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对胡萝卜(Daucus carota L.)中蔗糖合酶的反义抑制影响生长而非蔗糖分配。

Antisense repression of sucrose synthase in carrot (Daucus carota L.) affects growth rather than sucrose partitioning.

作者信息

Tang G Q, Sturm A

机构信息

Friedrich Miescher-Institut, Basel, Switzerland.

出版信息

Plant Mol Biol. 1999 Nov;41(4):465-79. doi: 10.1023/a:1006327606696.

Abstract

To unravel the roles of sucrose synthase in carrot, we reduced its activity in transgenic carrot plants by an antisense approach. For this purpose, the cDNA for the main form of carrot sucrose synthase was expressed in antisense orientation behind the 35S promoter of cauliflower mosaic virus. In independent antisense plant lines grown in soil, sucrose synthase activity was reduced in tap roots but not in leaves. In the sink organs, sucrose utilization was markedly decreased and higher levels of sucrose but lower levels of UDP-glucose, glucose, fructose, starch and cellulose were found. The phenotype of the antisense plants clearly differed from that of control plants. Both leaves and roots were markedly smaller, and the antisense line with the lowest sucrose synthase activity also developed the smallest plants. In most of the plant lines, the leaf-to-root dry weight ratios were not changed, suggesting that sucrose synthase in carrot is a major determinant of plant growth rather than of sucrose partitioning. In contrast to the acid invertases, which are critical for partitioning of assimilated carbon between source leaves and tap roots (Tang et al., Plant Cell 11: 177-189 (1999)), sucrose synthase appears to be the main sucrose-cleaving activity, feeding sucrose into metabolism.

摘要

为了阐明蔗糖合酶在胡萝卜中的作用,我们采用反义技术降低了转基因胡萝卜植株中该酶的活性。为此,将胡萝卜蔗糖合酶主要形式的cDNA以反义方向在花椰菜花叶病毒的35S启动子后进行表达。在土壤中生长的独立反义植株系中,主根中的蔗糖合酶活性降低,但叶片中未降低。在库器官中,蔗糖利用显著减少,且发现蔗糖水平升高,但UDP - 葡萄糖、葡萄糖、果糖、淀粉和纤维素水平降低。反义植株的表型与对照植株明显不同。叶片和根都明显较小,蔗糖合酶活性最低的反义株系所发育出的植株也最小。在大多数植株系中,叶与根的干重比未发生变化,这表明胡萝卜中的蔗糖合酶是植物生长的主要决定因素,而非蔗糖分配的主要决定因素。与酸性转化酶不同,酸性转化酶对于源叶和主根之间同化碳的分配至关重要(Tang等人,《植物细胞》11: 177 - 189 (1999)),蔗糖合酶似乎是主要的蔗糖裂解活性酶,将蔗糖输入代谢过程。

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