HR: 0800h
AN: H21C-1034 [Abstracts]
TI: Can Periodic Cicadas be used as a Biomonitor for Arsenical Pesticide Contamination?
AU: * Robinson, G R
EM: grobinso@usgs.gov
AF: US Geological Survey, 954 National Center, Reston, VA 20192
United States
AU: Sibrell, P L
EM: philip_sibrell@usgs.gov
AF: US Geological Survey, 11649 Leetown Road, Kearneyville, WV 25430
United States
AU: Boughton, C J
EM: cboughton@usgs.gov
AF: US Geological Survey, 11649 Leetown Road, Kearneyville, WV 25430
United States
AU: Yang, L
EM: lhyang@ucdavis.edu
AF: University of California-Davis, One Shields Avenue, Davis, CA 95616
United States
AU: Hancock, T C
EM: thancock@usgs.gov
AF: US Geological Survey, 1730 East Parham Road, Richmond, VA 23228
United States
AB:
Widespread use of arsenical pesticides on fruit crops, particularly apple orchards, during the first half of the 20th century
is a significant source of arsenic to agricultural soil in the Mid-Atlantic region. Cumulative application rates may be as
high as 37 Kg/hectare of arsenic in orchard areas. Brood X 17-year periodic cicadas (Magicicada spp.) emerged at densities up
to 30,000 or more individuals per hectare in orchard and forest habitats during May-June, 2004, in Clarke and Frederick
Counties, Virginia and in Berkeley and Jefferson Counties, West Virginia. These cicadas were sampled to evaluate the
bioavailability of arsenic in orchard and non-orchard reference site soils. Potentially toxic elements, such as arsenic and
other heavy metals bind to sulfhydryl groups, and thus may accumulate in keratin-rich tissues, such as cicada nymphal exuviae
and adult exoskeletons. These cicadas feed on plant roots underground for 17 years before emerging to molt into their adult
form. Adult cicadas have very limited dispersal, rarely traveling more than 50 m in a flight. As such, their body and
exoskeleton keratin has potential value as a biomonitor for arsenic and other metals that is spatially referenced to local
conditions for the duration of time the nymphs live in the soil. This study addresses the following research questions: (1)
do the soils in and adjacent to orchard sites where arsenical pesticide was used contain elevated concentrations of arsenic
and other metals relative to likely background conditions?; (2) can periodic cicadas be used as an easily sampled biomonitor
measuring bioavailability of pesticide residues in soils?; and (3) do the concentration levels of arsenical pesticide
residues in periodic cicadas emerging from contaminated orchard sites pose a dietary threat to birds and other wildlife that
preferentially feed upon cicadas during emergence events?
DE: 0345 Pollution--urban and regional (0305)
DE: 0400 Biogeosciences
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting