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干旱是否会影响钙草酸晶体在金合欢属(豆科:含羞草亚科)中的形态、分布和积累?

Does aridity influence the morphology, distribution and accumulation of calcium oxalate crystals in Acacia (Leguminosae: Mimosoideae)?

机构信息

Botany, School of Environmental and Rural Science, University of New England, Armidale, NSW 2351, Australia.

出版信息

Plant Physiol Biochem. 2013 Dec;73:219-28. doi: 10.1016/j.plaphy.2013.10.006. Epub 2013 Oct 11.

Abstract

Calcium oxalate (CaOx) crystals are a common natural feature of many plant families, including the Leguminosae. The functional role of crystals and the mechanisms that underlie their deposition remain largely unresolved. In several species, the seasonal deposition of crystals has been observed. To gain insight into the effects of rainfall on crystal formation, the morphology, distribution and accumulation of calcium oxalate crystals in phyllodes of the leguminous Acacia sect. Juliflorae (Benth.) C. Moore & Betche from four climate zones along an aridity gradient, was investigated. The shapes of crystals, which include rare Rosanoffian morphologies, were constant between species from different climate zones, implying that morphology was not affected by rainfall. The distribution and accumulation of CaOx crystals, however, did appear to be climate-related. Distribution was primarily governed by vein density, an architectural trait which has evolved in higher plants in response to increasing aridity. Furthermore, crystals were more abundant in acacias from low rainfall areas, and in phyllodes containing high concentrations of calcium, suggesting that both aridity and soil calcium levels play important roles in the precipitation of CaOx. As crystal formation appears to be calcium-induced, we propose that CaOx crystals in Acacia most likely function in bulk calcium regulation.

摘要

草酸钙 (CaOx) 晶体是许多植物科,包括豆科植物的常见天然特征。晶体的功能作用及其沉积的机制在很大程度上仍未得到解决。在一些物种中,已经观察到晶体的季节性沉积。为了深入了解降雨对晶体形成的影响,研究了沿着干旱梯度的四个气候带中豆科金合欢属 Juliflorae (Benth.) C. Moore & Betche 组的叶状部的草酸钙晶体的形态、分布和积累。不同气候带的物种之间晶体的形状保持不变,包括罕见的 Rosanoffian 形态,这表明形态不受降雨的影响。然而,CaOx 晶体的分布和积累似乎与气候有关。分布主要由叶脉密度决定,这是一种建筑特征,在高等植物中为了应对日益增加的干旱而进化而来。此外,来自低降雨量地区的金合欢中的晶体更为丰富,并且在含有高浓度钙的叶状部中也更为丰富,这表明干旱和土壤钙水平在 CaOx 的沉淀中都起着重要作用。由于晶体形成似乎是钙诱导的,我们提出,金合欢中的 CaOx 晶体很可能在大量钙调节中发挥作用。

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