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Roles of the fructans from leaf sheaths and from the elongating leaf bases in the regrowth following defoliation of Lolium perenne L.

机译:多年生黑麦草(Lolium perenne L)脱叶后,来自叶鞘和伸长的叶基的果聚糖在再生中的作用。

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摘要

The study of carbohydrate metabolism in perennial ryegrass (Lolium perenne L. cv. Bravo) during the first 48 h of regrowth showed that fructans from elongating leaf bases were hydrolysed first whereas fructans in mature leaf sheaths were degraded only after a lag of 1.5 h. In elongating leaf bases, the decline in fructan content occurred not only in the differentiation zone (30–60 mm from the leaf base), but also in the growth zone. Unlike other soluble carbohydrates, the net deposition rate of fructose remained positive and even rose during the first day following defoliation. The activity of fructan exohydrolase (FEH; EC 3.2.1.80) was maximal in the differentiation zone before defoliation and increased in all segments, but peaked in the growth zone after defoliation. These data strongly indicate that fructans stored in the leaf growth zone were hydrolysed and recycled in that zone to sustain the refoliation immediately after defoliation. Despite the depletion of carbohydrates, leaves of defoliated plants elongated at a significantly higher rate than those of undefoliated plants, during the first 10 h of regrowth. This can be partly attributed to the transient increase in water and nitrate deposition rate. The results are discussed in relation to defoliation tolerance.
机译:对常年黑麦草(Lolium perenne L. cv。Bravo)在再生的前48小时内碳水化合物代谢的研究表明,来自伸长的叶基的果聚糖首先被水解,而成熟的叶鞘中的果聚糖仅在滞后1.5 h后才被降解。在伸长的叶基中,果聚糖含量的下降不仅发生在分化区(距叶基30-60 mm),还出现在生长区。与其他可溶性碳水化合物不同,果糖的净沉积率在落叶后的第一天保持正数,甚至上升。果聚糖外切酶(FEH; EC 3.2.1.80)的活性在去叶前的分化区最大,并在所有区段均增加,但在去叶后在生长区达到峰值。这些数据有力地表明,储存在叶片生长区中的果聚糖被水解并在该区域中再循环,以在脱叶后立即维持叶再生长。尽管碳水化合物耗尽,但是在再生的前10小时中,落叶植物的叶子伸长的速率明显高于未落叶植物。这可以部分归因于水和硝酸盐沉积速率的瞬时增加。讨论了有关抗脱层性的结果。

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