Book review of Instream flows for recreation: a handbook on concepts and research methods
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Grass identification is not for the faint of heart, especially when one has to rely on dichotomous keys using terms like “glume” and “flexuous pedicels.” A good, illustrated field guide that avoids such specialized terms is invaluable for ranchers, amateur naturalists, landscapers, and a variety of grassland professionals that aren’t hard-core botanists. These are the audience that Iralee Barnard targets, and none of them will have any trouble using this handy volume that is short on words but generous with full-color photographs. Review info: Field Guide to the Common Grasses of Oklahoma, Kansas, and Nebraska . By Iralee Barnard, 2014. ISBN: 978-0700619450, 264 pp.
No abstract available. Review info: Nonlinear dynamic of interacting populations. By Alexander D. Bazykin, 1998. ISBN: 978-9810216856, 193 pp.
Bumblebee identification is generally considered straightforward, yet mistakes often are made due to the degree of similarity between the color patterns of different species. Bumble Bees of North America aims to improve the accuracy of identifications by both casual observers and professionals through the use of intuitive diagrams, descriptions, and the more technical dichotomous keys. In addition to providing the first complete field guide to North American bumblebees, the authors make efficient use of the reader’s attention by summarizing taxonomic history, favored food plants, and environmental issues concerning bumblebees. Review info: Bumble Bees of North America: An Identification Guide. By Paul H. Williams, Robbin W. Thorp, Leif L. Richardson & Sheila R. Colla, 2014. ISBN: 978-0691152226, 208 pp.
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In commemoration of the 100th anniversary of the British Ecological Society, Sutherland et al. (2013) identified 100 questions of fundamental significance in “pure” (i.e., not applied) ecology. A somewhat unexpected outcome of these authors’ exercise was the realization that, after 100 years of comprehensive, intensive scientific research, there remained “profound knowledge gaps” in ecology, such as a clear understanding of “the central mechanisms driving ecosystems…communities…, and even population dynamics.” Animal behavior (along with other attributes such as physiology and genetics) is such a mechanism that can structure ecological interactions, and the study of behavioral ecology provides important insights into many fundamental ecological phenomena. For example, the well-known historical characterization of ecology as the study of the distribution and abundance of organisms (Andrewartha and Birch 1954) invokes numerous questions, such as: what factors influence coexistence among competing species, or between predators and their prey? Ultimately, the answers to these and other questions are best addressed with fine-scale, mechanistic studies of habitat selection, foraging behavior/prey selection, and movement/dispersal behavior. Similarly, at the population level, insight into the spatial distribution of individuals could be gained with studies of territoriality, dominance hierarchies, and even mate choice.
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