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反义抑制转基因甜瓜中的蔗糖磷酸合成酶会改变植物的生长和果实发育。

Antisense repression of sucrose phosphate synthase in transgenic muskmelon alters plant growth and fruit development.

机构信息

College of Horticulture Science and Engineering, State Key Laboratory of Crop Biology, Shandong Agricultural University, Tai'an, Shandong 271018, China.

出版信息

Biochem Biophys Res Commun. 2010 Mar 12;393(3):365-70. doi: 10.1016/j.bbrc.2010.01.124. Epub 2010 Feb 4.

Abstract

To unravel the roles of sucrose phosphate synthase (SPS) in muskmelon (Cucumis melo L.), we reduced its activity in transgenic muskmelon plants by an antisense approach. For this purpose, an 830 bp cDNA fragment of muskmelon sucrose phosphate synthase was expressed in antisense orientation behind the 35S promoter of the cauliflower mosaic virus. The phenotype of the antisense plants clearly differed from that of control plants. The transgenic plant leaves were markedly smaller, and the plant height and stem diameter were obviously shorter and thinner. Transmission electron microscope observation revealed that the membrane degradation of chloroplast happened in transgenic leaves and the numbers of grana and grana lamella in the chloroplast were significantly less, suggesting that the slow growth and weaker phenotype of transgenic plants may be due to the damage of the chloroplast ultrastructure, which in turn results in the decrease of the net photosynthetic rate. The sucrose concentration and levels of sucrose phosphate synthase decreased in transgenic mature fruit, and the fruit size was smaller than the control fruit. Together, our results suggest that sucrose phosphate synthase may play an important role in regulating the muskmelon plant growth and fruit development.

摘要

为了阐明蔗糖磷酸合成酶(SPS)在甜瓜(Cucumis melo L.)中的作用,我们采用反义方法降低了转基因甜瓜植物中 SPS 的活性。为此,我们在花椰菜花叶病毒 35S 启动子的控制下,反义表达了 830bp 的甜瓜蔗糖磷酸合成酶 cDNA 片段。反义植物的表型明显不同于对照植物。转基因植物叶片明显变小,株高和茎径明显变细。透射电子显微镜观察显示,叶绿体的膜降解发生在转基因叶片中,叶绿体中的类囊体和类囊体片层数量明显减少,这表明转基因植物生长缓慢和表型较弱可能是由于叶绿体超微结构的损伤,从而导致净光合速率的降低。在转基因成熟果实中,蔗糖浓度和蔗糖磷酸合成酶水平降低,果实大小小于对照果实。总之,我们的结果表明,蔗糖磷酸合成酶可能在调节甜瓜植物生长和果实发育中起重要作用。

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