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Much of what is known about avian species-habitat relations has been derived from studies of birds at local scales. It is
entirely unclear whether the relations observed at these scales translate to the larger landscape in a predictable linear
fashion. We derived habitat models and mapped predicted abundances for three forest bird species of eastern North America
using bird counts, environmental variables, and hierarchical models applied at three spatial scales. Our purpose was to understand
habitat associations at multiple spatial scales and create predictive abundance maps for purposes of conservation planning
at a landscape scale given the constraint that the variables used in this exercise were derived from local-level studies.
Our models indicated a substantial influence of landscape context for all species, many of which were counter to reported
associations at finer spatial extents. We found land cover composition provided the greatest contribution to the relative
explained variance in counts for all three species; spatial structure was second in importance. No single spatial scale dominated
any model, indicating that these species are responding to factors at multiple spatial scales. For purposes of conservation
planning, areas of predicted high abundance should be investigated to evaluate the conservation potential of the landscape
in their general vicinity. In addition, the models and spatial patterns of abundance among species suggest locations where
conservation actions may benefit more than one species. 相似文献
13.
Heat production and temperature regulation in eastern skunk cabbage 总被引:11,自引:0,他引:11
R M Knutson 《Science (New York, N.Y.)》1974,186(4165):746-747
The spadix of Symplocarpus foetidus L. maintains an internal temperature 15 degrees to 35 degrees C above ambient air temperatures of -15 degrees to +15 degrees C. For at least 14 days it consumes oxygen at a rate comparable to that of homeothermic animals of equivalent size. Temperature regulation is accomplished by variations in respiratory rate. 相似文献
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Cultivation of fungi for food by fungus-growing ants (Attini: Formicidae) originated about 50 million years ago. The subsequent evolutionary history of this agricultural symbiosis was inferred from phylogenetic and population-genetic patterns of 553 cultivars isolated from gardens of "primitive" fungus-growing ants. These patterns indicate that fungus-growing ants succeeded at domesticating multiple cultivars, that the ants are capable of switching to novel cultivars, that single ant species farm a diversity of cultivars, and that cultivars are shared occasionally between distantly related ant species, probably by lateral transfer between ant colonies. 相似文献
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Micropropagation is a tissue culture technique adapted for the rapid multiplication of disease-free seed stocks. Procedures for propagating potatoes in the laboratory and acclimating plantlets in the greenhouse are available, but information on cultural practices for maximizing tuber yield of plantlets when transplanted to the field is lacking. Centennial Russet and Russet Burbank plantlets were transferred from culture jars to three sizes of transplant containers for establishment under greenhouse conditions before transplanting to the field. Length of field growing season was varied by using two transplant dates and two vine kill dates. Survival of field transplanted plantlets was above 95 percent in both 1983 and 1984. Cultural practices significantly affected the tuber yield of plantlets of both cultivars. Total yield and yield of tubers larger than 35 mm in diameter increased with increasing transplant container volume. Transplant container volume had no effect on the yield of tubers less than 35 mm in diameter. Highest total yields and tuber production per plantlet for both Centennial Russet and Russet Burbank were obtained from the longest growing season (early transplant date with late vine kill). Yield of Russet Burbank plantlets increased more in response to a longer growing season than did Centennial Russet. 相似文献