Zhu Yiyong, Yan Feng, Zörb Christian, Schubert Sven
Institute of Plant Nutrition, Interdisciplinary Research Center, Justus Liebig University, Heinrich-Buff-Ring 26-32, D-35392 Giessen, Germany.
Plant Cell Physiol. 2005 Jun;46(6):892-901. doi: 10.1093/pcp/pci094. Epub 2005 Apr 8.
White lupin (Lupinus albus L.) is able to acclimate to phosphorus deficiency by forming proteoid roots that release a large amount of citric acid, resulting in the mobilization of sparingly soluble soil phosphate in the rhizosphere. The mechanisms responsible for the release of organic acids have not been fully elucidated. In this study, we focused on the link between citrate and malate release and the release of H+ and other inorganic ions by proteoid roots of white lupin. The release of citrate was closely correlated with the release of H+, K+, Na+ and Mg2+, but not with that of Ca2+. The stoichiometric relationships between citrate release and the release of H+, K+, Na+ and Mg2+ were 1 : 1.3, 1 : 2.1, 1 : 1.5 and 1 : 0.47, respectively. Similar correlations were found between exudation of malate and cations. During 30 min incubation, fusicoccin addition stimulated H+ and malate release, but not citrate release. A concomitant stimulation of H+, malate and citrate release was measured after 60 min incubation. Vanadate inhibited the release of H+ and malate, but not that of citrate. Anthracene-9-carboxylic acid, an anion channel blocker, caused a concomitant decrease in release of citrate, malate and H+. We conclude that for export of citrate across the plasma membrane of proteoid root cells, H+ release is not strictly related to citrate release. Other cations such as K+ and Na+ can also serve as counterions for citrate release. In contrast, malate release shows a strong H+ release dependency.
白羽扇豆(Lupinus albus L.)能够通过形成排根来适应磷缺乏,排根会释放大量柠檬酸,从而促使根际中难溶性土壤磷酸盐的活化。负责释放有机酸的机制尚未完全阐明。在本研究中,我们聚焦于白羽扇豆排根中柠檬酸和苹果酸释放与H⁺及其他无机离子释放之间的联系。柠檬酸的释放与H⁺、K⁺、Na⁺和Mg²⁺的释放密切相关,但与Ca²⁺的释放无关。柠檬酸释放与H⁺、K⁺、Na⁺和Mg²⁺释放之间的化学计量关系分别为1 : 1.3、1 : 2.1、1 : 1.5和1 : 0.47。在苹果酸分泌与阳离子之间也发现了类似的相关性。在孵育30分钟期间,添加壳梭孢菌素刺激了H⁺和苹果酸的释放,但未刺激柠檬酸的释放。孵育60分钟后,测量到H⁺、苹果酸和柠檬酸的释放同时受到刺激。钒酸盐抑制了H⁺和苹果酸的释放,但未抑制柠檬酸的释放。阴离子通道阻滞剂蒽-9-羧酸导致柠檬酸、苹果酸和H⁺的释放同时减少。我们得出结论,对于柠檬酸跨排根细胞的质膜输出,H⁺释放与柠檬酸释放并非严格相关。其他阳离子如K⁺和Na⁺也可作为柠檬酸释放的抗衡离子。相比之下,苹果酸的释放表现出强烈的H⁺释放依赖性。