影响西西里海峡(地中海)深水玫瑰虾(Parapenaeus longirostris, Lucas, 1846)数量分布的环境因素

IF 2.1 3区 地球科学 Q2 OCEANOGRAPHY Continental Shelf Research Pub Date : 2024-09-07 DOI:10.1016/j.csr.2024.105323
Francesco Bignami , Fabio Fiorentino , Germana Garofalo , Enrico Zambianchi , Simone Colella , Roberto Sorgente , Antonio Olita , Angela Landolfi , Federico Quattrocchi , Peter I. Miller
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引用次数: 0

摘要

研究了西西里海峡底层渔业的主要目标物种深水玫瑰虾(Parapenaeus longirostris,粮农组织 3 alpha 代码 DPS)的分布与海面参数和生物地球化学过程的关系。众所周知,这些过程会影响海底生境,而且由于西西里海峡相对较浅,表层初级生产力较高,因此与西西里海峡尤其相关。对多年度和季节性拖网调查(2004-2008 年)中记录的虾丰度进行了分析。考虑到 DPS 早期生命阶段在沉降前的浮游行为,进行了 GAMM 和 GAM 模型分析,将幼虾丰度与遥感海面温度(SST)和海面叶绿素(chl)的月平均空间模式及其前沿结构进行比较,时滞为一个月。幼虾和总虾的丰度还与颗粒有机碳(POC)流入海床的通量进行了比较。POC 通量是通过模拟表层 POC 的下沉、再矿化、水平平流和扩散的一维和三维模型计算出来的。后者是从海洋颜色数据获得的表层初级生产图中推导出来的。结果表明,DPS 幼体部分的丰度与深度、到 SST 锋面的距离和 chl 锋面的强度有显著相关性(相关系数 R2 = 80%)。此外,研究结果强烈表明,底层 POC 通量在调节 DPS 丰度分布方面起着重要作用,这表明表层水发生的生态过程影响着调查区域海底附近的食物供应。
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Environmental factors affecting the distribution of deep-water rose shrimp (Parapenaeus longirostris, Lucas, 1846) abundance in the Strait of Sicily (Mediterranean Sea)

The distribution of deep-water rose shrimp (Parapenaeus longirostris, FAO 3 alpha code DPS), the main target species of demersal fisheries in the Strait of Sicily, is investigated in relation to surface parameters and biogeochemical processes. Such processes are known to influence sea bottom habitats and may be particularly relevant to the Strait of Sicily because of its relative shallowness and high surface primary production. Shrimp abundances recorded during multi-annual and seasonal trawl surveys (2004–2008) are analyzed. A GAMM and GAM model analysis is performed comparing juvenile abundances to monthly mean spatial patterns of remotely-sensed sea surface temperature (SST) and surface chlorophyll (chl), as well as their frontal structures, with a time-lag of one month, given the pelagic behavior of DPS early life stages preceding settlement. Juvenile and total shrimp abundances are also compared to the flux of particulate organic carbon (POC) to the seabed. The POC flux is computed via 1-D and 3-D models simulating sinking, re-mineralization and horizontal advection and diffusion of surface POC. The latter is derived from surface primary production maps obtained from ocean color data. Results show that the abundance of the juvenile fraction of DPS is significantly correlated with depth, distance to SST fronts and the intensity of chl fronts (correlation R2 = 80%). Furthermore, results strongly suggest the significant role of bottom POC flux in conditioning the distribution of DPS abundance, indicating that ecological processes occurring in surface waters influence food availability near the seabed in the investigated area.

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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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