Literature DB >> 29177846

OPEN GLUME1: a key enzyme reducing the precursor of JA, participates in carbohydrate transport of lodicules during anthesis in rice.

Xiaohui Li1, Yihua Wang1, Erchao Duan1, Qi Qi2, Kunneng Zhou1, Qiuyun Lin1, Di Wang1, Yunlong Wang1, Wuhua Long1, Zhigang Zhao1, Zhijun Cheng3, Cailin Lei3, Xin Zhang3, Xiuping Guo3, Jiulin Wang3, Chuanyin Wu3, Ling Jiang1, Chunming Wang1, Jianmin Wan4,5.   

Abstract

KEY MESSAGE: OG1 is involved in JA-regulated anthesis by modulating carbohydrate transport of lodicules in rice. Flowering plants have evolved a sophisticated regulatory network to coordinate anthesis and maximize reproductive success. In addition to various environmental conditions, the plant hormone jasmonic acid and its derivatives (JAs) are involved in anthesis. However, the underlying mechanism remains largely unexplored. Here, we report a JA-defective mutant in rice (Oryza sativa), namely open glume 1, which has dysfunctional lodicules that lead to open glumes following anthesis. Map-based cloning and subsequent complementation tests confirmed that OG1 encodes a peroxisome-localized 12-oxo-phytodienoic acid reductase-a key enzyme that reduces the precursor of JA. Loss-of-function of OG1 resulted in almost no JA accumulation. Exogenous JA treatment completely rescued the defects caused by the og1 mutation. Further studies revealed that intracellular metabolism was disrupted in the lodicules of og1 mutant. At the mature plant stage, most seeds of the mutant were malformed with significantly reduced starch content. We speculate that JA or JA signaling mediates the carbohydrate transport of lodicules during anthesis, and signal the onset of cell degradation in lodicules after anthesis. We conclude that the OPEN GLUME 1 gene that produces a key enzyme involved in reducing the precursor of JA in JA biosynthesis and is involved in carbohydrate transport underlying normal lodicule function during anthesis in rice.

Entities:  

Keywords:  Anthesis; Carbohydrate; Jasmonic acid; Lodicule; OPEN GLUME1; Oryza sativa

Mesh:

Substances:

Year:  2017        PMID: 29177846     DOI: 10.1007/s00299-017-2232-y

Source DB:  PubMed          Journal:  Plant Cell Rep        ISSN: 0721-7714            Impact factor:   4.570


  57 in total

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