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黏液分泌有助于植物在干旱土壤中吸收水分。

Mucilage exudation facilitates root water uptake in dry soils.

作者信息

Ahmed Mutez A, Kroener Eva, Holz Maire, Zarebanadkouki Mohsen, Carminati Andrea

机构信息

Division of Soil Hydrology, Georg-August University of Göttingen, Göttingen 37077, Germany.

出版信息

Funct Plant Biol. 2014 Oct;41(11):1129-1137. doi: 10.1071/FP13330.

Abstract

As plant roots take up water and the soil dries, water depletion is expected to occur in the rhizosphere. However, recent experiments showed that the rhizosphere was wetter than the bulk soil during root water uptake. We hypothesise that the increased water content in the rhizosphere was caused by mucilage exuded by roots. It is probably that the higher water content in the rhizosphere results in higher hydraulic conductivity of the root-soil interface. In this case, mucilage exudation would favour the uptake of water in dry soils. To test this hypothesis, we covered a suction cup, referred to as an artificial root, with mucilage. We placed it in soil with a water content of 0.03cm3cm-3, and used the root pressure probe technique to measure the hydraulic conductivity of the root-soil continuum. The results were compared with measurements with roots not covered with mucilage. The root pressure relaxation curves were fitted with a model of root water uptake including rhizosphere dynamics. The results demonstrated that when mucilage is added to the root surface, it keeps the soil near the roots wet and hydraulically well conductive, facilitating the water flow from dry soils towards the root surface. Mucilage exudation seems to be an optimal plant trait that favours the capture of water when water is scarce.

摘要

随着植物根系吸收水分以及土壤变干,根际预计会出现水分消耗。然而,最近的实验表明,在根系吸水过程中,根际比土体更湿润。我们推测根际水分含量增加是由根系分泌的黏液所致。很可能根际较高的水分含量导致根土界面具有更高的水力传导率。在这种情况下,黏液分泌将有利于在干燥土壤中吸收水分。为了验证这一假设,我们用黏液覆盖了一个称为人工根的吸盘。我们将其置于含水量为0.03cm³/cm³的土壤中,并使用根压探针技术测量根土连续体的水力传导率。将结果与未覆盖黏液的根系测量结果进行比较。用包含根际动态的根系吸水模型对根压松弛曲线进行拟合。结果表明,当在根表面添加黏液时,它能使根际附近的土壤保持湿润且水力传导良好,促进水分从干燥土壤流向根表面。黏液分泌似乎是一种在水分稀缺时有利于获取水分的最佳植物特性。

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