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纤毛虫对盐度变化的适应性策略及潜在响应机制并附波动特性说明

Adaptive Strategies and Underlying Response Mechanisms of Ciliates to Salinity Change with Note on Fluctuation Properties.

作者信息

Li Fenfen, Yang Jing, Li Jiqiu, Lin Xiaofeng

机构信息

Key Laboratory of Ministry of Education for Coastal and Wetland Ecosystems, Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies, College of the Environment and Ecology, Xiamen University, Xiamen 361102, China.

State Key Laboratory of Marine Environmental Science, Xiamen University, Xiamen 361102, China.

出版信息

Microorganisms. 2024 Sep 27;12(10):1957. doi: 10.3390/microorganisms12101957.

Abstract

The adaptability of marine organisms to changes in salinity has been a significant research area under global climate change. However, the underlying mechanisms of this adaptability remain a debated subject. We hypothesize that neglecting salinity fluctuation properties is a key contributing factor to the controversy. The ciliate was used as the model organism, with two salinity fluctuation period sets: acute (24 h) and chronic (336 h). We examined its population growth dynamics and energy metabolism parameters following exposure to salinity levels from 15‱ to 50‱. The carrying capacity () decreased with increasing salinity under both acute and chronic stresses. The intrinsic growth rate () decreased with increasing salinity under acute stress. Under chronic stress, the initially increased with stress intensity before decreasing when salinity exceeded 40‱. Overall, glycogen and lipid content decreased with stress increasing and were significantly higher in the acute stress set compared to the chronic one. Both hypotonic and hypertonic stresses enhanced the activities of metabolic enzymes. A trade-off between survival and reproduction was observed, prioritizing survival under acute stress. Under chronic stress, the weight on reproduction increased in significance. In conclusion, the tested ciliates adopted an -strategy in response to salinity stress. The trade-off between reproduction and survival is a significant biological response mechanism varying with salinity fluctuation properties.

摘要

海洋生物对盐度变化的适应性一直是全球气候变化下的一个重要研究领域。然而,这种适应性的潜在机制仍然是一个有争议的话题。我们假设忽略盐度波动特性是导致争议的一个关键因素。以纤毛虫为模式生物,设置了两个盐度波动周期组:急性(24小时)和慢性(336小时)。我们研究了其在暴露于15‰至50‰盐度水平后的种群增长动态和能量代谢参数。在急性和慢性胁迫下,承载能力()均随盐度增加而降低。在急性胁迫下,内禀增长率()随盐度增加而降低。在慢性胁迫下,当盐度超过40‰时, 最初随胁迫强度增加,随后降低。总体而言,糖原和脂质含量随胁迫增加而降低,急性胁迫组中的含量显著高于慢性胁迫组。低渗和高渗胁迫均增强了代谢酶的活性。观察到生存与繁殖之间的权衡,在急性胁迫下优先考虑生存。在慢性胁迫下,繁殖的权重显著增加。总之,受试纤毛虫在应对盐度胁迫时采取了r-策略。繁殖与生存之间的权衡是一种随盐度波动特性而变化的重要生物响应机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9660/11509147/94c3af1c5857/microorganisms-12-01957-g001.jpg

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