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与淀粉生物合成相关的大部分二磷酸腺苷葡萄糖(ADP-葡萄糖)在源叶的叶绿体之外产生。

Most of ADP x glucose linked to starch biosynthesis occurs outside the chloroplast in source leaves.

作者信息

Baroja-Fernández Edurne, Muñoz Francisco José, Zandueta-Criado Aitor, Morán-Zorzano María Teresa, Viale Alejandro Miguel, Alonso-Casajús Nora, Pozueta-Romero Javier

机构信息

Agrobioteknologia eta Natura Baliabideetako Instituta, Nafarroako Unibertsitate, Publikoa and Consejo Superior de Investigaciones Científicas, Mutiloako Etorbidea Zenbaki/Gabe, Mutiloabeti 31192, Nafarroa, Spain.

出版信息

Proc Natl Acad Sci U S A. 2004 Aug 31;101(35):13080-5. doi: 10.1073/pnas.0402883101. Epub 2004 Aug 23.

Abstract

Sucrose and starch are end products of two segregated gluconeogenic pathways, and their production takes place in the cytosol and chloroplast of green leaves, respectively. According to this view, the plastidial ADP.glucose (ADPG) pyrophosphorylase (AGP) is the sole enzyme catalyzing the synthesis of the starch precursor molecule ADPG. However, a growing body of evidences indicates that starch formation involves the import of cytosolic ADPG to the chloroplast. This evidence is consistent with the idea that synthesis of the ADPG linked to starch biosynthesis takes place in the cytosol by means of sucrose synthase, whereas AGP channels the glucose units derived from the starch breakdown. To test this hypothesis, we first investigated the subcellular localization of ADPG. Toward this end, we constructed transgenic potato plants that expressed the ADPG-cleaving adenosine diphosphate sugar pyrophosphatase (ASPP) from Escherichia coli either in the chloroplast or in the cytosol. Source leaves from plants expressing ASPP in the chloroplast exhibited reduced starch and normal ADPG content as compared with control plants. Most importantly however, leaves from plants expressing ASPP in the cytosol showed a large reduction of the levels of both ADPG and starch, whereas hexose phosphates increased as compared with control plants. No pleiotropic changes in photosynthetic parameters and maximum catalytic activities of enzymes closely linked to starch and sucrose metabolism could be detected in the leaves expressing ASPP in the cytosol. The overall results show that, essentially similar to cereal endosperms, most of the ADPG linked to starch biosynthesis in source leaves occurs in the cytosol.

摘要

蔗糖和淀粉是两条独立的糖异生途径的终产物,它们分别在绿叶的细胞质和叶绿体中产生。根据这一观点,质体中的ADP - 葡萄糖焦磷酸化酶(AGP)是催化淀粉前体分子ADP - 葡萄糖合成的唯一酶。然而,越来越多的证据表明,淀粉的形成涉及细胞质中的ADP - 葡萄糖向叶绿体的转运。这一证据与以下观点一致:与淀粉生物合成相关的ADP - 葡萄糖的合成是通过蔗糖合酶在细胞质中进行的,而AGP则将来自淀粉分解的葡萄糖单位进行转运。为了验证这一假设,我们首先研究了ADP - 葡萄糖的亚细胞定位。为此,我们构建了转基因马铃薯植株,使其在叶绿体或细胞质中表达来自大肠杆菌的ADP - 葡萄糖裂解型二磷酸腺苷糖焦磷酸酶(ASPP)。与对照植株相比,在叶绿体中表达ASPP的植株的源叶淀粉含量降低,而ADP - 葡萄糖含量正常。然而,最重要的是,在细胞质中表达ASPP的植株的叶片中,ADP - 葡萄糖和淀粉的水平均大幅降低,而与对照植株相比,磷酸己糖含量增加。在细胞质中表达ASPP的叶片中,未检测到光合参数以及与淀粉和蔗糖代谢密切相关的酶的最大催化活性发生多效性变化。总体结果表明,与谷物胚乳基本相似,源叶中与淀粉生物合成相关的大部分ADP - 葡萄糖存在于细胞质中。

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An Overview of Sucrose Synthases in Plants.植物中蔗糖合酶概述
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