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Surface Electrical Potentials of Root Cell Plasma Membranes: Implications for Ion Interactions Rhizotoxicity and Uptake

机译:根细胞血浆膜的表面电势:对离子相互作用根际毒性和摄取的影响。

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摘要

Many crop plants are exposed to heavy metals and other metals that may intoxicate the crop plants themselves or consumers of the plants. The rhizotoxicity of heavy metals is influenced strongly by the root cell plasma membrane (PM) surface’s electrical potential (ψ0). The usually negative ψ0 is created by negatively charged constituents of the PM. Cations in the rooting medium are attracted to the PM surface and anions are repelled. Addition of ameliorating cations (e.g., Ca2+ and Mg2+) to the rooting medium reduces the effectiveness of cationic toxicants (e.g., Cu2+ and Pb2+) and increases the effectiveness of anionic toxicants (e.g., SeO42− and H2AsO4). Root growth responses to ions are better correlated with ion activities at PM surfaces ({IZ}0) than with activities in the bulk-phase medium ({IZ}b) (IZ denotes an ion with charge Z). Therefore, electrostatic effects play a role in heavy metal toxicity that may exceed the role of site-specific competition between toxicants and ameliorants. Furthermore, ψ0 controls the transport of ions across the PM by influencing both {IZ}0 and the electrical potential difference across the PM from the outer surface to the inner surface (Em,surf). Em,surf is a component of the driving force for ion fluxes across the PM and controls ion-channel voltage gating. Incorporation of {IZ}0 and Em,surf into quantitative models for root metal toxicity and uptake improves risk assessments of toxic metals in the environment. These risk assessments will improve further with future research on the application of electrostatic theory to heavy metal phytotoxicity in natural soils and aquatic environments.
机译:许多农作物暴露于重金属和其他金属中,这些金属可能会使农作物本身或农作物的消费者陶醉。根细胞质膜(PM)表面的电势(ψ0)强烈影响重金属的根际毒性。通常负的ψ0是由PM的带负电荷的成分产生的。生根介质中的阳离子被吸附到PM表面,并且阴离子被排斥。在生根培养基中添加改善阳离子(例如Ca 2 + 和Mg 2 + )会降低阳离子有毒物质(例如Cu 2 + 和Pb 2 + ),并增加了阴离子有毒物质(例如SeO4 2-和H2AsO4 -)的有效性。对离子的根生长响应与PM表面({I Z } 0)上的离子活动相关性比与本体相介质({I Z } b)中的活动相关性更好)(I Z 表示带有Z电荷的离子)。因此,静电作用在重金属毒性中发挥作用,其作用可能超过有毒物质和改良剂之间的特定位置竞争。此外,ψ0通过影响{I Z } 0和从外表面到内表面的跨PM的电势差(Em,surf)来控制离子在PM上的传输。 Em,surf是跨PM的离子通量驱动力的一部分,并控制离子通道电压门控。将{I Z } 0和Em,surf纳入根金属毒性和吸收的定量模型可以改善环境中有毒金属的风险评估。随着对静电理论对天然土壤和水生环境中重金属植物毒性的应用的进一步研究,这些风险评估将得到进一步改善。

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