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104. Blouin, M., Hodson, M.E., Delgado, E.A., Baker, G., Blouin, M., Brussaard, L., Butt, K.R.,
Dai, J., Dendooven, L., Pérès, G., Tondoh, J.E., Cluzeau, D., Brun, J.J.: A review of earthworm
impact on soil function and ecosystem services. Eur. J. Soil Sci. 64, 161–182 (2013). https://
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105. Fründ, C., Butt, K., Capowiez, Y., Eisenhauer, N., Emmerling, C., Ernst, G., Potthoff, M.,
Schädler, M., Schrader, S.: Using earthworms as model organisms in the laboratory: recommendations for experimental implementations. Pedobiologia 53, 119–125 (2010). https://doi.
org/10.1016/j.pedobi.2009.07.002
106. Chan, K.Y.: An overview of some tillage impacts on earthworm population abundance and
diversity—implications for functioning in soils. Soil Till. Res. 57, 179–191 (2001). https://
doi.org/10.1016/S0167-1987(00)00173-2
107. Fierer, N., Strickland, M.S., Liptzin, D., Bradford, M.A., Cleveland, C.C.: Global patterns in
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108. Casagrande, M., Peigné, J., Payet, V., Mäder, P., Sans, F.X., Blanco-Moreno, J.M., Antichi,
D., Bàrberi, P., Beeckman, A., Bigongiali, F., Cooper, J., Dierauer, H., Gascoyne, K., Grosse,
M., Heß, J., Kranzler, A., Luik, A., Peetsmann, E., Surböck, A., Willekens, K., David, C.:
Organic farmers’ motivations and challenges for adopting conservation agriculture in Europe
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109. Kuntz, M., Berner, A., Gattinger, A., Scholberg, J.M., Mäder, P., Pfiffner, L.: Influence of
reduced tillage on earthworm and microbial communities under organic arable farming.
Pedobiologia 56:251–260 (2013). https://doi.org/10.1016/j.pedobi.2013.08.005
110. Asshoff, R., Scheu, S., Eisenhauer, N.: Different earthworm ecological groups interactively impact seedling establishment. Eur. J. Soil Biol. 46, 330–334 (2010). https://doi.
org/10.1016/j.ejsobi.2010.06.005
111. Curry, J.P., Schmidt, O.: The feeding ecology of earthworms—A review. Pedobiologia 50,
463–477 (2007). https://doi.org/10.1016/j.pedobi.2006.09.001
112. Pavlícek, T., Csuzdi, C., Nevo, E.: Species richness and zoogeographic affinities of earthworms
in the Levant. In: The 7th International Symposium on Earthworm Ecology Cardiff Wales
2002. Pedobiologia 47, 452–457 (2003). https://doi.org/10.1078/0031-4056-00212
113. Richard, B., Decaens, T., Rougerrie, R., James, S.W., Porco, D., Herbert, P.D.N.: Reintegrating earthworm juveniles into soil biodiversity studies: species identification through
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2009.02822.x
114. Tracic, T., Valkowski, H., Stojanovic, M.: Endemic earthworms (Oligochaeta: Lumbricidae)
of the Balkan Peninsula: a review. Proc. Zool. Soc. London Ser. B 111, 197–236 (2016)
115. Ababsa, N., Laiche, A., Djabbar, F.: Abundance and species richness of lombric macrofauna
in a semi-arid forest ecosystem. J. Fundam. Appl. Sci. 9, 1634–1643 (2017)
116. Lemtiri, A., Colinet, G., Alabi, T., Cluzeau, D., Zirbes, L., Haubruge, É., Francis, F.: Focus
on: impacts of earthworms on soil components and dynamics. A review Biotechnol. Agron.
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117. Sims, R.W., Gerar, B.M.: A Synopsis of the Earthworms. Linnean Society of London, Pitman
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118. Van Praagh, B.: The biology and conservation of the Giant Gippsland Earthworm Megascolides australis McCoy, 1878. Soil Biol. Biochem. 24, 1363–1367 (1992). https://doi.org/10.
1016/0038-0717(92)90119-I
119. Lynn, H., Booth, L.H., O’Halloran, K.: A comparison of biomarker responses in the earthworm
Aporrectodea caliginosa to the organophosphorus insecticides diazinon and chlorpyrifos.
Environ. Toxicol. 20, 2494–2502 (2001). https://doi.org/10.1002/etc.5620201115
120. Wang, Y., Cang, T., Zhao, X., Yu, R., Chen, L., Wu, C., Qiang, W.: Comparative acute toxicity
of twenty-four insecticides to earthworm. Eisenia Fetida Ecotoxicol. Environment. Saf. 79,
122–128 (2012). https://doi.org/10.1016/j.ecoenv.2011.12.016
111
103. Satchell, J.E.: Earthworm microbiology. In: Satchell, J.E. (eds.) Earthworm Ecology, pp. 351–
364. Springer, Dordrecht (1983). shttps://doi.org/10.1007/978-94-009-5965-1_31
104. Blouin, M., Hodson, M.E., Delgado, E.A., Baker, G., Blouin, M., Brussaard, L., Butt, K.R.,
Dai, J., Dendooven, L., Pérès, G., Tondoh, J.E., Cluzeau, D., Brun, J.J.: A review of earthworm
impact on soil function and ecosystem services. Eur. J. Soil Sci. 64, 161–182 (2013). https://
doi.org/10.1111/ejss.12025
105. Fründ, C., Butt, K., Capowiez, Y., Eisenhauer, N., Emmerling, C., Ernst, G., Potthoff, M.,
Schädler, M., Schrader, S.: Using earthworms as model organisms in the laboratory: recommendations for experimental implementations. Pedobiologia 53, 119–125 (2010). https://doi.
org/10.1016/j.pedobi.2009.07.002
106. Chan, K.Y.: An overview of some tillage impacts on earthworm population abundance and
diversity—implications for functioning in soils. Soil Till. Res. 57, 179–191 (2001). https://
doi.org/10.1016/S0167-1987(00)00173-2
107. Fierer, N., Strickland, M.S., Liptzin, D., Bradford, M.A., Cleveland, C.C.: Global patterns in
belowground communities. Ecol Lett 12, 1238–1249 (2009). https://doi.org/10.1111/j.14610248.2009.01360.x
108. Casagrande, M., Peigné, J., Payet, V., Mäder, P., Sans, F.X., Blanco-Moreno, J.M., Antichi,
D., Bàrberi, P., Beeckman, A., Bigongiali, F., Cooper, J., Dierauer, H., Gascoyne, K., Grosse,
M., Heß, J., Kranzler, A., Luik, A., Peetsmann, E., Surböck, A., Willekens, K., David, C.:
Organic farmers’ motivations and challenges for adopting conservation agriculture in Europe
Organic. Agriculture 6, 281–295 (2016). https://doi.org/10.1007/s13165-015-0136-0
109. Kuntz, M., Berner, A., Gattinger, A., Scholberg, J.M., Mäder, P., Pfiffner, L.: Influence of
reduced tillage on earthworm and microbial communities under organic arable farming.
Pedobiologia 56:251–260 (2013). https://doi.org/10.1016/j.pedobi.2013.08.005
110. Asshoff, R., Scheu, S., Eisenhauer, N.: Different earthworm ecological groups interactively impact seedling establishment. Eur. J. Soil Biol. 46, 330–334 (2010). https://doi.
org/10.1016/j.ejsobi.2010.06.005
111. Curry, J.P., Schmidt, O.: The feeding ecology of earthworms—A review. Pedobiologia 50,
463–477 (2007). https://doi.org/10.1016/j.pedobi.2006.09.001
112. Pavlícek, T., Csuzdi, C., Nevo, E.: Species richness and zoogeographic affinities of earthworms
in the Levant. In: The 7th International Symposium on Earthworm Ecology Cardiff Wales
2002. Pedobiologia 47, 452–457 (2003). https://doi.org/10.1078/0031-4056-00212
113. Richard, B., Decaens, T., Rougerrie, R., James, S.W., Porco, D., Herbert, P.D.N.: Reintegrating earthworm juveniles into soil biodiversity studies: species identification through
DNA barcoding. Mol Ecol Resour. 10, 606–614 (2010). https://doi.org/10.1111/j.1755-0998.
2009.02822.x
114. Tracic, T., Valkowski, H., Stojanovic, M.: Endemic earthworms (Oligochaeta: Lumbricidae)
of the Balkan Peninsula: a review. Proc. Zool. Soc. London Ser. B 111, 197–236 (2016)
115. Ababsa, N., Laiche, A., Djabbar, F.: Abundance and species richness of lombric macrofauna
in a semi-arid forest ecosystem. J. Fundam. Appl. Sci. 9, 1634–1643 (2017)
116. Lemtiri, A., Colinet, G., Alabi, T., Cluzeau, D., Zirbes, L., Haubruge, É., Francis, F.: Focus
on: impacts of earthworms on soil components and dynamics. A review Biotechnol. Agron.
Soc. Environ. 18, 121–133 (2014)
117. Sims, R.W., Gerar, B.M.: A Synopsis of the Earthworms. Linnean Society of London, Pitman
Press (1985). ISBN 90 04 07582 8, 168 p
118. Van Praagh, B.: The biology and conservation of the Giant Gippsland Earthworm Megascolides australis McCoy, 1878. Soil Biol. Biochem. 24, 1363–1367 (1992). https://doi.org/10.
1016/0038-0717(92)90119-I
119. Lynn, H., Booth, L.H., O’Halloran, K.: A comparison of biomarker responses in the earthworm
Aporrectodea caliginosa to the organophosphorus insecticides diazinon and chlorpyrifos.
Environ. Toxicol. 20, 2494–2502 (2001). https://doi.org/10.1002/etc.5620201115
120. Wang, Y., Cang, T., Zhao, X., Yu, R., Chen, L., Wu, C., Qiang, W.: Comparative acute toxicity
of twenty-four insecticides to earthworm. Eisenia Fetida Ecotoxicol. Environment. Saf. 79,
122–128 (2012). https://doi.org/10.1016/j.ecoenv.2011.12.016
