Flexibility in reproductive attributes may facilitate the invasive capacity of the Mediterranean fanworm, Sabella spallanzanii (Gmelin)

IF 1.8 4区 环境科学与生态学 Q2 FISHERIES Marine and Freshwater Research Pub Date : 2024-02-15 DOI:10.1071/mf23197
Sarah C. Brand, Andrew G. Jeffs
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Abstract

Context

The Mediterranean fanworm arrived as a non-indigenous species in parts of Australasia, where it has established and then rapidly spread from the initial points of arrival, despite marked differences in environmental conditions compared from its natal habitat in the Mediterranean Sea.

Aims

To better understand the invasive capacity of this species in New Zealand.

Methods

Maturation, reproductive cycle, and gametogenesis were investigated, with a focus on female gamete development, for a population in Auckland, and the results were compared with those of previous studies in the Mediterranean Sea and Australia.

Key results

Egg sizes in female fanworms were highly variable throughout the year; however, a reduced presence of larger eggs was observed from August to November, which could indicate spawning. This Auckland fanworm population also appeared to have a female-skewed sex ratio compared with previous studies where a 1:1 sex ratio was observed. Fanworm maturation was reached at ~6 cm in length, compared with 15 cm in natal populations. Fanworms with body size smaller than 5 cm were not mature and did not produce mature gametes, in contrast to an Australian fanworm population.

Conclusions

The observed Mediterranean fanworm population in New Zealand demonstrates reproductive flexibility and high fecundity, contributing to its invasive capacity.

Implications

The reproductive biology of a species is important in determining its invasive capacity, and may also be flexible between populations, with implications for effective biosecurity management strategies.

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繁殖特性的灵活性可能有助于提高地中海扇形虫 Sabella spallanzanii (Gmelin) 的入侵能力
背景地中海扇形虫作为非本地物种来到澳大拉西亚的部分地区,尽管与地中海的原生栖息地相比,澳大拉西亚的环境条件存在明显差异,但地中海扇形虫还是在最初到达的地方建立了据点并迅速扩散。目的更好地了解该物种在新西兰的入侵能力。方法研究了奥克兰种群的成熟、生殖周期和配子发生,重点是雌配子的发育,并将研究结果与之前在地中海和澳大利亚的研究结果进行了比较。主要结果雌性扇形虫的卵大小全年变化很大;然而,从八月到十一月,观察到较大卵的减少,这可能预示着产卵。与之前观察到的 1:1 性别比相比,奥克兰扇形虫种群似乎还具有雌性偏斜的性别比。扇形虫成熟时体长约为 6 厘米,而原生种群的成熟体长为 15 厘米。体长小于5厘米的扇形虫没有成熟,也没有产生成熟配子,这与澳大利亚的扇形虫种群形成了鲜明对比。结论在新西兰观察到的地中海扇形虫种群具有繁殖灵活性和高繁殖力,这也是其具有入侵能力的原因之一。意义物种的繁殖生物学在决定其入侵能力方面非常重要,在不同种群之间也可能具有灵活性,这对有效的生物安全管理策略具有影响。
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来源期刊
Marine and Freshwater Research
Marine and Freshwater Research 环境科学-海洋学
CiteScore
4.60
自引率
5.60%
发文量
76
审稿时长
3.8 months
期刊介绍: Marine and Freshwater Research is an international and interdisciplinary journal publishing contributions on all aquatic environments. The journal’s content addresses broad conceptual questions and investigations about the ecology and management of aquatic environments. Environments range from groundwaters, wetlands and streams to estuaries, rocky shores, reefs and the open ocean. Subject areas include, but are not limited to: aquatic ecosystem processes, such as nutrient cycling; biology; ecology; biogeochemistry; biogeography and phylogeography; hydrology; limnology; oceanography; toxicology; conservation and management; and ecosystem services. Contributions that are interdisciplinary and of wide interest and consider the social-ecological and institutional issues associated with managing marine and freshwater ecosystems are welcomed. Marine and Freshwater Research is a valuable resource for researchers in industry and academia, resource managers, environmental consultants, students and amateurs who are interested in any aspect of the aquatic sciences. Marine and Freshwater Research is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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