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不规则木质部9突变体在木聚糖木糖基转移酶活性方面存在缺陷。

The irregular xylem9 mutant is deficient in xylan xylosyltransferase activity.

作者信息

Lee Chanhui, O'Neill Malcolm A, Tsumuraya Yoichi, Darvill Alan G, Ye Zheng-Hua

机构信息

Department of Plant Biology, University of Georgia, Athens, GA 30602, USA.

出版信息

Plant Cell Physiol. 2007 Nov;48(11):1624-34. doi: 10.1093/pcp/pcm135. Epub 2007 Oct 15.

Abstract

Xylan is the second most abundant polysaccharide in dicot wood, and thus elucidation of the xylan biosynthetic pathway is required to understand the mechanisms controlling wood formation. Genetic and chemical studies in Arabidopsis have implicated three genes, FRAGILE FIBER8 (FRA8), IRREGULAR XYLEM8 (IRX8) and IRREGULAR XYLEM9 (IRX9), in the biosynthesis of glucuronoxylan (GX), but the biochemical functions of the encoded proteins are not known. In this study, we determined the effect of the fra8, irx8 and irx9 mutations on the activities of xylan xylosyltransferase (XylT) and glucuronyltransferase (GlcAT). We show that microsomes isolated from the stems of wild-type Arabidopsis exhibit XylT and GlcAT activities in the presence of exogenous 1,4-linked beta-d-xylooligomers. Xylooligomers ranging in size from two to six can be used as acceptors by XylT to form xylooligosaccharides with up to 12 xylosyl residues. We provide evidence that the irx9 mutation results in a substantial reduction in XylT activity but has no discernible effect on GlcAT activity. In contrast, neither XylT nor GlcAT activity is affected by fra8 and irx8 mutations. Our results provide biochemical evidence that the irx9 mutation results in a deficiency in xylan XylT activity, thus leading to a defect in the elongation of the xylan backbone.

摘要

木聚糖是双子叶植物木材中含量第二丰富的多糖,因此需要阐明木聚糖生物合成途径,以了解控制木材形成的机制。拟南芥的遗传学和化学研究表明,三个基因,即脆性纤维8(FRA8)、不规则木质部8(IRX8)和不规则木质部9(IRX9)参与了葡糖醛酸木聚糖(GX)的生物合成,但编码蛋白的生化功能尚不清楚。在本研究中,我们确定了fra8、irx8和irx9突变对木聚糖木糖基转移酶(XylT)和葡糖醛酸基转移酶(GlcAT)活性的影响。我们发现,从野生型拟南芥茎中分离的微粒体在外源1,4-连接的β-d-木寡糖存在下表现出XylT和GlcAT活性。大小从二到六个木糖残基的木寡糖可以被XylT用作受体,以形成含有多达12个木糖基残基的木寡糖。我们提供的证据表明,irx9突变导致XylT活性大幅降低,但对GlcAT活性没有明显影响。相比之下,fra8和irx8突变对XylT和GlcAT活性均无影响。我们的结果提供了生化证据,表明irx9突变导致木聚糖XylT活性缺乏,从而导致木聚糖主链延伸缺陷。

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