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根际和根系源有机酸在两种辣椒品种积累镉中的作用。

Roles of rhizosphere and root-derived organic acids in Cd accumulation by two hot pepper cultivars.

机构信息

Research Center for Environmental Pollution Control Technology, Department of Safety and Environmental Engineering, Hunan Institute of Technology, Hengyang, 421002, China.

出版信息

Environ Sci Pollut Res Int. 2015 Apr;22(8):6254-61. doi: 10.1007/s11356-014-3854-z. Epub 2014 Nov 20.

Abstract

Cultivars of hot pepper (Capsicum annuum L.) have different abilities to accumulate Cd in their fruits. Previously, we suggested that low-Cd cultivars take up more Cd, but can better prevent the Cd translocation from roots to aerial parts. However, the mechanisms involved in those processes are still unclear. In this study, we explored the roles of rhizosphere soil Cd fractions and root secretions of low molecular weight organic acids in the uptake, translocation, and accumulation of Cd in a low-Cd and high-Cd cultivar. The results showed that there was no significant difference in exchangeable Cd between rhizosphere soils of the two cultivars, which might be related to their similar root's Cd uptake ability. The total content of low molecular weight organic acids released from roots of the low-Cd cultivar was almost equal to that released from roots of the high-Cd cultivar at the same Cd level; however, the composition of low molecular weight organic acids were determined by cultivars and Cd exposure levels. In the higher Cd (10 μM) treatment, the roots of the low-Cd cultivar excreted significantly less tartaric acid and more oxalic and acetic acids than those of the high-Cd cultivar. Additionally, there was no difference in the concentration of citric or succinic acid between the two cultivars. These results indicate that some kinds of low molecular weight organic acids efflux from hot pepper roots played an important role in the difference of Cd accumulation between low- and high-Cd cultivars.

摘要

辣椒(Capsicum annuum L.)品种在果实中积累 Cd 的能力不同。此前,我们认为低 Cd 品种吸收更多的 Cd,但能更好地防止 Cd 从根部向地上部分转移。然而,这些过程中涉及的机制仍不清楚。在这项研究中,我们探讨了根际土壤 Cd 形态和低分子量有机酸根分泌在低 Cd 和高 Cd 品种吸收、转运和积累 Cd 中的作用。结果表明,两种品种根际土壤可交换态 Cd 没有显著差异,这可能与其相似的根 Cd 吸收能力有关。在相同 Cd 水平下,低 Cd 品种根分泌的低分子量有机酸总量几乎等于高 Cd 品种根分泌的低分子量有机酸总量;然而,低分子量有机酸的组成取决于品种和 Cd 暴露水平。在较高 Cd(10 μM)处理下,低 Cd 品种根分泌的酒石酸明显少于高 Cd 品种,而草酸和乙酸则较多。此外,两种品种柠檬酸或琥珀酸的浓度没有差异。这些结果表明,一些低分子量有机酸从辣椒根中排出,在低 Cd 和高 Cd 品种积累 Cd 的差异中发挥了重要作用。

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