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粗糙脉孢菌对稀有气体和氮气分压升高的生长反应。

Growth responses of Neurospora crassa to increased partial pressures of the noble gases and nitrogen.

作者信息

Buchheit R G, Schreiner H R, Doebbler G F

出版信息

J Bacteriol. 1966 Feb;91(2):622-7. doi: 10.1128/jb.91.2.622-627.1966.

Abstract

Buchheit, R. G. (Union Carbide Corp., Tonawanda, N.Y.), H. R. Schreiner, and G. F. Doebbler. Growth responses of Neurospora crassa to increased partial pressures of the noble gases and nitrogen. J. Bacteriol. 91:622-627. 1966.-Growth rate of the fungus Neurospora crassa depends in part on the nature of metabolically "inert gas" present in its environment. At high partial pressures, the noble gas elements (helium, neon, argon, krypton, and xenon) inhibit growth in the order: Xe > Kr> Ar >> Ne >> He. Nitrogen (N(2)) closely resembles He in inhibitory effectiveness. Partial pressures required for 50% inhibition of growth were: Xe (0.8 atm), Kr (1.6 atm), Ar (3.8 atm), Ne (35 atm), and He ( approximately 300 atm). With respect to inhibition of growth, the noble gases and N(2) differ qualitatively and quantitatively from the order of effectiveness found with other biological effects, i.e., narcosis, inhibition of insect development, depression of O(2)-dependent radiation sensitivity, and effects on tissue-slice glycolysis and respiration. Partial pressures giving 50% inhibition of N. crassa growth parallel various physical properties (i.e., solubilities, solubility ratios, etc.) of the noble gases. Linear correlation of 50% inhibition pressures to the polarizability and of the logarithm of pressure to the first and second ionization potentials suggests the involvement of weak intermolecular interactions or charge-transfer in the biological activity of the noble gases.

摘要

布赫海特,R.G.(联合碳化物公司,纽约州托纳旺达),H.R.施赖纳,以及G.F.德布勒。粗糙脉孢菌对稀有气体和氮气分压升高的生长反应。《细菌学杂志》91:622 - 627。1966年。——粗糙脉孢菌的生长速率部分取决于其环境中代谢“惰性气体”的性质。在高分压下,稀有气体元素(氦、氖、氩、氪和氙)按以下顺序抑制生长:氙>氪>氩>>氖>>氦。氮气(N₂)在抑制效果上与氦非常相似。50%抑制生长所需的分压为:氙(0.8个大气压)、氪(1.6个大气压)、氩(3.8个大气压)、氖(35个大气压)和氦(约300个大气压)。关于生长抑制,稀有气体和N₂在质量和数量上与其他生物学效应(即麻醉、昆虫发育抑制、对氧依赖性辐射敏感性的抑制以及对组织切片糖酵解和呼吸的影响)所发现的效应顺序不同。使粗糙脉孢菌生长50%受抑制的分压与稀有气体的各种物理性质(即溶解度、溶解度比等)平行。50%抑制压力与极化率以及压力对数与第一和第二电离势的线性相关性表明,弱分子间相互作用或电荷转移参与了稀有气体的生物活性。

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