Survival strategies of planktonic organisms in alpine lakes and beyond: Baldi Memorial Award Lecture presented at the 37th Congress of the International Society of Limnology.

IF 2.3 3区 环境科学与生态学 Q1 LIMNOLOGY
Inland Waters Pub Date : 2025-04-29 eCollection Date: 2025-01-01 DOI:10.1080/20442041.2025.2497248
Ruben Sommaruga
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Abstract

Recent research on alpine lakes has revealed both novel adaptive strategies and established ones, now examined from a new perspective, that planktonic organisms use to persist under the harsh environmental conditions characteristic of these ecosystems. The 2024 Edgardo Baldi lecture addresses 3 major topics, namely, the multifactorial drivers of photoprotection, emerging mechanisms of microbial solar energy utilization, and virus-mediated facilitation of host survival. Photoprotective phenotypes, including the accumulation of mycosporine-like amino acids and carotenoids, are increasingly recognized as outcomes of complex interactions among ultraviolet radiation exposure, nutrient (particularly nitrogen) availability, temperature fluctuations, and predation pressure. Deciphering this interplay is critical for predicting planktonic responses to ongoing global environmental change. A significant advance in the understanding of microbial photoenergetics has been the recent discovery of dual phototrophy in certain bacteria that combine aerobic anoxygenic photosynthesis with rhodopsin-based proton pumping. This dual mechanism enhances energy acquisition and biomass production under conditions of fluctuating light intensity and limited dissolved organic carbon concentrations, with potential parallels in eukaryotic phytoplankton. Finally, the identification of novel viral groups in alpine lakes, such as Polinton-like viruses and virophages, suggests a protective role against host mortality induced by giant viruses. These interactions seem to stabilize microeukaryotic populations and may significantly influence ecosystem productivity and dynamics. Together these findings emphasize the ecological and evolutionary significance of such adaptations, extending beyond alpine lakes to other aquatic ecosystems, and improving our understanding of how plankton respond to environmental changes.

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高山湖泊及其他地区浮游生物的生存策略:在国际湖泊学会第37届大会上发表的Baldi纪念奖演讲。
最近对高山湖泊的研究揭示了浮游生物在这些生态系统的恶劣环境条件下赖以生存的新的适应策略和现有的适应策略,现在从一个新的角度进行了检验。2024年Edgardo Baldi讲座将涉及三个主要主题,即光保护的多因素驱动因素,微生物太阳能利用的新兴机制,以及病毒介导的宿主生存促进。光保护表型,包括类真菌菌素氨基酸和类胡萝卜素的积累,越来越被认为是紫外线照射、营养物质(特别是氮)可用性、温度波动和捕食压力之间复杂相互作用的结果。破译这种相互作用对于预测浮游生物对持续的全球环境变化的反应至关重要。最近在某些细菌中发现了将好氧无氧光合作用与视紫红质质子泵送相结合的双光性光合作用,这是对微生物光能学理解的一个重大进展。这种双重机制在波动的光强和有限的溶解有机碳浓度条件下增强了能量获取和生物量生产,与真核浮游植物的潜在相似。最后,在高山湖泊中发现了新的病毒群,如波林顿样病毒和病毒噬菌体,表明它们对巨病毒引起的宿主死亡具有保护作用。这些相互作用似乎稳定了微真核生物种群,并可能显著影响生态系统的生产力和动态。总之,这些发现强调了这种适应的生态和进化意义,从高山湖泊扩展到其他水生生态系统,并提高了我们对浮游生物如何应对环境变化的理解。
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来源期刊
Inland Waters
Inland Waters LIMNOLOGY-MARINE & FRESHWATER BIOLOGY
CiteScore
6.10
自引率
9.70%
发文量
34
审稿时长
>12 weeks
期刊介绍: Inland Waters is the peer-reviewed, scholarly outlet for original papers that advance science within the framework of the International Society of Limnology (SIL). The journal promotes understanding of inland aquatic ecosystems and their management. Subject matter parallels the content of SIL Congresses, and submissions based on presentations are encouraged. All aspects of physical, chemical, and biological limnology are appropriate, as are papers on applied and regional limnology. The journal also aims to publish articles resulting from plenary lectures presented at SIL Congresses and occasional synthesis articles, as well as issues dedicated to a particular theme, specific water body, or aquatic ecosystem in a geographical area. Publication in the journal is not restricted to SIL members.
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