molecular plant.
[28] P. Lerouge,et al. Analysis of the Arabidopsis IRX9/IRX9-L and IRX14/IRX14-L Pairs of Glycosyltransferase Genes Reveals Critical Contributions to Biosynthesis of the Hemicellulose Glucuronoxylan1[C][W] , 2010, Plant Physiology.
[29] R. Zhong,et al. The Arabidopsis Family GT43 Glycosyltransferases Form Two Functionally Nonredundant Groups Essential for the Elongation of Glucuronoxylan Backbone1[W][OA] , 2010, Plant Physiology.
[30] M. Pauly,et al. Rice cellulose synthase-like D4 is essential for normal cell-wall biosynthesis and plant growth. , 2009, The Plant journal : for cell and molecular biology.
[31] Qian Qian,et al. A missense mutation in the transmembrane domain of CESA4 affects protein abundance in the plasma membrane and results in abnormal cell wall biosynthesis in rice , 2009, Plant Molecular Biology.
[32] Staffan Persson,et al. Cellulose synthesis: a complex complex. , 2008, Current opinion in plant biology.
[33] R. Goodacre,et al. Comparison of five xylan synthesis mutants reveals new insight into the mechanisms of xylan synthesis. , 2007, The Plant journal : for cell and molecular biology.
[34] M. Gu,et al. Fine mapping and isolation of Bc7(t), allelic to OsCesA4. , 2007, Journal of genetics and genomics = Yi chuan xue bao.
[35] G. Mouille,et al. The mechanism and regulation of cellulose synthesis in primary walls: lessons from cellulose-deficient Arabidopsis mutants , 2004 .
[36] R. Tanaka,et al. The Arabidopsis-accelerated cell death gene ACD1 is involved in oxygenation of pheophorbide a: inhibition of the pheophorbide a oxygenase activity does not lead to the "stay-green" phenotype in Arabidopsis. , 2003, Plant & cell physiology.
[37] A. Miyao,et al. Three Distinct Rice Cellulose Synthase Catalytic Subunit Genes Required for Cellulose Synthesis in the Secondary Wall1 , 2003, Plant Physiology.
[38] S. Turner,et al. Interactions among three distinct CesA proteins essential for cellulose synthesis , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[39] Julie D Thompson,et al. Multiple Sequence Alignment Using ClustalW and ClustalX , 2003, Current protocols in bioinformatics.
[40] T. Doering,et al. Functional cloning and characterization of a UDP- glucuronic acid decarboxylase: The pathogenic fungus Cryptococcus neoformans elucidates UDP-xylose synthesis , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[41] T. Heinze,et al. Xylan and xylan derivatives – biopolymers with valuable properties, 1. Naturally occurring xylans structures, isolation procedures and properties , 2000 .
[42] D. Delmer,et al. Higher plants contain homologs of the bacterial celA genes encoding the catalytic subunit of cellulose synthase. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[43] R. Jefferson,et al. The GUS reporter gene system , 1989, Nature.
[44] P. Albersheim,et al. Structure of Plant Cell Walls : XII. Identification of Seven Differently Linked Glycosyl Residues Attached to O-4 of the 2,4-Linked l-Rhamnosyl Residues of Rhamnogalacturonan I. , 1982, Plant physiology.