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首页> 外文期刊>Journal of Fish Biology >Fishes associated with artificial reefs: attributing changes toattraction or production using novel approaches
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Fishes associated with artificial reefs: attributing changes toattraction or production using novel approaches

机译:与人工鱼礁有关的鱼类:利用新方法将变化归因于吸引力或生产

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摘要

Two widely-recognized hypotheses propose that increases in fish abundance at artificial reefs are caused by (a) the attraction and redistribution of existing individuals, with no net increase in overall abundance and (b) the addition of new individuals by production, leading to a net increase in overall abundance. Inappropriate experimental designs have prevented many studies from discriminating between the two processes. Eight of 11 experiments comparing fish abundances on artificial reefs with those on adjacent soft bottom habitats were compromised by a lack of replication or spatial interspersion in the design itself. Only three studies featured proper controls and replicated designs with the interspersion of reef and control sites. Goodness of fit tests of abundance data for 67 species from these studies indicated that more fishes occur on reefs than on controls, particularly for species that typically occur over hard substrata. Conversely, seagrass specialists favour controls over reefs. Changes in the appearance of fish abundance trajectories driven by manipulation of sampling intervals highlight the need for adequate temporal sampling to encompass key life history events, particularly juvenile settlement. To ultimately determine whether attraction and production is responsible for increased abundances on reefs, requires two experimental features: 1) control sites, both interspersed among artificial reefs and at reef and non-reef locations outside the test area and 2) incorporation of fish age and length data over time. Techniques such as otolith microchemistry, telemetry and stable isotope analysis can be used to help resolve feeding and movement mechanisms driving attraction and production.
机译:两种公认的假说提出,人工鱼礁中鱼类的丰度增加是由于(a)现有个体的吸引和再分配而总体丰度没有净增加,以及(b)生产增加了新个体,导致总体丰度净增加。不适当的实验设计使许多研究无法区分这两个过程。 11个实验中有8个将人造礁石上的鱼的丰度与相邻的软底生境上的鱼的丰度进行了比较,这是由于设计本身缺乏复制或空间散布而受到损害的。只有三项研究采用了适当的控制措施,并在珊瑚礁和控制点之间进行了重复设计。这些研究对67个物种进行的丰度数据的拟合优度检验表明,鱼礁上的鱼类比对照组多,特别是对于通常发生在坚硬基质上的鱼类。相反,海草专家赞成控制珊瑚礁。通过操纵采样间隔驱动的鱼类丰度轨迹外观的变化突显了需要进行足够的时间采样以涵盖关键的生活史事件,特别是少年定居事件。为了最终确定吸引和生产是否是礁石丰度增加的原因,需要两个实验特征:1)控制点,散布在人工礁石之间以及测试区域之外的礁石和非礁石位置; 2)鱼龄和随时间变化的长度数据。耳石微化学,遥测和稳定同位素分析等技术可用于帮助解决驱动吸引和生产的进料和运动机制。

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