首页> 外文会议>Symposium Fisheries Ecology of Gulf of Mexico Red Snapper >Factors Affecting Catch and Release (CAR) Mortality in Fish: Insight into CAR Mortality in Red Snapper and the Influence of Catastrophic Decompression
【24h】

Factors Affecting Catch and Release (CAR) Mortality in Fish: Insight into CAR Mortality in Red Snapper and the Influence of Catastrophic Decompression

机译:影响鱼类中捕获和释放(汽车)死亡率的因素:对红鲷鱼的汽车死亡率以及灾难性减压的影响

获取原文

摘要

The red snapper Lutjanus campechanus fishery is arguably one of the most important in the Gulf of Mexico, but habitat destruction, climate change, and serial overfishing has resulted in significant population declines in red snapper and other high-profile fisheries species. The red snapper fishery may be one of the best examples where management strategies that promote catch and release (CAR) have failed. Populations have not recovered despite CAR management strategies, likely because CAR mortality is high; however, the basis for CAR mortality is unclear. Numerous studies associated with fishing-induced mortality were reviewed in an attempt to make generalizations as to how red snapper and other high-profile fisheries species respond to CAR. A framework for understanding CAR mortality in red snapper and other species was constructed based on four pillars: retrieval conditions, species and size relationships, handling, and release conditions. Each of these fishing factors was examined as to relativeimpact toward CAR. A predictive model was generated from all available data on CAR mortality. For a deep-water fish like red snapper, the underlying problem is directly related to capture depth, particularly injuries related to rapid swim bladder (SB) over-inflation and catastrophic decompression syndrome (CDS). If not immediately lethal, depth-related injuries may have long term effects on growth and immune function that could go unnoticed and are unaccounted for in traditional field studies; all other fishing factors will only intensify this baseline impairment. Management plans are typically built under the assumption that CAR mortality is below 20%, but it is widely accepted that this is a gross underestimate. Modeling from this review suggests that, in red snapper, mortality may be as low as 20% but only if fish are caught between 0 and 20 m depths. This is not the case, and CAR mortality may reach 100% if fish are retrieved from deeper than 110m. Current CAR management strategies are ineffective, and not enough information exists to impose maximum fishing depths. Given these limitations, a logical approach would be to restrict particular areas such that fish populations can be protected from all fishing and CAR activity, therefore protecting age, size, and sex classes and ratios. For fish species like red snapper, where overfishing is widespread and CAR mortality is high, or other species where CAR is unclear and a thorough investigation as to depth-related CAR mortality has not been performed, strategies based on space (i.e., marine protected areas and no-take reserves), rather than time or numbers (i.e., season closures, size limits, bag limits, etc.), have the greatest potential for overall conservation and sustainability and should be strongly considered.
机译:Red Snapper Lutjanus Cancchansus渔业可以说是墨西哥湾最重要的渔业之一,但栖息地破坏,气候变化和连续过度捕捞导致红鲷鱼和其他高调的渔业物种中的大量人口下降。红鲷鱼渔业可能是促进捕获和释放(汽车)失败的管理策略的最佳例子之一。尽管汽车管理策略,但可能因为汽车死亡率很高,人口仍未收回;然而,汽车死亡率的基础尚不清楚。综述了与捕鱼诱导的死亡有关的许多研究,试图展示红鲷鱼和其他高调的渔业物种如何回应汽车。基于四个支柱构建了一种用于了解红鲷鱼和其他物种的汽车死亡率的框架:检索条件,物种和尺寸关系,处理和释放条件。检查这些钓鱼因素的每个钓鱼因素都是对汽车相对的。从所有可用的汽车死亡数据产生预测模型。对于像红鲷鱼这样的深水鱼类,潜在的问题与捕获深度直接相关,特别是与快速游泳膀胱(SB)过通胀和灾难性减压综合征(CDS)相关的伤害。如果没有立即致命,有关的伤害可能会对生长和免疫功能产生长期影响,这可能不会被忽视,并且在传统的田间研究中未占用;所有其他捕捞因素只会加强此基线损害。管理计划通常在假设汽车死亡率低于20%之下建立,但众所周知,这是低估的。从本次审查中建模表明,在红鲷鱼中,死亡率可能低至20%,但只有鱼在0到20米深度之间。如果鱼类从110米更深的情况下检索,则这不是这种情况,汽车死亡率可能达到100%。目前的汽车管理策略是无效的,并且不够提供足够的信息来强加最大的钓鱼深度。鉴于这些限制,逻辑方法是限制特定领域,使鱼群可以免受所有渔业和汽车活动的保护,因此保护年龄,大小和性别课程和比率。对于像红鲷鱼这样的鱼种,过度捕捞是普遍的,汽车死亡率高,或者汽车尚不清楚的其他物种,并且尚未进行彻底调查,尚未进行深度相关的汽车死亡率,基于空间的策略(即海洋保护区无需储备),而不是时间或数字(即季节闭包,尺寸限制,袋子限制等),对整体保护和可持续性具有最大的潜力,并且应该被强烈考虑。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号