RETHINKING THE STOCK CONCEPT - A PHYLOGEOGRAPHIC APPROACH

被引:181
作者
DIZON, AE
LOCKYER, C
PERRIN, WF
DEMASTER, DP
SISSON, J
机构
[1] Southwest Fisheries Science Center, National Marine Fisheries Service, La Jolla, California
[2] NERC, Sea Mammal Research Unit, British Antarctic Survey, Cambridge
[3] Southwest Fisheries Science Center, National Marine Fisheries Service, La Jolla, California
关键词
D O I
10.1046/j.1523-1739.1992.610024.x
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
The "stock" is the fundamental population unit of legally mandated conservation efforts, yet its formal definition in the scientific literature and in two U.S. conservation acts is varied and so general that attempts to apply it in practice are arbitrary. Because choice of stocks deserving management protection is sometimes politically contentious, improvement of the working definition is important. A key element should be the degree to which a population can be considered an evolutionarily significant unit. We propose that a hierarchial classification scheme be applied to stock designations. Category I populations, having the highest probability of being evolutionarily significant units, are characterized by a discontinuous genetic divergence pattern where locally adapted and closely related genome assemblages are separated from others geographically and by significant genetic distances. Category II populations are similarly characterized by significant genetic diversity, but with weak geographic partitioning. Category III populations are the converse of II, having little genetic differentiation between assemblages that are clearly separate and likely to be reproductively isolated. Category IV assemblages have the lowest probability of being evolutionarily significant units and are characterized by extensive gene flow and no subdivision by extrinsic barriers. In addition to phylogeographic designation, the following information is used in the classification, as indicated by single-letter abbreviations: distribution (a), population response (b), phenotypic (c), and genotypic (d) information. Included are evidence both for and against designating population as a separate stock. In the designation "Type II a/bc," for example, information to the right of the solidus would be evidence for "lumping," to the left would be for "splitting." Missing letter abbreviations would signify lack of reliable data. Note that phylogeographic designation depends on the results of selection operating to produce a locally adapted genome (indicated by differences in demographic, phenotypic, and genotypic measures) and on gene flow (indicated by differences in distribution or by movement data). Hierarchial stock categorization allows resource managers to direct limited resources to the populations most deserving of protection, that is, the populations that are most likely to be evolutionarily significant units. Using this comprehensive classification of stock allows preliminary, conservative splitting of assemblages where data are lacking without the danger that these divisions will become entrenched as biological dogma.
引用
收藏
页码:24 / 36
页数:13
相关论文
共 64 条
  • [51] Sergeant D.E., Levels of mercury and organochlorine residues in tissue of sea mammals from the St. Lawrence estuary, International Council for the Exploration of the Sea, (1980)
  • [52] Sinclair M., Marine populations, An essay on population regulation and speciation, (1988)
  • [53] Slatkin M., Gene flow and the geographic structure of natural populations, Science, 236, pp. 787-792, (1987)
  • [54] Sytsma K.J., DNA and morphology: inference of plant phylogeny, Trends in Ecology and Evolution, 5, pp. 104-110, (1990)
  • [55] Tanabe S., Miura S., Tatsukawa R., Variations of organochlorine residues with age and sex in Antarctic minke whale. Memoirs of the National Institute for Polar Research, Special Issue, 44, pp. 174-181, (1986)
  • [56] Taylor R.H.F., An unusual record of three species of whale being restricted to pools in the Antarctic sea ice, Proceedings of the Zoological Society, London, 129, pp. 325-331, (1957)
  • [57] Wada S., Movements of marked minke whales in the Antarctic, Reports of the International Whaling Commission, 34, pp. 349-355, (1984)
  • [58] Wada S., Latitudinal segregation of the Okhotsk Sea—West Pacific stock of minke whales, Reports of the International Whaling Commission, 39, pp. 229-233, (1989)
  • [59] Wada S., Kobayashi T., Numachi K-I., pp. 203-216, (1991)
  • [60] Reports of the International Whaling Commission, Special Issue 13