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File:CSIRO ScienceImage 6997 Dr Denis Anderson of CSIRO Entomology examining bees in a hive at a cherry farm near Young New South Wales.jpg

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33: 235: 700: 241: 89: 55: 51: 47: 43: 37: 100: 68: 717:{{User:99of9/CSIRO_template |id=6997 |Title=Dr Denis Anderson of CSIRO Entomology examining bees in a hive at a cherry farm near Young, New South Wales. |Creator=Nick Pitsas |Creator_scheme=LCNA |Date=2007-10-12 |Date_scheme=ISO8601 |Description=About... 288:– You must give appropriate credit, provide a link to the license, and indicate if changes were made. You may do so in any reasonable manner, but not in any way that suggests the licensor endorses you or your use. 159:). Dr Anderson is currently using molecular and physical methods to investigate the ecology, epidemiology, invasiveness, co-evolution and control of exotic parasitic bee mites and their Asian honeybee hosts. 699: 694: 147:, is responsible for about 80% of this. In Australia, farmers rely on large populations of feral European honeybees (managed bees gone wild). The European honeybee is under threat The Asian honeybee, 59: 32: 189: 151:, poses a significant threat to these populations as it is a host to two types of predatory mites with the capacity to wipe out huge numbers of the European honeybee – the varroa mite ( 200: 133:
CSIRO ScienceImage 6997 Dr Denis Anderson of CSIRO Entomology examining bees in a hive at a cherry farm near Young New South Wales.jpg
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About one third of all food is produced as a result of insect pollination, and the European honeybee,
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File:CSIRO ScienceImage 6997 Dr Denis Anderson of CSIRO Entomology examining bees in a hive at a cherry farm near Young New South Wales.jpg
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