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   Natural Variation Identifies ICARUS1,a Universal Gene Required for Cell Proliferation and Growth at High Temperatures in Arabidopsis thaliana  
   
نویسنده zhu w. ,ausin i. ,seleznev a. ,méndez-vigo b. ,picó f.x. ,sureshkumar s. ,sundaramoorthi v. ,bulach d. ,powell d. ,seemann t. ,alonso-blanco c. ,balasubramanian s.
منبع plos genetics - 2015 - دوره : 11 - شماره : 5
چکیده    Plants are highly sensitive to environmental changes and even small variations in ambient temperature have severe consequences on their growth and development. temperature affects multiple aspects of plant development,but the processes and mechanisms underlying thermo-sensitive growth responses are mostly unknown. here we exploit natural variation in arabidopsis thaliana to identify and characterize novel components and processes mediating thermo-sensitive growth responses in plants. phenotypic screening of wild accessions identified several strains displaying pleiotropic growth defects,at cellular and organism levels,specifically at high ambient temperatures. positional cloning and characterization of the underlying gene revealed that icarus1 (ica1),which encodes a protein of the trnahis guanylyl transferase (thg1) superfamily,is required for plant growth at high temperatures. transcriptome and gene marker analyses together with dna content measurements show that ica1 loss-of-function results in down regulation of cell cycle associated genes at high temperatures,which is linked with a block in g2/m transition and endoreduplication. in addition,plants with mutations in ica1 show enhanced sensitivity to dna damage. characterization of additional strains that carry lesions in ica1,but display normal growth,shows that alternative splicing is likely to alleviate the deleterious effects of some natural mutations. furthermore,analyses of worldwide and regional collections of natural accessions indicate that ica1 loss-of-function has arisen several times independently,and that these occur at high frequency in some local populations. overall our results suggest that ica1-mediated-modulation of fundamental processes such as trnahis maturation,modify plant growth responses to temperature changes in a quantitative and reversible manner,in natural populations. © 2015 zhu et al.
آدرس school of biological sciences,monash universityvic,australia,max-planck institute for developmental biology,tübingen, Germany, centro nacional de biotecnología (cnb),consejo superior de investigaciones científicas (csic),madrid,spain,basic forestry and proteomics center,fujian agriculture and forestry university,fuzhou, China, school of biological sciences,monash universityvic, Australia, centro nacional de biotecnología (cnb),consejo superior de investigaciones científicas (csic),madrid, Spain, estación biológica de doñana (ebd),consejo superior de investigaciones científicas (csic),seville, Spain, school of biological sciences,monash universityvic, Australia, school of biological sciences,monash universityvic, Australia, victorian bioinformatics consortium,monash universityvic, Australia, victorian bioinformatics consortium,monash universityvic, Australia, victorian bioinformatics consortium,monash universityvic, Australia, centro nacional de biotecnología (cnb),consejo superior de investigaciones científicas (csic),madrid, Spain, school of biological sciences,monash universityvic, Australia
 
     
   
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