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番茄(Lycopersicon esculentum)和蔗糖积累型多毛番茄(Lycopersicon hirsutum)发育果实中的蔗糖吸收、转化酶定位及基因表达

Sucrose uptake, invertase localization and gene expression in developing fruit of Lycopersicon esculentum and the sucrose-accumulating Lycopersicon hirsutum.

作者信息

Miron Dafna, Petreikov Marina, Carmi Nir, Shen Shmuel, Levin Ilan, Granot David, Zamski Eliezer, Schaffer Arthur A

机构信息

Institute of Field and Garden Crops, Volcani Center, Bet Dagan, 50250, Israel Department of Economic Botany, Hebrew University of Jerusalem, Rehovot, Israel.

出版信息

Physiol Plant. 2002 May;115(1):35-47. doi: 10.1034/j.1399-3054.2002.1150104.x.

DOI:10.1034/j.1399-3054.2002.1150104.x
PMID:12010465
Abstract

By using immunolocalization and differential extraction methods we show that only apoplastic invertase, but not vacuolar invertase, was present in the mature, sucrose-accumulating L. hirsutum pericarp. In contrast, in the hexose-accumulating L. esculentum fruit, both the apoplastic and vacuolar invertase activities and protein content increase in the mature fruit. Quantitative expression studies of the soluble invertase gene (TIV1) and the apoplastic invertase genes (LINs) showed that only TIV1 gene expression could account for the species and developmental differences of both soluble and insoluble enzyme activity of the pericarp. The expression of the LIN genes encoding for apoplastic tomato invertases was unrelated to the differences in bound enzyme activity and could not account for the rise in bound invertase activity in the mature L. esculentum fruit. Evidence is presented that the bound invertase activity of tomato fruit is also the TIV1 gene product. The presence of apoplastic invertase in the mature sucrose-accumulating L. hirsutum fruit suggests a hydrolysis-resynthesis mechanism of sucrose uptake. In order to test this hypothesis, we studied short- and long-term uptakes of asymmetrically labelled 3H-fructosyl-sucrose accompanied by compartmental analysis of the sugars in attached whole fruits of L. hirsutum and L. esculentum. The results indicate that hydrolysis-resynthesis is slow in the sucrose-accumulating fruit but is not an integral part of an uptake and compartmentation mechanism.

摘要

通过使用免疫定位和差异提取方法,我们发现,在成熟的、积累蔗糖的陆地棉果皮中仅存在质外体转化酶,而液泡转化酶不存在。相反,在积累己糖的番茄果实中,成熟果实中的质外体和液泡转化酶活性及蛋白质含量均增加。可溶性转化酶基因(TIV1)和质外体转化酶基因(LINs)的定量表达研究表明,只有TIV1基因表达能够解释果皮中可溶性和不溶性酶活性的物种及发育差异。编码番茄质外体转化酶的LIN基因的表达与结合酶活性的差异无关,也无法解释成熟番茄果实中结合转化酶活性的升高。有证据表明,番茄果实中的结合转化酶活性也是TIV1基因的产物。成熟的积累蔗糖的陆地棉果实中质外体转化酶的存在表明存在蔗糖吸收的水解-再合成机制。为了验证这一假设,我们研究了不对称标记的3H-果糖基蔗糖的短期和长期吸收,并对陆地棉和番茄附着的完整果实中的糖分进行了区室分析。结果表明,水解-再合成在积累蔗糖的果实中进行缓慢,但不是吸收和区室化机制的一个组成部分。

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