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高等植物对铅污染环境的响应。

Response of higher plants to lead contaminated environment.

作者信息

Singh R P, Tripathi R D, Sinha S K, Maheshwari R, Srivastava H S

机构信息

Department of Biosciences, M.D. University, Rohtak, India.

出版信息

Chemosphere. 1997 Jun;34(11):2467-93. doi: 10.1016/s0045-6535(97)00087-8.

Abstract

Lead concentration is increasing rapidly in the environment due to increased use of its sources by human society. Alarming concentrations of the metal have been reported in dust of densely populated urban areas and, water and land of various areas near the industrial waste disposals. Plants absorb lead and accumulation of the metal have been reported in roots, stems, leaves, root nodules and seeds etc. which increases with the increase in the exogenous lead level. Lead affects plant growth and productivity and the magnitude of the effects depend upon the plant species. Photosynthesis has been found to be one of the most sensitive plant processes and the effect of the metal is multifacial. Nitrate reduction is inhibited drastically in roots by the metal but in the leaves a differential effect is observed in various cultivars. Lead also inhibits nodulation, N-fixation and ammonium assimilation in the root nodules. It appears that the toxic effect of the metal is primarily at physiological level and provision of certain inorganic salts can antagonize the toxic effects to some extent. Further responses of plants to the metal depend on various endogenous, environmental and nutritional factors. Some plants are able to tolerate excess of Pb+2 by involving processes like exclusion, compartmentalization or synthesizing metal detoxifying peptides-the phytochelatins.

摘要

由于人类社会对铅源的使用增加,环境中的铅浓度正在迅速上升。在人口密集的城市地区的灰尘以及工业废物处理场附近各区域的水和土壤中,已报告有令人担忧的铅浓度。植物会吸收铅,并且在根、茎、叶、根瘤和种子等部位均有该金属的积累,其积累量会随着外源铅水平的升高而增加。铅会影响植物的生长和生产力,影响的程度取决于植物种类。光合作用已被发现是植物最敏感的生理过程之一,而且铅对植物的影响是多方面的。铅会严重抑制根中的硝酸盐还原,但在叶片中,不同品种会观察到不同的影响。铅还会抑制根瘤中的结瘤、固氮和铵同化作用。看来铅的毒性作用主要在生理水平,提供某些无机盐可以在一定程度上拮抗其毒性作用。植物对铅的进一步反应取决于各种内源、环境和营养因素。一些植物能够通过排斥、区室化或合成金属解毒肽(植物螯合肽)等过程来耐受过量的Pb²⁺ 。

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