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蔗糖转运蛋白LeSUT1和LeSUT2的抑制以不同方式影响番茄果实发育。

Sucrose transporter LeSUT1 and LeSUT2 inhibition affects tomato fruit development in different ways.

作者信息

Hackel Aleksandra, Schauer Nicolas, Carrari Fernando, Fernie Alisdair R, Grimm Bernhard, Kühn Christina

机构信息

Biology Department, Plant Physiology, Humboldt University of Berlin, Philippstr. 13, 10115 Berlin, Germany.

出版信息

Plant J. 2006 Jan;45(2):180-92. doi: 10.1111/j.1365-313X.2005.02572.x.

Abstract

Sucrose transporters of higher plants belong to a large gene family. At least four different sucrose transporters are known in Solanaceous plants, although their function remains to be elucidated in detail. The isolation of LeSUT1 and LeSUT2from Lycopersicon esculentum has been described earlier. Whereas SUT1 is supposed to be the main phloem loader of sucrose in Solanaceae, the role of SUT2 remains a matter of debate. A transgenic approach was taken to evaluate the potential functions of SUT2/SUC3 proteins in sucrose transport or sensing. Expression of LeSUT1 and LeSUT2 was inhibited independently in transgenic tomato plants, using the antisense technique, in order to analyse their specific functions. Although the phloem-specific inhibition of LeSUT1 antisense plants showed a phenotype consistent with an essential role in phloem loading, constitutive LeSUT2 antisense inhibition exclusively affected tomato fruit and seed development. Neither LeSUT1, nor the LeSUT2 antisense plants were able to produce normal tomato fruits; however, it is likely that independent mechanisms underlie these phenomena. While phloem loading was blocked in LeSUT1 antisense plants, the fertility of fruits was reduced in LeSUT2 antisense plants. A detailed physiological analysis of these plants established a role for SUT2 in pollen tube growth and thus assigned a physiological role for SUT2.

摘要

高等植物的蔗糖转运蛋白属于一个庞大的基因家族。在茄科植物中已知至少有四种不同的蔗糖转运蛋白,尽管它们的功能仍有待详细阐明。之前已经描述了从番茄中分离出LeSUT1和LeSUT2的过程。虽然SUT1被认为是茄科中蔗糖的主要韧皮部装载蛋白,但SUT2的作用仍存在争议。采用转基因方法来评估SUT2/SUC3蛋白在蔗糖运输或感知中的潜在功能。利用反义技术在转基因番茄植株中分别抑制LeSUT1和LeSUT2的表达,以分析它们的特定功能。虽然LeSUT1反义植株的韧皮部特异性抑制表现出与韧皮部装载中的重要作用一致的表型,但组成型LeSUT2反义抑制仅影响番茄果实和种子的发育。LeSUT1反义植株和LeSUT2反义植株都不能产生正常的番茄果实;然而,这些现象背后可能存在独立的机制。LeSUT1反义植株中韧皮部装载被阻断,而LeSUT2反义植株中果实的育性降低。对这些植株进行的详细生理分析确定了SUT2在花粉管生长中的作用,从而赋予了SUT2一个生理功能。

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