Divergent patterns of locomotor activity in cave isopods (Oniscidea: Styloniscidae) in Neotropics.

IF 2.2 4区 医学 Q2 BIOLOGY Chronobiology International Pub Date : 2024-08-01 Epub Date: 2024-08-19 DOI:10.1080/07420528.2024.2391865
Priscila Emanuela de Souza, Bruno da Silva Brandão Gonçalves, Marconi Souza-Silva, Rodrigo Lopes Ferreira
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Abstract

In cave environments, stable conditions devoid of light-dark cycles and temperature fluctuations sustain circadian clock mechanisms across various species. However, species adapted to these conditions may exhibit disruption of circadian rhythm in locomotor activity. This study examines potential rhythm loss due to convergent evolution in five semi-aquatic troglobitic isopod species (Crustacea: Styloniscidae), focusing on its impact on locomotor activity. The hypothesis posits that these species display aperiodic locomotor activity patterns. Isopods were subjected to three treatments: constant red light (DD), constant light (LL), and light-dark cycles (LD 12:12), totaling 1656 h. Circadian rhythm analysis employed the Sokolove and Bushell periodogram chi-square test, Hurst coefficient calculation, intermediate stability (IS), and activity differences for each species. Predominantly, all species exhibited an infradian rhythm under DD and LL. There was synchronization of the locomotor rhythm in LD, likely as a result of masking. Three species displayed diurnal activity, while two exhibited nocturnal activity. The Hurst coefficient indicated rhythmic persistence, with LD showing higher variability. LD conditions demonstrated higher IS values, suggesting synchronized rhythms across species. Significant individual variations were observed within species across the three conditions. Contrary to the hypothesis, all species exhibited synchronization under light-dark conditions. Analyzing circadian activity provides insights into organism adaptation to non-cyclical environments, emphasizing the importance of exploring underlying mechanisms.

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新热带地区洞穴等脚类动物(Oniscidea: Styloniscidae)运动活动的差异模式。
在洞穴环境中,没有光暗周期和温度波动的稳定条件维持着不同物种的昼夜节律机制。然而,适应这些条件的物种可能会表现出运动活动的昼夜节律紊乱。本研究考察了五个半水栖蛙类等足目物种(甲壳纲:Styloniscidae)因趋同进化而导致的潜在节律缺失,重点关注其对运动活动的影响。该假说认为这些物种表现出非周期性的运动活动模式。昼夜节律分析采用了 Sokolove 和 Bushell 周期图秩方检验、赫斯特系数计算、中间稳定性(IS)和每个物种的活动差异。主要而言,所有物种在 DD 和 LL 条件下都表现出下昼节律。在 LD 条件下,运动节律同步,这可能是掩蔽的结果。三个物种表现出昼间活动,两个表现出夜间活动。赫斯特系数(Hurst coefficient)显示了节律的持续性,而 LD 的变异性更高。LD 条件下的 IS 值较高,表明不同物种的节律是同步的。在三种条件下,观察到物种内部存在显著的个体差异。与假设相反,所有物种在光-暗条件下都表现出同步性。分析昼夜节律活动有助于深入了解生物对非周期性环境的适应性,强调了探索潜在机制的重要性。
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来源期刊
Chronobiology International
Chronobiology International 生物-生理学
CiteScore
5.60
自引率
7.10%
发文量
110
审稿时长
1 months
期刊介绍: Chronobiology International is the journal of biological and medical rhythm research. It is a transdisciplinary journal focusing on biological rhythm phenomena of all life forms. The journal publishes groundbreaking articles plus authoritative review papers, short communications of work in progress, case studies, and letters to the editor, for example, on genetic and molecular mechanisms of insect, animal and human biological timekeeping, including melatonin and pineal gland rhythms. It also publishes applied topics, for example, shiftwork, chronotypes, and associated personality traits; chronobiology and chronotherapy of sleep, cardiovascular, pulmonary, psychiatric, and other medical conditions. Articles in the journal pertain to basic and applied chronobiology, and to methods, statistics, and instrumentation for biological rhythm study. Read More: http://informahealthcare.com/page/cbi/Description
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