| Literature DB >> 31321495 |
Xinyang Xu1, Yulong Ren2, Chunming Wang1, Huan Zhang1, Fan Wang1, Jun Chen2, Xi Liu1, Tianhui Zheng1, Maohong Cai1, Zhaoqiong Zeng1, Liang Zhou1, Shanshan Zhu2, Weijie Tang1, Jiulin Wang3, Xiuping Guo2, Ling Jiang1, Saihua Chen4,5, Jianmin Wan6,7.
Abstract
KEY MESSAGE: OsVIN2, a vacuolar invertase, affects grain size and yield by altering sugar composition, transport, and starch accumulation in rice. Grain size, a major determinant of rice yield, is influenced by many developmental and environmental factors. Sugar metabolism plays vital roles in plant development. However, the way in which sugar metabolism affects rice grain size remains largely elusive. In this study, we characterized the small grain-size rice mutant sgs1. Histological analyses showed that reduced spikelet hull and endosperm size results from decreased cell size rather than cell number. Map-based cloning and complementation tests revealed that a DaiZ7 transposon insertion in a vacuolar invertase gene OsVIN2 is responsible for the mutant phenotype. Subcellular distribution and biochemical analysis indicated that OsVIN2 is located in the vacuolar lumen, and that its sucrose hydrolysis activity is maintained under acidic conditions. Furthermore, an altered sugar content with increased sucrose and decreased hexose levels, as well as changes in invertase and sucrose synthase activities, sugar transport gene expression, and starch constitution in sgs1 implies that OsVIN2 affects sucrose metabolism, including sugar composition, transport, and conversion from the source to the sink organs. Collectively, OsVIN2 is involved in sugar metabolism, and thus regulates grain size; our findings provide insights into grain development and also suggest a potential strategy to improve grain quality and yield in rice.Entities:
Keywords: Acid invertase; Grain size; OsVIN2; Rice (Oryza sativa); Sugar metabolism; Yield improvement
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Year: 2019 PMID: 31321495 DOI: 10.1007/s00299-019-02443-9
Source DB: PubMed Journal: Plant Cell Rep ISSN: 0721-7714 Impact factor: 4.570