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Effect of Xyloglucan Oligosaccharides on Growth Viscoelastic Properties and Long-Term Extension of Pea Shoots.

机译:木葡聚糖寡糖对豌豆芽生长粘弹性和长期延伸的影响。

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摘要

The growth-promoting effect of xyloglucan-derived oligosaccharides was investigated using a bioassay with entire pea (Pisum sativum L., var Alaska) shoots. After a 24-h incubation period at 25[deg]C, xyloglucan oligosaccharide (XGO) solutions with concentrations of 10-6 M notably increased the growth rate of pea shoots, whereas the same oligosaccharides at 10-7 M were less effective. To investigate the possible correlation between growth rate changes in the XGO-treated shoots and changes in the wall mechanical properties of their growing regions (third internodes), we used a short-term creep assay. The promotion of elongation by XGOs was reflected in an enhancement of the viscoelasticity of the growing regions of the shoots. To show whether this effect on wall viscoelastic properties was the cause or a consequence of their growth promotion, we tested the effect of XGOs on the long-term extension of isolated cell walls. We characterized an acid-induced extension in isolated cell walls from pea shoots that was not inhibited by preincubation in neutral buffers. Exogenously added XGOs did not alter the pattern of pea segment extension at any pH tested, indicating that XGOs have no direct effect on cell wall viscoelasticity. Finally, preincubation of pea segments in neutral buffers with XGOs enhanced their capacity to extend under acidic conditions. This finding suggests that XGOs at a neutral pH can act via transglycosylation, weakening the wall matrix and making the wall more responsive to other mechanisms of acid-induced extension as an expansin-mediated extension.
机译:使用整个豌豆(Pisum sativum L.,var Alaska)芽的生物测定法研究了木葡聚糖衍生的低聚糖的促生长作用。在25℃温育24小时后,浓度为10-6M的木葡聚糖寡糖(XGO)溶液显着增加了豌豆芽的生长速率,而在10-7M的相同寡糖效果较差。为了研究XGO处理的枝条的生长速率变化与其生长区域(第三个节间)的壁机械性能变化之间的可能相关性,我们使用了短期蠕变试验。 XGOs促进了伸长,这反映在芽的生长区域的粘弹性的增强上。为了显示这种对壁粘弹性特性的影响是促进其生长的原因还是其结果,我们测试了XGOs对离体细胞壁长期扩展的影响。我们表征了酸诱导的豌豆芽分离细胞壁中的延伸,该延伸不受中性缓冲液中预孵育的抑制。在任何测试的pH下,外源添加的XGOs都不会改变豌豆链段延伸的模式,这表明XGOs对细胞壁粘弹性没有直接影响。最后,豌豆片段在XGOs中性缓冲液中的预孵育增强了它们在酸性条件下延伸的能力。这一发现表明,中性pH的XGO可以通过转糖基化作用,削弱壁基质,并使壁对其他由酸诱导的延伸(如弹性蛋白介导的延伸)的机制更加敏感。

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