ON FARM LEVEL
Integrated pest control
The effects of herbicides on soil life
6
Potter, DA, Buxton, MC, Redmond, CT, Patterson, CG and Powell, AJ. 1990.
Toxicity of pesticides to earthworms
(Oligochaeta: Lumbricidae)
and effect on
thatch degradation in Kentucky bluegrass turf
. J Econ. Entomol. 83, 2 362 - 2 369.
7
Wardle, DA. 1995.
Impacts of disturbance on detritus food webs in agro-ecosys-
tems of contrasting tillage and weed management practices
. Adv Ecol Res 26,
105 - 185.
8
Xiao, H, Zhou, QX and Liang, JD. 2004.
Single and joint effects of acetochlor and
urea on earthworm
Eisenia fetida
populations in phaiozem
. Environ Geochem
Health 26, 277 - 283.
9
Barja, BC and Santos, MA. 2005.
Aminomethylphosphonic acid and glyphosate
adsorption onto goethite: A comparative study
. Environ. Sci. Technol. 39, 585 -
592.
10
Vereecken, H. 2005.
Mobility and leaching of glyphosate: A review
. Pest Manag.
Sci. 61, 1 139 - 1 151.
11
Domínguez, A, Brown, GG, Sautter, KD, Oliveira, CMR, Vasconcelos, EC, Niva,
CC, Bartz, MLC and Bedano, JC. 2016.
Toxicity of AMPA to the earthworm
Eise-
nia andrei Bouché,
1972 in tropical artificial soil
. Sci. Rep. 6, 19731. Retrieved
from: DOI:10.1038/srep19731.
12
Dalby, PR, Baker, GH and Smith, SE. 1995.
Glyphosate, 2,4-DB and dimethoate:
effects on earthworm survival and growth.
Soil boil. Biochem. 27, 1 661 - 1 662.
13
Garcia-Torres, T, Guiffré, L, Romaniuk, R, Ríos, RP and Pagano, EA. 2014.
Expo-
sure assessment to glyphosate of two species of annelids
. Bull. Environ. Con-
tam. Toxicol. 93, 209 - 214.
14
Piola, L, Fuchs, J, Oneto, ML, Basack, S, Kesten, E and Casabé, N. 2013.
Com-
parative toxicity of two glyphosate-based formulations to
Eisenia andrei
under
laboratory conditions
. Chemosphere 91, 545 - 551.
15
Fisher, E. 1989.
Effects of atrazine and paraquat-containing herbicides on
Eise-
nia fetida (Annelida. Oligochaeta). Zool. Anz 223, 291 - 300.
16
Correia, FV and Moreira, JC. 2010.
Effects of glyphosate and 2,4-D on earth-
worms
(Eisenia foetida)
in laboratory tests
. Bull. Environ. Contam. Toxicol. 85,
264 - 268.
17
Santadino, M, Coviella, C and Momo, F. 2014.
Glyphosate sub lethal effects on
the population dynamics of the earthworm
Eisenia fetida
(Savigny, 1826)
. Water
soil Pollut. 225, 2207. Retrieved from: Doi 10.1007/s11270-014-2207-3.
18
Yasmin, S and D’Souza, D. 2007.
Effect of pesticides on the reproductive output
of
Eisenia fetida. Bull. Environ. Contam. Toxicol. 79, 529 - 532.
19
Reinecke, AJ, Maboeta, MS, Vermeulen, LA and Reinecke, SA. 2002.
Assess-
ment of lead nitrate and Mancozeb toxicity in earthworms using the avoidance
response
. Bull. Environ. Contam. Toxicol. 68, 779 - 786.
20
Verrell P and Van Buskirk, E. 2004.
As the worm turns:
Eisenia fetida
avoids soil
contaminated by a glyphosate-based herbicide
.
Bull Environ. Contam. Toxicol
72, 219 - 224.
21
Gaupp-Berghausen M, Hofer M, Rewald B and Zaller JG. 2015.
Glyphosate-
based herbicides reduce the activity and reproduction of earthworms and lead
to increased soil nutrient concentrations
. Sci. Rep. 5, 12886. Retrieved from:
DOI:10.1038/srep12886.
22
Carter LJ and Boxall ABA. 2016.
Does uptake of pharmaceuticals vary across
earthworm species?
Bull Environ Contam. Toxicol. 97, 316 - 322.
23
Bon D, Gilard V, Massou S, Pérès G, Malet-Martino M, Martino R and Desmoulin
F. 2006.
In vivo
31
P and
1
H HR-MAS NMR spectroscopy analysis of the unstarved
Aporrectodea caliginosa
(Lumbricidae)
. Biol. Fertil. Soils 43, 191 - 198.
24
Givaudan N, Binet F, Le Bot B and Wiegand C. 2014.
Earthworm tolerance to re-
sidual agricultural pesticide contamination: field and experimental assessment
of detoxification capabilities
. Environ. Pollut. 192, 9 - 18.
25
Velki, M and Ečimovič, S. 2015.
Changes in exposure temperature lead to chang-
es in pesticide toxicology to earthworms: A preliminary study
. Environmental
Toxicology and Pharmacology 40, 774 - 784.