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Xyloglucan Oligosaccharides Promote Growth and Activate Cellulase: Evidence for a Role of Cellulase in Cell Expansion

机译:木葡聚糖寡糖促进生长和激活纤维素酶:纤维素酶在细胞扩增中作用的证据。

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摘要

Oligosaccharides produced by the action of fungal cellulase on xyloglucans promoted the elongation of etiolated pea (Pisum sativum L.) stem segments in a straight-growth bioassay designed for the determination of auxins. The oligosaccharides were most active at about 1 micromolar. We tested the relative growth-promoting activities of four HPLC-purified oligosaccharides which shared a common glucose4· xylose3 (XG7) core. The substituted oligosaccharides XG8 (glucose4· xylose3· galactose) and XG9n (glucose4· xylose3· galactose2) were more effective than XG7 itself and XG9 (glucose4· xylose3· galactose· fucose). The same oligosaccharides also promoted the degradation, assayed viscometrically, of xyloglucan by an acidic cellulase from bean (Phaseolus vulgaris L.) leaves. The oligosaccharides were highly active at 10−4 molar, causing up to a fourfold increase in activity, but the effect was still detectable at 1 micromolar. Those oligosaccharides (XG8 and XG9n) which best promoted growth, stimulated cellulase activity to the greatest extent. The oligosaccharides did not stimulate the action of the cellulase in an assay based on the conversion of [3H]xyloglucan to ethanol-soluble fragments. This suggest that the oligosaccharides enhanced the midchain hydrolysis of xyloglucan molecules (which would rapidly reduce the viscosity of the solution), at the expense of cleavage near the termini (which would yield ethanol-soluble products). We suggest that the promotion of midchain xyloglucan cleavage, by loosening the primary cell wall matrix, explains the promotion of growth by the oligosaccharides.
机译:真菌纤维素酶对木葡聚糖的作用所产生的寡糖在用于生长素测定的直线生长生物测定法中促进了黄化豌豆(Pisum sativum L.)茎段的伸长。寡糖的活性最高,约为1微摩尔。我们测试了四个具有相同葡萄糖4·木糖3(XG7)核心的HPLC纯化的寡糖的相对生长促进活性。取代的低聚糖XG8(葡萄糖4·木糖3·半乳糖)和XG9n(葡萄糖4·木糖3·半乳糖2)比XG7本身和XG9(葡萄糖4·木糖3·半乳糖·岩藻糖)更有效。相同的寡糖还促进了用豆类(菜豆)叶上的酸性纤维素酶的粘度法测定的木葡聚糖的降解。寡糖在10 −4 摩尔时具有很高的活性,导致活性增加多达四倍,但在1微摩尔下仍可检测到这种作用。那些最能促进生长的寡糖(XG8和XG9n)最大程度地刺激了纤维素酶的活性。在基于[ 3 H]木葡聚糖向乙醇可溶性片段的转化的分析中,寡糖不刺激纤维素酶的作用。这表明寡糖增强了木葡聚糖分子的中链水解作用(这将迅速降低溶液的粘度),但以在末端附近的裂解为代价(这将产生乙醇可溶的产物)。我们建议通过松散初级细胞壁基质来促进中链木葡聚糖裂解,解释了寡糖对生长的促进作用。

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