112
E. Vavoulidou et al.
121. Reddell, P., Spain, A.V.: Earthworms as vectors of viable propagules of mycorrhizal fungi.
Soil Biol. Biochem. 23, 767–774 (1991). https://doi.org/10.1016/0038-0717(91)90147-C
122. Fierer, N.: Earthworms’ place on Earth. Science 366, 425–426 (2019). https://doi.org/10.
1126/science.aaz5670
123. Lu, Y., Nakicenovic, N., Visbeck, M., Stevance, A.S.: Five priorities for the UN Sustainable
Development Goals. Nature 520, 432–433 (2015). https://doi.org/10.1038/520432a
124. Brown, G.G., Barois, I., Lavelle, P.: Regulation of soil organic matter dynamics and microbial
activity in the drilosphere and the role of interactions with other edaphic functional domains.
Eur. J. Soil Biol. 36, 177–198 (2000). https://doi.org/10.1016/S1164-5563(00)01062-1
125. Pauli, N., Abbott, L.K., Negrete-Yankelevich, S., Andrés, P.: Farmers’ knowledge and use of
soil fauna in agriculture: a worldwide review. Ecol. Soc. 21, 19 (2016). https://dx.doi.org/10.
5751/ES-08597-210319
126. Vavoulidou E, Dimirkou A, Papadopoulos P, Avramides EJ, Dimitris, A (2002) A comparative
study for the control of organic agriculture in a region of Greece. In: 17 WCSS Symposium,
vol. 57, pp. 1–14, 737 p
127. Vavoulidou, E., Coors, A., Dózsa-Farkas, K., Römbke, J.: Influence of farming practice, crop
type and soil properties on the abundance of Enchytraeidae (Oligochaeta) in Greek agricultural
soils. Soil Organ. 81, 197–212 (2009)
128. Solomon, A.D., Sfougaris, A.I., Vavoulidou, E.M., Csuzdi, C.: Species richness and density
of earthworms in relation to soil factors in olive orchard production systems in central
Greece Com Soil Sci. Plant. Anal. 44, 301–311 (2013). https://doi.org/10.1080/00103624.
2013.741904
129. ˇ
Cernosvitov, L.: Mission Scientifique de l’Omo. Oligochaeta. Mém. Mus. natu. Hist. nat.
Paris 4(38):253–318 (1938)
130. Savigny (1826) Eisenia fetida (Savigny, 1826):
131. Kinberg: (1867) Johan Gustaf Hjalmar Kinberg (1866): Annulata nova. Öfversigt af Kongliga
Vetenskaps-Akademiens Förhandlingar 23 (4), S. 97–103, hier 97 (Amynthas n.) und 101
(Amyntas [sic] n.). https://de.wikipedia.org/wiki/Johan_Gustaf_Hjalmar_Kinberg
132. Szederjesi, T., Vavoulidou, E., Chalkia, C., Danyi, L., Csudi, C.: An annotated checklist of
earthworms of Greece (Clitellata: Megadrili). Zootaxa 4272, 57–82 (2017). https://doi.org/
10.11646/zootaxa.4272.1.3ss
133. Parle, J.N.: A microbiological study of earthworm casts. J. Gen. Micro Mol. 31, 13–22 (1963)
134. Pavlíˇ cek, T., Csuzdi, C.: Clitellata: Oligochaeta: earthworms (Chap. 23). In: Sparrow, D.J.,
Eddie, J. (eds.) An Introduction to the Wildlife of Cyprus. Terra Cypria, Limassol, pp. 587–599
(2016)
135. Szederjesi, T., Csuzdi, Cs.: New and little known earthworm species form Greece
(Oligochaeta: Lumbricidae, Acanthodrilidae). Zootaxa 3304, 25–42 (2012)
136. Edwards, C.A., Lofty, J.R.: Nitrogenous fertilizers and earthworm populations in agricultural
soils. Soil Biol. Biochem. 14, 515–521 (1982). https://doi.org/10.1016/0038-0717(82)901
12-2
137. Botinelly, N., Henry-des-Tureaux, T., Hallaire, V., Mathieu, J., Benard, Y., Duc, T., Jouquet,
P.N.: Earthworms accelerate soil porosity turnover under watering conditions. Geoderma 156,
43–47 (2010). https://doi.org/10.1016/j.geoderma.2010.01.006
138. Jouquet, P., Huchet, G., Bottinelli, N., Thu, T.D.: What are the limits of the drilosphere?
An incubation experiment using Metaphire posthuma Pedobiol 54(Supplement), S113–S117
(2011). https://doi.org/10.1016/j.pedobi.2011.07.013
139. Vavoulidou, E., Avramides, E.J., Papadopoulos, P., Dimirkou, A.: Copper content in agricultural soils related to cropping systems in different regions of Greece. Commun. Soil Sci. Plant
Anal. 36, 759–773 (2005). https://doi.org/10.1081/CSS-200043367
140. Streit, B.: (1984) Effects of high copper concentrations on soil invertebrates (earthworms and
oribatid mites): : Experimental results and a model. Oecologia 64(3), 381–388 (1984). https://
doi.org/10.1007/BF00379137
141. Boyle, K, Curry, J.P., Farrell, E.: Influence of earthworms on soil properties and grass production in reclaimed cutover peat. Biol. Fertil. Soils 25, 20–26 (1997). https://doi.org/10.1007/
s003740050274
E. Vavoulidou et al.
121. Reddell, P., Spain, A.V.: Earthworms as vectors of viable propagules of mycorrhizal fungi.
Soil Biol. Biochem. 23, 767–774 (1991). https://doi.org/10.1016/0038-0717(91)90147-C
122. Fierer, N.: Earthworms’ place on Earth. Science 366, 425–426 (2019). https://doi.org/10.
1126/science.aaz5670
123. Lu, Y., Nakicenovic, N., Visbeck, M., Stevance, A.S.: Five priorities for the UN Sustainable
Development Goals. Nature 520, 432–433 (2015). https://doi.org/10.1038/520432a
124. Brown, G.G., Barois, I., Lavelle, P.: Regulation of soil organic matter dynamics and microbial
activity in the drilosphere and the role of interactions with other edaphic functional domains.
Eur. J. Soil Biol. 36, 177–198 (2000). https://doi.org/10.1016/S1164-5563(00)01062-1
125. Pauli, N., Abbott, L.K., Negrete-Yankelevich, S., Andrés, P.: Farmers’ knowledge and use of
soil fauna in agriculture: a worldwide review. Ecol. Soc. 21, 19 (2016). https://dx.doi.org/10.
5751/ES-08597-210319
126. Vavoulidou E, Dimirkou A, Papadopoulos P, Avramides EJ, Dimitris, A (2002) A comparative
study for the control of organic agriculture in a region of Greece. In: 17 WCSS Symposium,
vol. 57, pp. 1–14, 737 p
127. Vavoulidou, E., Coors, A., Dózsa-Farkas, K., Römbke, J.: Influence of farming practice, crop
type and soil properties on the abundance of Enchytraeidae (Oligochaeta) in Greek agricultural
soils. Soil Organ. 81, 197–212 (2009)
128. Solomon, A.D., Sfougaris, A.I., Vavoulidou, E.M., Csuzdi, C.: Species richness and density
of earthworms in relation to soil factors in olive orchard production systems in central
Greece Com Soil Sci. Plant. Anal. 44, 301–311 (2013). https://doi.org/10.1080/00103624.
2013.741904
129. ˇ
Cernosvitov, L.: Mission Scientifique de l’Omo. Oligochaeta. Mém. Mus. natu. Hist. nat.
Paris 4(38):253–318 (1938)
130. Savigny (1826) Eisenia fetida (Savigny, 1826):
131. Kinberg: (1867) Johan Gustaf Hjalmar Kinberg (1866): Annulata nova. Öfversigt af Kongliga
Vetenskaps-Akademiens Förhandlingar 23 (4), S. 97–103, hier 97 (Amynthas n.) und 101
(Amyntas [sic] n.). https://de.wikipedia.org/wiki/Johan_Gustaf_Hjalmar_Kinberg
132. Szederjesi, T., Vavoulidou, E., Chalkia, C., Danyi, L., Csudi, C.: An annotated checklist of
earthworms of Greece (Clitellata: Megadrili). Zootaxa 4272, 57–82 (2017). https://doi.org/
10.11646/zootaxa.4272.1.3ss
133. Parle, J.N.: A microbiological study of earthworm casts. J. Gen. Micro Mol. 31, 13–22 (1963)
134. Pavlíˇ cek, T., Csuzdi, C.: Clitellata: Oligochaeta: earthworms (Chap. 23). In: Sparrow, D.J.,
Eddie, J. (eds.) An Introduction to the Wildlife of Cyprus. Terra Cypria, Limassol, pp. 587–599
(2016)
135. Szederjesi, T., Csuzdi, Cs.: New and little known earthworm species form Greece
(Oligochaeta: Lumbricidae, Acanthodrilidae). Zootaxa 3304, 25–42 (2012)
136. Edwards, C.A., Lofty, J.R.: Nitrogenous fertilizers and earthworm populations in agricultural
soils. Soil Biol. Biochem. 14, 515–521 (1982). https://doi.org/10.1016/0038-0717(82)901
12-2
137. Botinelly, N., Henry-des-Tureaux, T., Hallaire, V., Mathieu, J., Benard, Y., Duc, T., Jouquet,
P.N.: Earthworms accelerate soil porosity turnover under watering conditions. Geoderma 156,
43–47 (2010). https://doi.org/10.1016/j.geoderma.2010.01.006
138. Jouquet, P., Huchet, G., Bottinelli, N., Thu, T.D.: What are the limits of the drilosphere?
An incubation experiment using Metaphire posthuma Pedobiol 54(Supplement), S113–S117
(2011). https://doi.org/10.1016/j.pedobi.2011.07.013
139. Vavoulidou, E., Avramides, E.J., Papadopoulos, P., Dimirkou, A.: Copper content in agricultural soils related to cropping systems in different regions of Greece. Commun. Soil Sci. Plant
Anal. 36, 759–773 (2005). https://doi.org/10.1081/CSS-200043367
140. Streit, B.: (1984) Effects of high copper concentrations on soil invertebrates (earthworms and
oribatid mites): : Experimental results and a model. Oecologia 64(3), 381–388 (1984). https://
doi.org/10.1007/BF00379137
141. Boyle, K, Curry, J.P., Farrell, E.: Influence of earthworms on soil properties and grass production in reclaimed cutover peat. Biol. Fertil. Soils 25, 20–26 (1997). https://doi.org/10.1007/
s003740050274
