Bongers, T. and Ferris, H. 1999. Nematode community structure as a bioindicator in environmental monitoring. Trends in Ecology and Evolution 14:224–228.
Brmež, M., Puškarić, J., Siber, T., Raspudić, E., Grubišić, D. and Popović, B. 2018. Influence of liquid chicken manure preparation on soil health and agrochemical soil properties. Poljoprivreda 24:3–9.
Caixeta, L. B., Pereira, T. J., Castañeda, E. N. and Cares, J. E. 2016. Nematode communities as indicators of the status of a soil ecosystem influenced by mining practices in Brazil. Nematology 18:265–276.
Cares, J. E. and Huang, S. P. 2008. “Comunidades de nematoides de solo sob diferentes sistemas na Amazônia e Cerrados Brasileiros”, In Moreira, F. M. S., Siqueira, J. O. and Brussardi, L. (Eds), Biodiversidade do solo em ecossistemas brasileiros Universidade Federal de Lavras, Lavras (MG), pp. 409–444.
Carron, M. P., Pierrat, M., Snoeck, D., Villenave, C., Ribeyre, F., Marichal, R. and Caliman, J. P. 2015. Temporal variability in soil quality after organic residue application in mature oil palm plantations. Soil Research 53:205–215.
Chaves, E. J., Echeverria, M. M. and Torres, M. S. 1995. Clave para la determinar géneros de Nematodes del suelo de la República Argentina Universidade Nacional de Mar del Plata, Mar del Plata.
Donagema, G. K., Campos, D. V. B., Calderano, S. B., Teixeira, W. G. and Viana, J. H. M. 2011. Manual de métodos de análise de solos. 2.ed. rev. Rio de Janeiro: Embrapa Solos. 230p. (Embrapa Solos. Documentos, 132).
DuPont, S. T., Ferris, H. and Van Horn, M. 2009. Effects of cover crop quality and quantity on nematode-based soil food webs and nutrient cycling. Applied Soil Ecology 41:157–167.
Falkowski, T. B., Douterlungne, D., Chankin, A. and Diemont, S. A. 2019. Effects of five Lacandon Maya agroforestry trees on soil nematode trophic group composition. Agroforestry Systems 93:2121–2133.
Ferris, H. R. C., Venette, H. R. and Van Der Meulen, S. S. L. 1998. Nitrogen mineralization by bacterial-feeding nematodes: verification and measurement. Plant and Soil 203:159–171.
Franco-Navarro, F. and Godinez-Vidal, D. 2017. Soil nematodes associated with different land uses in the Los Tuxtlas Biosphere Reserve, Veracruz, Mexico. Revista Mexicana de Biodiversidad 88:136–145.
Gomes, L. C., Cardoso, I. M., Sá Mendonça, E., Fernandes, R. B. A., Lopes, V. S. and Oliveira, T. S. 2016. Trees modify the dynamics of soil CO2 efflux in coffee agroforestry systems. Agricultural and Forest Meteorology 224:30–39.
Grabau, Z. J., Bao, Y., Vetsch, J. A. and Chen, S. 2019. Swine manure application enriches the soil food web in corn and soybean production. Journal of Nematology 51:1–■.
Hu, C., Wang, X. H. and Qi, Y. C. 2014. Characteristics of soil nematode communities under two different land use systems. Biological Agriculture e Horticulture 30:119–130.
Huising, E. J., Cares, J. E., Louzada, J. N., Zanetti, R., Moreira, F. M. S., Susilo, F. X., Konat, S., Huang, S. P., Van Noordwijk, M. and Coe, R. D. 2008. “Sampling strategy and design to evaluate below-ground biodiversity”, In Moreira, F. M. S., Huising, E. J. and Bignell, D. E. (Eds), Sampling and Characterization of Belowground Biodiversity Earthscan Publishing, London, pp. 17–41.
Jackson, L. E., Pulleman, M. M., Brussaard, L., Bawa, K. S., Brown, G. G., Cardoso, I. M. and Ouédraogo, E. 2012. Social-ecological and regional adaptation of agrobiodiversity management across a global set of research regions. Global Environmental Change 22:623–639.
Jannoura, R., Joergensen, R. G. and Bruns, C. 2014. Organic fertilizer effects on growth, crop yield, and soil microbial biomass indices in sole and intercropped peas and oats under organic farming conditions. European Journal Agronomy 52:259–270.
Jiang, C., Sun, B., Li, H. and Jiang, Y. 2013. Determinants for seasonal change of nematode community composition under long-term application of organic manure in an acid soil in subtropical China. European Journal of Soil Biology 55:91–99.
Liu, T., Joann, K. W., Shen, Q. and Li, H. 2016. Increase in soil nematode abundance due to fertilization was consistent across moisture regimes in a paddy rice-upland wheat system. European Journal of Soil Biology 72:21–26.
Marinho, E. B., Oliveira, A. L., Zandonadi, D. B., Benedito, L. E. C., Souza, R. B., Figueiredo, C. C. and Busato, J. G. 2014. Organic matter pools and nutrient cycling in different coffee production systems in the Brazilian Cerrado. Agroforestry Systems 88:767–778.
Moço, M. K. S., Gama-Rodrigues, E. F., Gama-Rodrigues, A. C., Machado, R. C. R. and Baligar, V. C. 2009. Soil and litter fauna of cacao agroforestry systems in Bahia, Brazil. Agroforestry Systems 76:127–138.
Mulder, C., De Zwart, D., Van Wijnen, H. J., Schouten, A. J. and Breure, A. M. 2003. Observational and simulated evidence of ecological shifts within the soil nematode community of agroecosystems under conventional and organic farming. Functional Ecology 17:516–525.
Niles, R. K. and Freckman, D. W. 1998. “From the ground up: nematode ecology in bioassessment and ecosystem health”, In Bartels, J. M. (Ed.), Plant and Nematode Interactions, Madison, WI.
Paiva, J. G. A., Carvalho, S. M. F., Magalhães, M. P. and Ribeiro, D. G. 2006. Verniz vitral incolor 500: uma alternativa de meio de montagem economicamente viável. Acta Botanica Brasilica 20:257–264.
Porazinska, D. L., Duncan, L. W., McSorley, R. and Graham, J. H. 1999. Nematode communities as indicators of status and processes of a soil ecosystem influenced by agricultural management practices. Applied Soil Ecology 13:69–86.
Renco, M. and Kovacik, P. 2012. Response of plant parasitic and free living soil nematodes to composted animal manure soil amendments. Journal of Nematology 44:329–336.
Ritzinger, C. H. S. P., Fancelli, M. and Ritzinger, R. 2010. Nematoides: bioindicadores de sustentabilidade e mudanças edafoclimáticas. Revista Brasileira de Fruticultura 32:1289–1296.
Sãnchez-Moreno, S., Ferris, H., Young-Mathews, A., Culman, S. W. and Jackson, L. E. 2011. Abundance, diversity and connectance of soil food web channels along environmental gradients in an agricultural landscape. Soil Biology & Biochemistry 43:2374–2383.
Tomazini, M. D., Ferraz, L. C. C. B. and Monteiro, A. R. 2008. Abundância e diversidade de nematoides em áreas contíguas de vegetação natural e submetidas a diferentes tipos de uso agrícola. Nematologia Brasileira 32:185–193.
Ugarte, C. M., Zaborski, E. R. and Wander, M. M. 2013. Nematode indicators as integrative measures of soil condition in organic cropping systems. Soil Biology and Biochemistry 64:103–113.
Van den Hoogen, J., Geisen, S., Wall, D. H., Wardle, D. A., Traunspurger, W., de Goede, R. G. and Bonkowski, M. 2020. A global database of soil nematode abundance and functional group composition. Scientific Data 7:1–8.
Yeates, G. W., Ferris, H. and Van Der Putten, W. H. 2009. “The role of nematodes in ecosystems”, In Wilson, M. J. T. and Kakouli, D. (Eds), Nematodes as Environmental Indicators 1 CABI Publishing, Wallingford, pp. 1–44.
Zhang, Z. W., Li, Q., Zhang, H. Y., Hu, Y. Y., Hou, S. L., Wei, H. W., Yin, J. X. and Lu, T. L. 2019. The impacts of nutrient addition and livestock exclosure on the soil nematode community in a degraded grassland. Land Degradation & Development 30:1574–1583.