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光照对番茄叶片中的抗坏血酸含量和抗坏血酸相关基因表达的影响大于对果实的影响。

Light affects ascorbate content and ascorbate-related gene expression in tomato leaves more than in fruits.

机构信息

INRA UR 1115 Plantes et Systèmes de Culture Horticoles, Domaine St Paul, Site Agroparc, 84914, Avignon, France.

出版信息

Planta. 2012 Jan;235(1):153-63. doi: 10.1007/s00425-011-1493-x. Epub 2011 Aug 23.

Abstract

Little is known about the light regulation of vitamin C synthesis in fruits. In contrast, previous studies in leaves revealed that VTC2 (coding for GDP-L: -galactose phosphorylase) was one of the key genes up-regulated by light in leaves. Our objective was to determine how the expression of ascorbate (AsA) synthesis genes in tomato (Solanum lycopersicum) was modified according to light irradiance in both leaves and fruits. Seven days of shading strongly decreased total ascorbate (reduced and oxidized form) content in leaves (50%) and to a lesser extent in fruits (10%). Among the last six steps of AsA biosynthesis, only two genes, VTC2 and GPP1 (one of the two unigenes coding for L: -galactose-1-P phosphatase in tomato), were down-regulated by long-term shading in red ripe fruits, compared to seven genes regulated in leaves. This underlines that light affects AsA-related gene expression more in leaves than in ripening fruits. Moreover, this study reveals strong daily changes in transcript levels of enzymes of the AsA biosynthetic pathway in leaves (11 of the 12 studied genes showed significant changes in their expression pattern). Among those genes, we found that diurnal variation in transcript levels of VTC2 and GME1 correlated to leaf AsA content measured 8 h later. This study provides a new hypothesis on the role of GME1 in addition to VTC2 in light-regulated AsA biosynthesis.

摘要

关于维生素 C 合成在果实中的光调控知之甚少。相比之下,先前在叶片中的研究表明 VTC2(编码 GDP-L:半乳糖磷酸化酶)是叶片中受光上调的关键基因之一。我们的目标是确定番茄(Solanum lycopersicum)中抗坏血酸(AsA)合成基因的表达如何根据叶片和果实中的光照强度而改变。7 天的遮荫强烈降低了叶片(50%)和果实(10%)中总抗坏血酸(还原和氧化形式)的含量。在 AsA 生物合成的最后六个步骤中,只有 VTC2 和 GPP1(编码番茄 L:半乳糖-1-P 磷酸酶的两个基因之一)在红熟果实中因长期遮荫而下调,而在叶片中则有六个基因被下调。这强调了光对 AsA 相关基因表达的影响在叶片中比在成熟果实中更为明显。此外,本研究揭示了叶片中 AsA 生物合成途径的酶的转录水平在一天中发生强烈变化(在所研究的 12 个基因中,有 11 个基因的表达模式发生了显著变化)。在这些基因中,我们发现 VTC2 和 GME1 的转录水平的昼夜变化与 8 小时后测量的叶片 AsA 含量相关。本研究为 GME1 在光调节 AsA 生物合成中的作用提供了一个新的假说,除了 VTC2 之外。

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