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首页> 外文期刊>Revista de Biología Tropical >Growth and population assessment of the queen conch Strombus gigas (Mesogastropoda: Strombidae) by capture mark-recapture sampling in a natural protected area of the Mexican Caribbean
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Growth and population assessment of the queen conch Strombus gigas (Mesogastropoda: Strombidae) by capture mark-recapture sampling in a natural protected area of the Mexican Caribbean

机译:通过在墨西哥加勒比海自然保护区中进行捕获标记捕获取样,对海螺皇后海螯虾(Mesogastropoda:Strombidae)的生长和种群评估

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The Inlet of Xel-Ha is used as a park for ecotourism, representing a sanctuary for the conservation of Pink Queen Conch. Increasing fishing pressure has led to the inclusion of the species in CITES. Most knowledge about the growth of the queen conch was generated through aquaculture, ocean enclosures or obtained using estimates derived from population dynamics. In this study we estimated the growth rate of juvenile S. gigas in a natural protected area by direct methods, during the period of April 2009 to January 2011. Data was obtained by capture-mark-recapture sampling. 1418 individuals were tagged and growth of 714 conchs was analyzed. Population size and density was estimated using Schnabel’s method. The average density was estimated at 0.1694 ± 0.0996ind. m-2, while the highest density was estimated for September 2010 (0.3074ind. m-2). The highest growth rate (0.27 ± 0.10mm day-1) was detected in juveniles with an initial size between 100-149mm, followed by conch 200mm (0.08 ± 0.07mm day-1). Variability in growth rate was high in conch 100-149mm and showed seasonal differences, with the highest growth rate in May 2010. Recruitment of juveniles was highest in October 2009 and February 2010. The population of Xel-Ha has grown in size and more large and juvenile conch could be found than in previous studies, indicating that Xel-ha park is working as a sanctuary for the conservation of the queen conch in Mexico’s Riviera Maya. The growth rate of juvenile conch in Xel-Ha is high and exhibits large variations in individuals, reflecting the natural conditions of foraging and aggregation. Seasonal differences in growth rate may be associated with water quality and availability of nutrients for primary production. We conclude that the direct method is useful for the assessment of growth in juvenile S. gigas and that growth in natural conditions may be higher than in aquaculture systems. This information may be applied to fishery management as well as rehabilitation programs and aquaculture.
机译:Xel-Ha入口被用作生态旅游公园,代表了保护粉红色女王海螺的圣所。日益增加的捕捞压力导致该物种被列入《濒危野生动植物种国际贸易公约》。有关海螺女王生长的大多数知识是通过水产养殖,海洋围护获得的,或使用人口动态估算得出的。在这项研究中,我们通过直接方法估算了2009年4月至2011年1月期间自然保护区中的少年链球菌的生长速度。数据是通过捕获标记-捕获再取样获得的。标记了1418个人,并分析了714个海螺的生长。人口规模和密度是使用Schnabel方法估算的。平均密度估计为0.1694±0.0996ind。 m-2,而最高密度估计为2010年9月(0.3074ind。m-2)。在初始大小在100-149mm之间的幼鱼中,最高的生长速率(0.27±0.10mm第1天)被发现,随后是海螺200mm(第1天的0.08±0.07mm)。海螺100-149mm的生长率变异性很高,并表现出季节差异,2010年5月增长率最高。2009年10月和2010年2月,青少年的招聘数量最高。Xel-Ha的人口规模不断扩大,而且规模更大与以前的研究相比,可以找到幼稚的海螺,这表明Xel-ha公园正在作为墨西哥里维埃拉玛雅河女王海螺保护区的保护区。 Xel-Ha的海螺幼鱼生长率高,个体差异大,反映了觅食和聚集的自然条件。增长率的季节性差异可能与水质和初级生产所需养分的利用率有关。我们得出的结论是,直接方法可用于评估S. gigas幼鱼的生长,自然条件下的生长可能高于水产养殖系统中的生长。该信息可以应用于渔业管理以及恢复计划和水产养殖。

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