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Differing Organic Acid Exudation Pattern Explains Calcifuge and Acidifuge Behaviour of Plants

机译:不同的有机酸渗出模式说明植物的钙化和酸化行为

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摘要

Many vascular plant species are unable to colonize calcareous sites. Thus, the floristic composition of adjacent limestone and acid silicate soils differs greatly. The inability of calcifuge plants to establish in limestone sites seems related to a low capacity of such plants to solubilize and absorb Fe or phosphate from these soils. Until now, mechanisms regulating this differing ability of plants to colonize limestone sites have not been elucidated. We propose that contrasting exudation of low-molecular organic acids is a major mechanism involved and show that germinating seeds and young seedlings of limestone plants exude considerably more di- and tricarboxylic acids than calcifuges, which mainly exude monocarboxylic acids. The tricarboxylic citric acid is a powerful extractor of Fe, and the dicarboxylic oxalic acid a very effective extractor of phosphate from limestone soils. Monocarboxylic acids are very weak in these respects. The study is based on ten species from limestone soils and ten species from acid silicate soils.
机译:许多维管束植物无法在钙质部位定居。因此,相邻石灰岩和酸性硅酸盐土壤的植物区系差异很大。分解炉不能在石灰石场地上建立似乎与这种植物从这些土壤中溶解和吸收铁或磷酸盐的能力低有关。迄今为止,尚未阐明调节植物在石灰石位点定殖的这种不同能力的机制。我们提出,低分子有机酸的对比渗出是主要的机制,并且表明发芽的石灰石植物的种子和幼苗比散发主要散发一元羧酸的分解剂散发更多的二羧酸和三羧酸。柠檬酸三羧酸是铁的强力萃取剂,而二羧酸草酸是石灰石土壤中磷酸盐的非常有效的萃取剂。在这些方面,一元羧酸非常弱。该研究基于石灰石土壤中的10种和酸性硅酸盐土壤中的10种。

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