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鱼类的遗传种群结构:对海岸带管理的影响。

Genetic population structure of fishes: implications for coastal zone management.

作者信息

Laikre Linda, Palm Stefan, Ryman Nils

机构信息

Department of Zoology, Stockholm University, Sweden.

出版信息

Ambio. 2005 Mar;34(2):111-9.

Abstract

The pattern for distribution of genetic variation within and between populations is referred to as the genetic population structure of the species. To avoid depletion of genetic resources sustainable management should be based on knowledge of this structure. We discuss key aspects of genetic population structure in the context of identifying biological units for fisheries management, suggesting three basic types of structuring: distinct populations; continuous change; and no differentiation. The type of structure determines how units for genetically sustainable management are to be identified. We also review what is currently known regarding the genetic population structure of fishes exploited in the Swedish part of the Baltic Sea, and conclude that sufficient genetic information is lacking for most of the species. This is a serious problem, particularly considering that populations of several commercially exploited fishes are declining and some exhibit recruitment problems. For six species, Atlantic herring, Atlantic salmon, brown trout, European eel, turbot, and pike, sufficient genetic data are available to provide at least basic information on genetic structure and genetic units for biologically sustainable use. Current management practices do not sufficiently consider these data.

摘要

种群内部和种群之间遗传变异的分布模式被称为该物种的遗传种群结构。为避免遗传资源枯竭,可持续管理应基于对这种结构的了解。我们在确定渔业管理生物单位的背景下讨论遗传种群结构的关键方面,提出三种基本的结构类型:不同种群;连续变化;无分化。结构类型决定了如何识别遗传可持续管理的单位。我们还回顾了目前关于波罗的海瑞典海域所捕捞鱼类遗传种群结构的已知情况,并得出结论,大多数物种缺乏足够的遗传信息。这是一个严重的问题,特别是考虑到几种商业捕捞鱼类的种群数量正在下降,有些还存在补充问题。对于大西洋鲱鱼、大西洋鲑鱼、褐鳟、欧洲鳗鲡、大菱鲆和梭子鱼这六个物种,有足够的遗传数据可提供至少关于遗传结构和遗传单位的基本信息,以实现生物可持续利用。当前的管理实践没有充分考虑这些数据。

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