Temporal and spatial variability of ichthyoplankton assemblages in the Eastern Tropical Pacific off Colombia

IF 2.1 3区 地球科学 Q2 OCEANOGRAPHY
Bellineth Valencia, Marisol Rivera-Gómez, Mauricio Jerez-Guerrero, Mariana Rondón-Ramos, Alan Giraldo
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引用次数: 0

Abstract

We investigated the spatiotemporal variability of the ichthyoplankton assemblages along the northern Pacific coast of Colombia. This region is characterized by high biodiversity and important artisanal fisheries, yet knowledge of the dynamics of the early life history of fish is scarce. Three sites (north: 6.3°N, central: 5.7°N, south: 4.9°N) were sampled every other month for a year, covering a gradient of varying coastal geomorphology along ∼240 km of the coast. Fish larvae abundances were significantly higher at the southern site (LMEM, p < 0.05), and showed positive relationships to chlorophyll-a (Chl-a), mesozooplankton biomass, and surface temperatures, and a negative relationship to surface salinities (LMEM, p < 0.05). Species richness was similar at the three sites (106–117 spp.), but evenness was lower at the southern site due to the dominance of Cetengraulis mysticetus (39–82%) most of the year and one unidentified Labrisomidae in March (92.7%). At the central and northern sites, C. mysticetus was also abundant, although not as dominant, in conjunction with Eucinostomus sp. Besides these two species, Stellifer sp.1 and Auxis rochei drove differences in assemblages at the central site, whereas two Pomacentridae (Abudefduf troschelii, Pomacentridae sp.), Sphyraena ensis, Caranx sexfasciatus, and two Scombridae (Euthynnus lineatus, Katsuwonus pelamis) differentiate the assemblages at the northern site. Multivariate analyses suggest that fish larvae assemblages were significantly different among sampling dates (PERMANOVA, p < 0.05), and that temporal changes in Chl-a, mesozooplankton biomass, and surface salinities were correlated with assemblage variability. Our study highlights the important effects of seasonal changes in water column hydrographic conditions on the spatiotemporal variability of ichthyoplankton assemblages in coastal sites of the Eastern Tropical Pacific.

哥伦比亚沿海东热带太平洋鱼类浮游生物群的时空变异性
我们研究了哥伦比亚北部太平洋沿岸鱼类浮游生物群的时空变化。该地区生物多样性丰富,是重要的个体渔业区,但有关鱼类早期生活史动态的知识却十分匮乏。在一年的时间里,每隔一个月对三个地点(北部:北纬 6.3 度,中部:北纬 5.7 度,南部:北纬 4.9 度)进行取样,覆盖了沿岸 240 公里的不同海岸地貌梯度。南部地点的鱼类幼体丰度明显较高(LMEM,p < 0.05),与叶绿素-a(Chl-a)、中浮游生物生物量和表层温度呈正相关,与表层盐度呈负相关(LMEM,p < 0.05)。三个地点的物种丰富度相似(106-117 种),但南部地点的物种丰富度较低,原因是全年大部分时间 Cetengraulis mysticetus 占优势(39-82%),3 月份有一种未确定的 Labrisomidae 占优势(92.7%)。在中部和北部地点,C. mysticetus 与 Eucinostomus sp.和 Auxis rochei 则使中部地点的组合出现差异,而北部地点的组合则由两个 Pomacentridae(Abudefduf troschelii、Pomacentridae sp.)、Sphyraena ensis、Caranx sexfasciatus 和两个 Scombridae(Euthynnus lineatus、Katsuwonus pelamis)组成。多变量分析表明,不同采样日期的鱼类幼体组合存在显著差异(PERMANOVA,p < 0.05),而且 Chl-a、中浮游生物生物量和表层盐度的时间变化与组合变化相关。我们的研究强调了水体水文条件的季节性变化对东热带太平洋沿岸鱼类浮游生物群的时空变化的重要影响。
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来源期刊
Continental Shelf Research
Continental Shelf Research 地学-海洋学
CiteScore
4.30
自引率
4.30%
发文量
136
审稿时长
6.1 months
期刊介绍: Continental Shelf Research publishes articles dealing with the biological, chemical, geological and physical oceanography of the shallow marine environment, from coastal and estuarine waters out to the shelf break. The continental shelf is a critical environment within the land-ocean continuum, and many processes, functions and problems in the continental shelf are driven by terrestrial inputs transported through the rivers and estuaries to the coastal and continental shelf areas. Manuscripts that deal with these topics must make a clear link to the continental shelf. Examples of research areas include: Physical sedimentology and geomorphology Geochemistry of the coastal ocean (inorganic and organic) Marine environment and anthropogenic effects Interaction of physical dynamics with natural and manmade shoreline features Benthic, phytoplankton and zooplankton ecology Coastal water and sediment quality, and ecosystem health Benthic-pelagic coupling (physical and biogeochemical) Interactions between physical dynamics (waves, currents, mixing, etc.) and biogeochemical cycles Estuarine, coastal and shelf sea modelling and process studies.
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