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The osmoprotective effect of some organic solutes on Streptomyces sp. mado2 and nocardiopsis sp. mado3 growth

机译:某些有机溶质对链霉菌的渗透保护作用。 mado2和诺卡氏菌mado3增长

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摘要

The response of two marine actinomycetes such as Streptomyces sp. MADO2 and Nocardiopsis sp. MADO3 to osmotic stress in minimal medium M63 and in glycerol-asparagine medium (ISP5) was studied. The two strains were moderately halophilic and the behavior of the strain Streptomyces sp. MADO2 and Nocardiopsis sp. MADO3 towards the salt stress was varied depends on the media composition and the salinity concentration. The strain Streptomyces sp. was more sensitive to salt stress than Nocardiopsis sp. The growth of both Streptomyces sp. and Nocardiopsis sp. were inhibited at 1 M NaCl irrespective of the medium used. The Nocardiopsis sp. acquired osmoadaptation on ISP5 medium whereas the Streptomyces sp. showed poor growth on M63 medium. Glycine betaine (GB), proline and trehalose played a critical role in osmotic adaptation at high osmolarity whereas at low osmolarity they showed an inhibitory effect on the bacterial growth. The present findings confirmed that GB was the powerful osmoprotectant for Streptomyces sp. and Nocardiopsis sp. grown at 1 M NaCl both in M63 and ISP5 media.
机译:两种海洋放线菌如链霉菌的反应。 MADO2和Nocardiopsis sp。研究了MADO3在基本培养基M63和甘油-天冬酰胺培养基(ISP5)中的渗透胁迫。两种菌株均为中等嗜盐性,菌株Streptomyces sp。的行为。 MADO2和Nocardiopsis sp。 MADO3对盐胁迫的变化取决于培养基组成和盐分浓度。链霉菌菌株。比诺卡氏菌对盐胁迫更敏感。两个链霉菌的生长。和诺卡氏菌不论使用哪种培养基,都可以在1 M NaCl中抑制其生长。诺卡氏菌在ISP5培养基上获得了osmoadaptation,而链霉菌属sp.。在M63培养基上显示出较差的生长。甘氨酸甜菜碱(GB),脯氨酸和海藻糖在高渗透压下在渗透适应中起关键作用,而在低渗透压下,它们对细菌的生长具有抑制作用。目前的发现证实GB是链霉菌的强大的渗透保护剂。和诺卡氏菌在M63和ISP5培养基中均以1 M NaCl生长。

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