温度和体型对鲤鱼前部和后部再生的影响(多毛目,鲤科)

IF 2.1 3区 生物学 Q2 MARINE & FRESHWATER BIOLOGY Marine Biology Pub Date : 2024-06-25 DOI:10.1007/s00227-024-04468-5
Andrea Toso, Marta Mammone, Sergio Rossi, Stefano Piraino, Adriana Giangrande
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引用次数: 0

摘要

近年来,萨兰托半岛(意大利南部)沿海地区经常发现环毛蚓(Hermodice carunculata,多毛目,Amphinomidae)的种群爆发,对海洋底栖生态系统造成了影响。无脊椎动物以其惊人的再生潜力而闻名,这使它们能够改造失去的身体部位。有少数研究报告了胭脂鱼的后部再生能力,但对其前部再生能力的研究还不够充分。在本研究中,我们调查了在浅海区域(爱奥尼亚海,北纬 40°08'26.9" 东经 17°58'44.1")采集的红鲤在不同温度条件(22 和 14 °C)下再生身体前部的能力,并考虑了两种不同的身体大小(4 克和 25 克)。此外,还进行了组织学分析和脂质分析,以检测再生过程中生殖周期和脂质储存的变化。结果表明,在 22 °C条件下饲养的小型和大型胡瓜虫标本可在截肢后 12-20 周内有效地再生出身体前部。在 14 °C条件下饲养的小型蠕虫再生速度较慢,但在断肢后 24 周内死亡,之后才能再生出嘴巴,而在 14 °C条件下饲养的大型蠕虫在胚泡形成过程中死亡率高达 100%。此外,脂质提取分析表明,红腹角雉能在长时间饥饿时通过从头合成脂质储备进行再生,而且红腹角雉的再生不会对生殖周期产生负面影响,因为配子的产生也发生在再生过程中。
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Effect of temperature and body size on anterior and posterior regeneration in Hermodice carunculata (Polychaeta, Amphinomidae)

In recent years, population outbreaks of the annelid Hermodice carunculata (Polychaeta, Amphinomidae) are recurrently detected along the coastal zone of the Salento peninsula (Southern Italy), with impacts on marine benthic ecosystems. Annelida are renowned for their remarkable regeneration potential, enabling them to reform lost body parts. A handful of studies have reported posterior regeneration of H. carunculata, but anterior regeneration has not been fully explored. In this study, we investigated the capacity of H. carunculata collected in shallow coastal areas (Ionian Sea, 40°08’26.9” N 17°58’44.1” E) to regenerate anterior body parts under different temperature conditions (22 and 14 °C) and considering two different body sizes (∼ 4 g and 25 g). In addition, histological analysis and lipid analyses were carried out to detect changes in the reproductive cycle and lipid storage during ongoing regeneration. The results suggest that small and large-sized specimens of H. carunculata can regenerate efficiently anterior body parts in 12–20 weeks post amputation when kept at 22 °C. Small-sized worms kept at 14 °C regenerated slower but died in 24 weeks post amputation before regenerating a mouth, while large-sized worms kept at 14 °C were affected by a 100% mortality during blastema formation. In addition, lipid extraction analyses show that H. carunculata can regenerate during extended periods of starvation by de novo synthesizing lipid reserves and regeneration in H. carunculata does not negatively impact the reproductive cycle, as gametogenesis occurs also during the regenerative processes.

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来源期刊
Marine Biology
Marine Biology 生物-海洋与淡水生物学
CiteScore
4.20
自引率
8.30%
发文量
133
审稿时长
3-6 weeks
期刊介绍: Marine Biology publishes original and internationally significant contributions from all fields of marine biology. Special emphasis is given to articles which promote the understanding of life in the sea, organism-environment interactions, interactions between organisms, and the functioning of the marine biosphere.
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