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The seasonal phenology of A. glycines was studied in soyabeans at 15 sites on Sumatra. A. glycines densities peaked in the vegetative plant stage and ...
Read moreDNA based applications have the potential to significantly change how we monitor and assess biodiversity. Triturus cristatus, the great crested newt (...
Read moreConservation issues and a potential role in disease transmission generate the continued need to census Eurasian badgers Meles meles, but direct counts...
Read moreNative, wild bees are important pollinators for both crop and wild plants. With concerns over the availability and cost of managed honeybees, attentio...
Read morePollen and nectar are crucial resources for bees but vary greatly among plant species in their quantity, nutritional quality and timing of availabilit...
Read moreThe primary aim of many agri-environment schemes (AES) is to enhance biodiversity; however, the results of AES designed for this purpose have, to date...
Read moreRestoration of degraded grasslands through active revegetation often involves re-establishing populations of native grasses, which must withstand incr...
Read moreDisease models typically focus on temporal dynamics of infection, while often neglecting environmental processes that determine host movement. In many...
Read moreEmerging infectious diseases are one of the greatest threats to global biodiversity. Chytridiomycosis in amphibians is perhaps the most extreme exampl...
Read moreNovel ecosystems can differ from the native systems they replaced. We used phenology measures to compare ecosystem functioning between novel exotic-do...
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