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粗糙脉孢菌镍抗性菌株中金属毒性下微量元素代谢的相互关系。

Interrelationships in trace-element metabolism in metal toxicities in nickel-resistant strains of Neurospora crassa.

作者信息

Maruthi Mohan P, Sivarama Sastry K

出版信息

Biochem J. 1983 Apr 15;212(1):205-10. doi: 10.1042/bj2120205.

Abstract

Three different Ni2+-resistant strains of Neurospora crassa (NiR1, NiR2 and NiR3) have been isolated. All are stable mutants and are fourfold more resistant to Ni2+ than the parent wild-type strain. NiR1 and NiR2 are also sixfold more resistant to Co2+, whereas NiR3 is only twice as resistant to Co2+; the former two are also twofold more resistant to Zn2+, but NiR3 is not. These three strains also differ in sensitivity to Cu2+. Toxicities and concomitant accumulation patterns of Ni2+, Co2+ and Cu2+ have been examined in these strains. NiR1 and NiR2, despite quantitative individual differences, generally accumulate very high amounts of Ni2+ and Co2+, and Mg2+ reverses the toxicities of these two ions by different mechanisms; Ni2+ uptake is suppressed, but not that of Co2+. In NiR3, Mg2+ controls uptake of both Ni2+ and Co2+. Studies indicate that two kinds of Ni2+-resistant strains of N. crassa exist; one kind is resistant because it can tolerate high intracellular concentrations of heavy-metal ions, whereas the other is resistant because it can control metal-ion accumulation.

摘要

已分离出三种不同的对镍离子具有抗性的粗糙脉孢菌菌株(NiR1、NiR2和NiR3)。它们均为稳定突变体,对镍离子的抗性是亲本野生型菌株的四倍。NiR1和NiR2对钴离子的抗性也高六倍,而NiR3对钴离子的抗性仅为两倍;前两者对锌离子的抗性也高两倍,但NiR3并非如此。这三种菌株对铜离子的敏感性也有所不同。已对这些菌株中镍离子、钴离子和铜离子的毒性及伴随的积累模式进行了研究。NiR1和NiR2尽管在个体数量上存在差异,但通常会积累大量的镍离子和钴离子,镁离子通过不同机制逆转这两种离子的毒性;镍离子的吸收受到抑制,但钴离子的吸收不受影响。在NiR3中,镁离子控制镍离子和钴离子的吸收。研究表明,存在两种对镍离子具有抗性的粗糙脉孢菌菌株;一种具有抗性是因为它能够耐受高浓度的细胞内重金属离子,而另一种具有抗性是因为它能够控制金属离子的积累。

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