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将Wx转基因导入水稻wx突变体可产生高直链淀粉水稻和低直链淀粉水稻。

Introduction of Wx transgene into rice wx mutants leads to both high- and low-amylose rice.

作者信息

Itoh Kimiko, Ozaki Hiroko, Okada Kyoko, Hori Hidetaka, Takeda Yasuhito, Mitsui Toshiaki

机构信息

Faculty of Agriculture, Niigata University, 8050, Ikarashi 2, Niigata, 950-2181 Japan.

出版信息

Plant Cell Physiol. 2003 May;44(5):473-80. doi: 10.1093/pcp/pcg068.

Abstract

The Waxy (Wx) gene encodes a granule-bound starch synthase (GBSS) that plays a key role in the amylose synthesis of rice and other plant species. Two functional Wx alleles of rice exist: Wx(a), which produces a large amount of amylose, and Wx(b), which produces a smaller amount of amylose because of the mutation at the 5' splice site of intron 1. Wx(b) is largely distributed in Japonica cultivars, and high amylose cultivars do not exist in Japonica cultivars. We introduced the cloned Wx(a) cDNA into null-mutant Japonica rice (wx). The amylose contents of these transgenic plants were 6-11% higher than that of the original cultivar, Labelle, which carries the Wx(a) allele, although the levels of the Wx protein in the transgenic rice were equal to those of cv. Labelle. We also observed a gene-dosage effect of the Wx(a) transgene on Wx protein expression, but a smaller dosage effect was observed in amylose production with over 40% of amylose content in transgenic rice. Moreover, one transgenic line carrying eleven copies of the transgene showed low levels of Wx expression and amylose in the endosperm. This suggested that the integration of excessive copies of the transgene might lead to gene silencing.

摘要

蜡质(Wx)基因编码一种颗粒结合型淀粉合成酶(GBSS),该酶在水稻和其他植物物种的直链淀粉合成中起关键作用。水稻存在两个功能性Wx等位基因:Wx(a),可产生大量直链淀粉;Wx(b),由于内含子1的5'剪接位点发生突变,产生的直链淀粉量较少。Wx(b)主要分布在粳稻品种中,粳稻品种中不存在高直链淀粉含量的品种。我们将克隆的Wx(a) cDNA导入无突变的粳稻(wx)中。这些转基因植株的直链淀粉含量比携带Wx(a)等位基因的原始品种Labelle高6%-11%,尽管转基因水稻中Wx蛋白的水平与Labelle品种相当。我们还观察到Wx(a)转基因对Wx蛋白表达的基因剂量效应,但在转基因水稻直链淀粉含量超过40%时,在直链淀粉产生方面观察到较小的剂量效应。此外,一个携带11个转基因拷贝的转基因株系在胚乳中显示出低水平的Wx表达和直链淀粉。这表明过量转基因拷贝的整合可能导致基因沉默。

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