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铝对尾叶桉根尖有机酸代谢及铝化学形态的影响

Effect of aluminum on metabolism of organic acids and chemical forms of aluminum in root tips of Eucalyptus camaldulensis Dehnh.

机构信息

Graduate School of Agriculture, Shizuoka University, 836 Ohya, Suruga-ku, Shizuoka 422-8529, Japan.

出版信息

Phytochemistry. 2013 Oct;94:142-7. doi: 10.1016/j.phytochem.2013.06.016. Epub 2013 Jul 4.

Abstract

Eucalyptus (Eucalyptus camaldulensis) has relatively high resistance to aluminum (Al) toxicity than the various herbaceous plants and model plant species. To investigate Al-tolerance mechanism, the metabolism of organic acids and the chemical forms of Al in the target site (root tips) in Eucalyptus was investigated. To do this, 2-year old rooted cuttings of E. camaldulensis were cultivated in half-strength Hoagland solution (pH 4.0) containing Al (0, 0.25, 0.5, 1.0, 2.5 and 5.0mM) salts for 5weeks; growth was not affected at concentrations up to 2.5mM even with Al concentration reaching 6000μgg(-1) DW. In roots, the citrate content also increased with increasing Al application. Concurrently, the activities of aconitase and NADP(+)-isocitrate dehydrogenase, which catalyze the decomposition of citrate, decreased. On the other hand, the activity of citrate synthase was not affected at concentrations up to 2.5mM Al. (27)Al-NMR spectroscopic analyses were carried out where it was found that Al-citrate complexes were a major chemical form present in cell sap of root tips. These findings suggested that E. camaldulensis detoxifies Al by forming Al-citrate complexes, and that this is achieved through Al-induced citrate accumulation in root tips via suppression of the citrate decomposition pathway.

摘要

柳树(Eucalyptus camaldulensis)比各种草本植物和模式植物对铝(Al)毒性具有相对较高的抗性。为了研究 Al 耐性机制,研究了柳树目标部位(根尖)有机酸代谢和 Al 的化学形式。为此,将 2 年生生根扦插苗在含有 Al(0、0.25、0.5、1.0、2.5 和 5.0mM)盐的半强度 Hoagland 溶液(pH 4.0)中培养 5 周;即使 Al 浓度达到 6000μg g(-1) DW,浓度高达 2.5mM 时也不会影响生长。在根中,随着 Al 应用的增加,柠檬酸含量也增加。同时,催化柠檬酸分解的顺乌头酸酶和 NADP(+)-异柠檬酸脱氢酶的活性降低。另一方面,柠檬酸合酶的活性在高达 2.5mM Al 的浓度下不受影响。进行了 (27)Al-NMR 光谱分析,结果发现 Al-柠檬酸复合物是根尖细胞液中主要的化学形式。这些发现表明,柳树通过形成 Al-柠檬酸复合物来解毒 Al,并且通过抑制柠檬酸分解途径在根尖积累 Al 诱导柠檬酸来实现这一点。

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