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番茄糖分分配影响蛋白(SPA)的沉默通过叶片糖代谢的转变改变库强。

Silencing of the tomato sugar partitioning affecting protein (SPA) modifies sink strength through a shift in leaf sugar metabolism.

作者信息

Bermúdez Luisa, de Godoy Fabiana, Baldet Pierre, Demarco Diego, Osorio Sonia, Quadrana Leandro, Almeida Juliana, Asis Ramón, Gibon Yves, Fernie Alisdair R, Rossi Magdalena, Carrari Fernando

机构信息

Departamento de Botânica, Instituto de Biociências, Universidade de São Paulo, Rua do Matão, 277, São Paulo, 05508-900, SP, Brazil; Instituto de Biotecnología, Instituto Nacional de Tecnología Agropecuaria (IB-INTA), PO Box 25, Castelar, B1712WAA, Argentina.

出版信息

Plant J. 2014 Mar;77(5):676-87. doi: 10.1111/tpj.12418. Epub 2014 Feb 6.

Abstract

Limitations in our understanding about the mechanisms that underlie source-sink assimilate partitioning are increasingly becoming a major hurdle for crop yield enhancement via metabolic engineering. By means of a comprehensive approach, this work reports the functional characterization of a DnaJ chaperone related-protein (named as SPA; sugar partition-affecting) that is involved in assimilate partitioning in tomato plants. SPA protein was found to be targeted to the chloroplast thylakoid membranes. SPA-RNAi tomato plants produced more and heavier fruits compared with controls, thus resulting in a considerable increment in harvest index. The transgenic plants also displayed increased pigment levels and reduced sucrose, glucose and fructose contents in leaves. Detailed metabolic and enzymatic activities analyses showed that sugar phosphate intermediates were increased while the activity of phosphoglucomutase, sugar kinases and invertases was reduced in the photosynthetic organs of the silenced plants. These changes would be anticipated to promote carbon export from foliar tissues. The combined results suggested that the tomato SPA protein plays an important role in plastid metabolism and mediates the source-sink relationships by affecting the rate of carbon translocation to fruits.

摘要

我们对源 - 库同化物分配机制的理解存在局限性,这日益成为通过代谢工程提高作物产量的主要障碍。通过综合方法,这项工作报道了一种与DnaJ伴侣相关的蛋白(命名为SPA;糖分配影响蛋白)在番茄植株同化物分配中的功能特性。发现SPA蛋白定位于叶绿体类囊体膜。与对照相比,SPA - RNAi番茄植株结出的果实更多、更重,从而使收获指数显著提高。转基因植株叶片中的色素水平也有所增加,蔗糖、葡萄糖和果糖含量降低。详细的代谢和酶活性分析表明,沉默植株光合器官中的糖磷酸中间体增加,而磷酸葡萄糖变位酶、糖激酶和转化酶的活性降低。预计这些变化将促进碳从叶组织输出。综合结果表明,番茄SPA蛋白在质体代谢中起重要作用,并通过影响碳向果实的转运速率来介导源 - 库关系。

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