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Shade-induced stem elongation in rice seedlings:Implication of tissue-specific phytohormone regulation 被引量:4

Shade-induced stem elongation in rice seedlings:Implication of tissue-specific phytohormone regulation
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摘要 Summary A better understanding of shade avoidance syndrome (SAS) is an urgent need because of its effect on energy reallocation. Leverage-related mechanism in crops is of potential economic interest for agricultural applications. Here we report the SAS phenotype at tissue level rice seedlings. Tissue-specific RNA-sequencing indicates auxin plays different roles between coleoptile and the first leaf. Phenotypes of wild type treated by gibberellin and brassinosteroid biosynthesis inhibitors and of related mutants suggest these two hormones positively regulate SAS. Our work reveals the diversity of hormone responses in different organs and different species in shade conditions. Summary A better understanding of shade avoidance syndrome (SAS) is an urgent need because of its effect on energy reallocation. Leverage-related mechanism in crops is of potential economic interest for agricultural applications. Here we report the SAS phenotype at tissue level rice seedlings. Tissue-specific RNA-sequencing indicates auxin plays different roles between coleoptile and the first leaf. Phenotypes of wild type treated by gibberellin and brassinosteroid biosynthesis inhibitors and of related mutants suggest these two hormones positively regulate SAS. Our work reveals the diversity of hormone responses in different organs and different species in shade conditions.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2016年第7期614-617,共4页 植物学报(英文版)
基金 supported by National Natural Science Foundation of China Grants 31470374 the Shanghai Pujiang Talent Program (14PJ1400800) a start-up grant from Fudan University to L.L
关键词 AUXIN BR GA rice seedlings shade avoidance response Auxin BR GA rice seedlings shade avoidance response
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参考文献12

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