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Vacuolar Phosphate Transporter1 (VPT1) may transport sugar in response to soluble sugar status of grape fruits

查看全文 作  者:Qian [1,2]Bai;Xuexue [1]Chen;Zhenzhen [1]Zheng;Jinjing [1]Feng;Yanjun [1]Zhang;Yuanyue [1]Shen;Yun [1]Huang 高影响力作者 机构地区:[1]Beijing Key Laboratory for Agricultural Application and New Technique,College of Plant Science and Technology,Beijing University of Agriculture,Beijing 102206,China;[2]Ministry of Education Key Laboratory of Silviculture and Conservation,College of Forestry,Beijing Forestry University,35 East Qinghua Road,Beijing 100083,China高影响力机构 出  处:《Horticulture Research》索引2023年第10卷第2期,共12页高影响力期刊 基  金:supported by the National Natural Science Foundation of China(Projects 32030100,32102362),Natural Science Foundation of Beijing(6222004);National Key Research and Development Program(2018YFD1000200);Science and Technology Innovation Support Program(BUA-HHXD2022005);Research and Innovation Ability Improvement Program for Young Teachers of Beijing University of Agriculture. 摘  要:Vacuolar Phosphate Transporter1(VPT1)-mediated phosphate uptake in the vacuoles is essential to plant development and fruit ripening.Interestingly,here we find that the VPT1 may transport sugar in response to soluble sugar status of fruits.The VvVPT1 protein isolated from grape(Vitis vinifera)berrieswas tonoplast-localized and contains SPX(Syg1/Pho81/XPR1)and MFS(major facilitator superfamily)domains.Its mRNA expression was significantly increased during fruit ripening and induced by sucrose.Functional analyses based on transient transgenic systems in grape berry showed that VvVPT1 positively regulated berry ripening and significantly affected hexose contents,fruit firmness,and ripening-related gene expression.The VPT1 proteins(Grape VvVPT1,strawberry FaVPT1,and Arabidopsis AtVPT1)all showed low affinity for phosphate verified in yeast system,while they appear different in sugar transport capacity,consistent with fruit sugar status.Thus,our findings reveal a role for VPT1 in fruit ripening,associated to its SPX and MFS domains in direct transport of soluble sugar available into the vacuole,and open potential avenues for genetic improvement in fleshy fruit. 关 键 词:SUGAR FIR TRANSPORT
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