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盐度波动对生物适应性的影响:广盐细菌的生长动态及钠/钾-ATP酶活性

Salinity fluctuation influencing biological adaptation: growth dynamics and Na /K -ATPase activity in a euryhaline bacterium.

作者信息

Yang Hao, Meng Yang, Song Youxin, Tan Yalin, Warren Alan, Li Jiqiu, Lin Xiaofeng

机构信息

Guangzhou Key Laboratory of Subtropical Biodiversity and Biomonitoring, South China Normal University, Guangzhou, P. R. China.

Department of Life Sciences, Natural History Museum, London, UK.

出版信息

J Basic Microbiol. 2017 Jul;57(7):617-624. doi: 10.1002/jobm.201700124. Epub 2017 May 11.

Abstract

Although salinity fluctuation is a prominent characteristic of many coastal ecosystems, its effects on biological adaptation have not yet been fully recognized. To test the salinity fluctuations on biological adaptation, population growth dynamics and Na /K -ATPase activity were investigated in the euryhaline bacterium Idiomarina sp. DYB, which was acclimated at different salinity exposure levels, exposure times, and shifts in direction of salinity. Results showed: (1) bacterial population growth dynamics and Na /K -ATPase activity changed significantly in response to salinity fluctuation; (2) patterns of variation in bacterial growth dynamics were related to exposure times, levels of salinity, and shifts in direction of salinity change; (3) significant tradeoffs were detected between growth rate (r) and carrying capacity (K) on the one hand, and Na /K -ATPase activity on the other; and (4) beneficial acclimation was confirmed in Idiomarina sp. DYB. In brief, this study demonstrated that salinity fluctuation can change the population growth dynamics, Na /K -ATPase activity, and tradeoffs between r, K, and Na /K -ATPase activity, thus facilitating bacterial adaption in a changing environment. These findings provide constructive information for determining biological response patterns to environmental change.

摘要

尽管盐度波动是许多沿海生态系统的一个显著特征,但其对生物适应性的影响尚未得到充分认识。为了测试盐度波动对生物适应性的影响,对广盐性细菌Idiomarina sp. DYB在不同盐度暴露水平、暴露时间和盐度变化方向转变条件下的种群生长动态和钠钾ATP酶活性进行了研究。结果表明:(1)细菌种群生长动态和钠钾ATP酶活性随盐度波动发生显著变化;(2)细菌生长动态的变化模式与暴露时间、盐度水平和盐度变化方向的转变有关;(3)在生长速率(r)和承载能力(K)与钠钾ATP酶活性之间检测到显著的权衡;(4)在Idiomarina sp. DYB中证实了有益的适应性。简而言之,本研究表明盐度波动可改变种群生长动态、钠钾ATP酶活性以及r、K和钠钾ATP酶活性之间的权衡,从而促进细菌在变化环境中的适应。这些发现为确定生物对环境变化的响应模式提供了建设性信息。

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