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Arabidopsis irregular xylem8 and irregular xylem9: Implications for the complexity of glucuronoxylan biosynthesis

机译:拟南芥不规则木质部8和不规则木质部9:对葡萄糖醛酸木聚糖生物合成复杂性的影响

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Mutations of Arabidopsis thaliana IRREGULAR XYLEM8 (IRX8) and IRX9 were previously shown to cause a collapsed xylem phenotype and decreases in xylose and cellulose in cell walls. In this study, we characterized IRX8 and IRX9 and performed chemical and structural analyses of glucuronoxylan (GX) from irx8 and irx9 plants. IRX8 and IRX9 are expressed specifically in cells undergoing secondary wall thickening, and their encoded proteins are targeted to the Golgi, where GX is synthesized. 1H-NMR spectroscopy showed that the reducing end of Arabidopsis GX contains the glycosyl sequence 4-beta-D-Xylp(1 -> 4)-beta-D-Xylp-(1 -> 3)-alpha-L-Rhap-(1 -> 2)-alpha-D-GalpA-(1 -> 4)- D-Xylp, which was previously identified in birch ( Betula verrucosa) and spruce ( Picea abies) GX. This indicates that the reducing end structure of GXs is evolutionarily conserved in woody and herbaceous plants. This sequence is more abundant in irx9 GX than in the wild type, whereas irx8 and fragile fiber8 (fra8) plants are nearly devoid of it. The number of GX chains increased and the GX chain length decreased in irx9 plants. Conversely, the number of GX chains decreased and the chain length heterodispersity increased in irx8 and fra8 plants. Our results suggest that IRX9 is required for normal GX elongation and indicate roles for IRX8 and FRA8 in the synthesis of the glycosyl sequence at the GX reducing end.
机译:以前显示出拟南芥不规则XYLEM8(IRX8)和IRX9的突变会导致木质部表型塌陷,并使细胞壁中的木糖和纤维素减少。在这项研究中,我们表征了IRX8和IRX9,并对来自irx8和irx9植物的葡萄糖醛酸木聚糖(GX)进行了化学和结构分析。 IRX8和IRX9在经历二次壁增厚的细胞中特异性表达,其编码的蛋白质靶向合成GX的高尔基体。 1H-NMR光谱表明,拟南芥GX的还原端含有糖基序列4-β-D-Xylp(1→4)-β-D-Xylp-(1→3)-α-L-Rhap-( 1-> 2)-alpha-D-GalpA-(1-> 4)-D-Xylp,先前在桦木(Betula verrucosa)和云杉(Picea abies)GX中鉴定。这表明GXs的还原末端结构在木本和草本植物中是进化保守的。 irx9 GX中的该序列比野生型中的序列丰富,而irx8和脆弱的fibre8(fra8)植物几乎没有该序列。 irx9植物中GX链的数量增加而GX链长度减少。相反,在irx8和fra8植物中,GX链的数量减少,链长的杂散性增加。我们的结果表明,IRX9是正常GX延伸所必需的,并表明IRX8和FRA8在GX还原端糖基序列合成中的作用。

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