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The genetic effects of environmental lead.

机译:环境铅的遗传效应。

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摘要

This article reviews the effects of lead on genetic systems in the context of lead's various other toxic effects and its abundance and distribution in the environment. Lead is perhaps the longest used and best recognized toxic environmental chemical, yet it continued be used recklessly until only very recently. Lead is thus a lesson in the limitations and strengths of science, human conscience and common sense. Lead has been tested and found to be capable of eliciting a positive response in an extraordinarily wide range of biological and biochemical tests; among them tests for enzyme inhibition, fidelity of DNA synthesis, mutation, chromosome aberrations, cancer and birth defects. It reacts or complexes with many biomolecules and adversely affects the reproductive, nervous, gastrointestinal, immune, renal, cardiovascular, skeletal, muscular and hematopoietic systems as well as developmental processes. It is likely that lead is a selective agent that continues to act on and influence the genetic structure and future evolution of exposed plant and animal populations.
机译:本文在铅的各种其他毒性作用及其在环境中的丰度和分布的背景下,回顾了铅对遗传系统的影响。铅也许是使用时间最长,公认的有毒的环境化学物质,但直到最近才被鲁re使用。因此,铅是关于科学,人类良知和常识的局限性和优势的一课。铅已经过测试,发现能够在非常广泛的生物学和生化测试中引起阳性反应。其中包括测试酶抑制,DNA合成保真度,突变,染色体畸变,癌症和先天缺陷。它与许多生物分子发生反应或复合,并对生殖,神经,胃肠,免疫,肾脏,心血管,骨骼,肌肉和造血系统以及发育过程产生不利影响。铅很可能会继续作用于并影响裸露的动植物种群的遗传结构和未来进化的选择剂。

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