Literature DB >> 21300919

Molecular analysis of a family of Arabidopsis genes related to galacturonosyltransferases.

Yingzhen Kong1, Gongke Zhou, Yanbin Yin, Ying Xu, Sivakumar Pattathil, Michael G Hahn.   

Abstract

We are studying a Galacturonosyltransferase-Like (GATL) gene family in Arabidopsis (Arabidopsis thaliana) that was identified bioinformatically as being closely related to a group of 15 genes (Galacturonosyltransferase1 [GAUT1] to -15), one of which (GAUT1) has been shown to encode a functional galacturonosyltransferase. Here, we describe the phylogeny, gene structure, evolutionary history, genomic organization, protein topology, and expression pattern of this gene family in Arabidopsis. Expression studies (reverse transcription-polymerase chain reaction) demonstrate that all 10 AtGATL genes are transcribed, albeit to varying degrees, in Arabidopsis tissues. Promoter::β-glucuronidase expression studies show that individual AtGATL gene family members have both overlapping and unique expression patterns. Nine of the 10 AtGATL genes are expressed in all major plant organs, although not always in all cell types of those organs. AtGATL4 expression appears to be confined to pollen grains. Most of the AtGATL genes are expressed strongly in vascular tissue in both the stem and hypocotyl. Subcellular localization studies of several GATL proteins using yellow fluorescent protein tagging provide evidence supporting the Golgi localization of these proteins. Plants carrying T-DNA insertions in three AtGATL genes (atgatl3, atgatl6, and atgatl9) have reduced amounts of GalA in their stem cell walls. The xylose content increased in atgatl3 and atgatl6 stem walls. Glycome profiling of cell wall fractions from these mutants using a toolkit of diverse plant glycan-directed monoclonal antibodies showed that the mutations affect both pectins and hemicelluloses and alter overall wall structure, as indicated by altered epitope extractability patterns. The data presented suggest that the AtGATL genes encode proteins involved in cell wall biosynthesis, but their precise roles in wall biosynthesis remain to be substantiated.

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Year:  2011        PMID: 21300919      PMCID: PMC3091093          DOI: 10.1104/pp.110.163220

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  65 in total

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5.  Carbohydrate analysis by a phenol-sulfuric acid method in microplate format.

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6.  The study of a monocotyledon abscission zone using microscopic, chemical, enzymatic and solid state 13C CP/MAS NMR analyses.

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9.  Functional divergence of duplicated genes formed by polyploidy during Arabidopsis evolution.

Authors:  Guillaume Blanc; Kenneth H Wolfe
Journal:  Plant Cell       Date:  2004-06-18       Impact factor: 11.277

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Authors:  Sophie Bouton; Edouard Leboeuf; Gregory Mouille; Marie-Thérèse Leydecker; Joël Talbotec; Fabienne Granier; Marc Lahaye; Herman Höfte; Hoai-Nam Truong
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  30 in total

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Journal:  Plant Physiol       Date:  2011-11-28       Impact factor: 8.340

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Journal:  Plant Signal Behav       Date:  2012-01

3.  CELLULOSE SYNTHASE-LIKE A2, a glucomannan synthase, is involved in maintaining adherent mucilage structure in Arabidopsis seed.

Authors:  Li Yu; Dachuan Shi; Junling Li; Yingzhen Kong; Yanchong Yu; Guohua Chai; Ruibo Hu; Juan Wang; Michael G Hahn; Gongke Zhou
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Journal:  Plant Cell       Date:  2012-09-04       Impact factor: 11.277

5.  Cell wall changes during the formation of aerenchyma in sugarcane roots.

Authors:  D C C Leite; A Grandis; E Q P Tavares; A R Piovezani; S Pattathil; U Avci; A Rossini; A Cambler; A P De Souza; M G Hahn; M S Buckeridge
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6.  Identification and expression analysis of the PtGATL genes under different nitrogen and carbon dioxide treatments in Populus trichocarpa.

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7.  GALACTURONOSYLTRANSFERASE-LIKE5 is involved in the production of Arabidopsis seed coat mucilage.

Authors:  Yingzhen Kong; Gongke Zhou; Ashraf A Abdeen; James Schafhauser; Beth Richardson; Melani A Atmodjo; Jiyoung Jung; Louise Wicker; Debra Mohnen; Tamara Western; Michael G Hahn
Journal:  Plant Physiol       Date:  2013-10-03       Impact factor: 8.340

8.  PECTIN METHYLESTERASE INHIBITOR6 promotes Arabidopsis mucilage release by limiting methylesterification of homogalacturonan in seed coat epidermal cells.

Authors:  Susana Saez-Aguayo; Marie-Christine Ralet; Adeline Berger; Lucy Botran; David Ropartz; Annie Marion-Poll; Helen M North
Journal:  Plant Cell       Date:  2013-01-29       Impact factor: 11.277

9.  Regulation of Meristem Morphogenesis by Cell Wall Synthases in Arabidopsis.

Authors:  Weibing Yang; Christoph Schuster; Cherie T Beahan; Varodom Charoensawan; Alexis Peaucelle; Antony Bacic; Monika S Doblin; Raymond Wightman; Elliot M Meyerowitz
Journal:  Curr Biol       Date:  2016-05-19       Impact factor: 10.834

10.  Tubby-like Protein 2 regulates homogalacturonan biosynthesis in Arabidopsis seed coat mucilage.

Authors:  Meng Wang; Zongchang Xu; Rana Imtiaz Ahmed; Yiping Wang; Ruibo Hu; Gongke Zhou; Yingzhen Kong
Journal:  Plant Mol Biol       Date:  2019-02-01       Impact factor: 4.076

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