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海洋保护区与周边捕捞区域之间的鱼类连通模式。

Patterns of Fish Connectivity between a Marine Protected Area and Surrounding Fished Areas.

作者信息

Sahyoun Rita, Guidetti Paolo, Di Franco Antonio, Planes Serge

机构信息

EPHE, PSL Research University, UPVD, CNRS, USR 3278 CRIOBE, Perpignan, France.

Université Côte d'Azur, UCA, CNRS, ECOMERS, Parc Valrose, Avenue Valrose, Nice, France.

出版信息

PLoS One. 2016 Dec 1;11(12):e0167441. doi: 10.1371/journal.pone.0167441. eCollection 2016.

DOI:10.1371/journal.pone.0167441
PMID:27907100
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5131959/
Abstract

Patterns of connectivity and self-recruitment are recognized as key factors shaping the dynamics of marine populations. Connectivity is also essential for maintaining and restoring natural ecological processes with genetic diversity contributing to the adaptation and persistence of any species in the face of global disturbances. Estimates of connectivity are crucial to inform the design of both marine protected areas (MPAs) and MPA networks. Among several approaches, genetic structure is frequently used as a proxy for patterns of connectivity. Using 8 microsatellite loci, we investigated genetic structure of the two-banded sea bream Diplodus vulgaris, a coastal fish that is both commercially and ecologically important. Adults were sampled in 7 locations (stretches of coastline approximately 8 km long) and juveniles in 14 sites (~100 to 200 m of coastline) along 200 km of the Apulian Adriatic coast (SW Adriatic Sea), within and outside an MPA (Torre Guaceto MPA, Italy). Our study found similar genetic diversity indices for both the MPA and the surrounding fished areas. An overall lack of genetic structure among samples suggests high gene flow (i.e. connectivity) across a scale of at least 200 km. However, some local genetic divergences found in two locations demonstrate some heterogeneity in processes renewing the population along the Apulian Adriatic coast. Furthermore, two sites appeared genetically divergent, reinforcing our observations within the genetic makeup of adults and confirming heterogeneity in early stage genetics that can come from either different supply populations or from chaotic genetic patchiness occurring under temporal variation in recruitment and in the reproductive success. While the specific role of the MPA is not entirely known in this case, these results confirm the presence of regional processes and the key role of connectivity in maintaining the local population supply.

摘要

连通模式和自我补充被认为是塑造海洋种群动态的关键因素。连通性对于维持和恢复自然生态过程也至关重要,遗传多样性有助于任何物种在面对全球干扰时的适应和存续。连通性估计对于指导海洋保护区(MPA)和MPA网络的设计至关重要。在多种方法中,遗传结构经常被用作连通模式的替代指标。我们使用8个微卫星基因座,研究了双带海鲷(Diplodus vulgaris)的遗传结构,双带海鲷是一种具有商业和生态重要性的沿海鱼类。在意大利亚得里亚海西南部阿普利亚海岸200公里沿线的一个MPA(托雷瓜切托MPA)内外,在7个地点(约8公里长的海岸线区域)采集了成年个体样本,并在14个地点(约100至200米的海岸线)采集了幼体样本。我们的研究发现MPA和周边捕捞区域的遗传多样性指数相似。样本之间总体缺乏遗传结构,这表明在至少200公里的尺度上存在高基因流(即连通性)。然而,在两个地点发现的一些局部遗传差异表明,阿普利亚亚得里亚海沿岸种群更新过程存在一些异质性。此外,两个地点在基因上似乎存在差异,这强化了我们在成年个体基因组成方面的观察结果,并证实了早期遗传学中的异质性,这种异质性可能来自不同的供应种群,也可能来自补充和繁殖成功的时间变化下出现的混乱遗传斑块。虽然在这种情况下MPA的具体作用尚不完全清楚,但这些结果证实了区域过程的存在以及连通性在维持当地种群供应中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d939/5131959/9b0d17f5f941/pone.0167441.g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d939/5131959/be065b473140/pone.0167441.g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d939/5131959/9b0d17f5f941/pone.0167441.g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d939/5131959/be065b473140/pone.0167441.g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d939/5131959/9b0d17f5f941/pone.0167441.g002.jpg

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