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Meso- and macrofauna in the soil and litter of leguminous trees in a degraded pasture in Brazil

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Abstract

Soil organisms comprise a large number of species that play a role in various ecosystem functions and provide valuable ecosystem services that sustain soil quality. The objective of this study was to characterize the meso- and macrofauna in soil and litter with different types of plant cover (Acacia auriculiformis A. Cunn. ex Benth., Mimosa caesalpiniifolia Benth., pasture and secondary forest) at different sampling times (dry season: June and September and rainy season: February). The faunal communities were sampled over during 15 days with a Berlese-Tullgren apparatus. The density of the total fauna ranged from 822 to 6,368 individuals m−2 in the litter and 99 to 1,222 individuals m−2 in the soil. The richness ranged from 9.4 to 12 in the litter and 6.4 to 8.8 in the soil. In all, 12,596 individual organisms were recovered from the soil and litter samples, and 8,012 individuals were found in the litter. Seasonal variation influenced the density and richness of the total fauna and the occurrence of functional groups, particularly the populations of microbial grazers, predators and herbivores, but this influence depended on the plant cover. Most groups that were found during the three sampling periods and in all types of plant cover belonged to two functional groups: social insects (Formicidae) and microbial grazers (Collembola). The plant cover types showed homogeneity in the distribution of the soil-litter fauna, and the development of a litter layer by leguminous tree plantations in a degraded pasture produced a higher abundance and diversity of soil fauna.

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References

  • Anderson JD, Ingram JSI (1996) Tropical soil biology and fertility: a handbook of methods. CAB International, Wallingford, p 171

    Google Scholar 

  • Bataglia OC, Furlani AMC, Teixeira JPF, Furlani PR, Gallo JR (1983) Métodos de análise química de plantas. Instituto Agronômico, Campinas p 48 (Boletim Técnico 78)

  • Cassagne N, Gers C, Gauquelin T (2003) Relationships between Collembola, soil chemistry and humus types in forest stands (France). Biol Fertil Soils 37:355–361

    CAS  Google Scholar 

  • Cassagne N, Gauquelin T, Bal-Serin MC, Gers C (2006) Endemic Collembola, privileged bioindicators of forest management. Pedobiologia 50:127–134

    Article  Google Scholar 

  • Chagon M, Paré D, Hébert C, Camié C (2001) Effects of experimental liming on collembolan communities and soil microbial biomass in a southern Quebec sugar maple (Acer saccharum Marsh.) stand. Appl Soil Ecol 17:81–90

    Article  Google Scholar 

  • Chessel D, Dufour AB, Thioulouse J (2004) The ade4 package—I: one-table methods. RNews 4:5–10

    Google Scholar 

  • Delabie JHC, Fowler HG (1995) Soil and litter cryptic ant assemblages of Bahian cocoa plantations. Pedobiologia 39:423–433

    Google Scholar 

  • Dias PF, Souto SM, Correia MEF, Rodrigues KM, Franco AA (2007) Efeito de leguminosas arbóreas sobre a macrofauna do solo em pastagem de Brachiaria brizantha cv. Marandu. Pesq Agropec Trop 37:38–44 (in Portuguese)

    Google Scholar 

  • Dray S, Chessel D, Thioulouse J (2003) Co-inertia analysis and the linking of ecological data tables. Ecology 84:3078–3089

    Article  Google Scholar 

  • Franco AA, Faria SM (1997) The contribution of N2-fixing tree legumes to land reclamation and sustainability in the tropics. Soil Biol Biochem 29:897–903 (in Portuguese)

    Article  CAS  Google Scholar 

  • Gama-Rodrigues AC, May P (2001) Saf e o planejamento do uso da terra: experieˆncia na regia˜o Norte Fluminense-RJ. In: Macedo JLV, Wandelli EV, Silva J (eds) Anais do III Congresso Brasileiro de Sistemas Agroflorestais. Sistemas agroflorestais: manejando a biodiversidade e compondo a paisagem rural. Embrapa, Manaus, pp 130–145 (in Portuguese)

  • Gama-Rodrigues EF, Barros NF, Viana AP, Santos GA (2008a) Microbial biomass and activity in soil and forest Litter of eucalyptus plantations and native Vegetation in southeastern Brazil. Rev Bras Cienc Solo 32:1489–1499 (in Portuguese)

    Article  Google Scholar 

  • Gama-Rodrigues EF, Gama-Rodrigues AC, Paulino GM, Franco AA (2008b) Chemical and microbial attributes of soils under different soil covers in northern Rio de Janeiro State. Brazil. Rev Bras Cienc Solo 32:1521–1530 (in Portuguese)

    Article  Google Scholar 

  • Huhta V (2007) The role of soil fauna in ecosystems: a historical review. Pedobiologia 50:489–495

    Article  Google Scholar 

  • Laossi KR, Barot S, Carvalho D, Desjardins T, Lavelle P, Martins M, Mitja D, Rendeiro AC, Rousseau G, Sarrazin M, Velasquez E, Grimaldi M (2008) Effects of plant diversity on plant biomass production and soil macrofauna in Amazonian pastures. Pedobiologia 51:397–407

    Article  Google Scholar 

  • Lavelle P, Decãens T, Aubert M, Barot S, Blouin M, Bureau F, Margerie P, Mora P, Rossi JP (2006) Soil invertebrates and ecosystem services. Eur J Soil Biol 42:3–15

    Article  Google Scholar 

  • Lugo AE, Cuevas E, Sanchez MJ (1990) Nutrients and mass in litter and soil of ten tropical tree plantations. Plant Soil 125:263–280

    Article  CAS  Google Scholar 

  • Mateos E, Santos X, Pujade-Villar J (2011) Taxonomic and functional responses to fire and post-fire management of a mediterranean hymenoptera community. Environ Manage 48:1000–1012

    Article  PubMed  Google Scholar 

  • Mlambo D, Nyathi P (2008) Litterfall and nutrient return in a semi-arid southern African savanna woodland dominated by Colophospermum mopane. Plant Ecol 196:101–110

    Article  Google Scholar 

  • Moço MKS, Gama-Rodrigues EF, Gama-Rodrigues AC, Correia MEF (2005) Caracterização da fauna edáfica em diferentes coberturas vegetais na região norte fluminense. Rev Bras Cienc Solo 29:555–564 (in Portuguese)

    Article  Google Scholar 

  • Moço MKS, Gama-Rodrigues EF, Gama-Rodrigues AC, Machado RCR, Baligar VC (2009) Soil and litter fauna of cacao agroforestry systems in Bahia, Brazil. Agroforest Syst 76:127–138

    Article  Google Scholar 

  • Moço MKS, Gama-Rodrigues EF, Gama-Rodrigues AC, Machado RCR, Baligar VC (2010) Relationships between invertebrate communities, litter quality and soil attributes under different cação agroforestry systems in the south of Bahia, Brazil. Appl Soil Ecol 46:347–354

    Article  Google Scholar 

  • Ndaw SM, Gama-Rodrigues AC, Gama-Rodrigues EF, Sales KRN, Rosado AS (2009) Relationships between bacterial diversity, microbial biomass and litter quality in soils under different plant covers in northern Rio de Janeiro State, Brazil. Can J Microbiol 55:1089–1095

    Article  PubMed  CAS  Google Scholar 

  • Palacios-Vargas JG, Castanõ-Meneses G, Gómez-Anaya JA, Martínez-Yrizar A, Mejía-Recamier BE, Martínez-Sánchez J (2007) Litter and soil arthropods diversity and density in a tropical dry forest ecosystem in Western Mexico. Biodivers Conserv 16:3703–3717

    Article  Google Scholar 

  • Ribaski J, Lima PCF, Oliveira VR, Drumond MA (2003) Sabiá (Mimosa caesalpiniaefolia) Árvore de múltiplo uso no Brasil, Comunicado Técnico 104. Embrapa, Colombo

    Google Scholar 

  • Richter A, Maria Klein A, Tscharntke T, Tylianakis JM (2007) Abandonement of coffee agroforests increases insect abundance and diversity. Agrofor Syst 69:175–182

    Article  Google Scholar 

  • R Development Core Team (2012) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. http://www.R-project.org/. Accessed 12 Nov 2012

  • Salamon JA, Scheu S, Schaefer M (2008) The Collembola community of pure and mixed stands of beech (Fagus sylvatica) and spruce (Picea abies) of different age. Pedobiologia 51:385–396

    Article  Google Scholar 

  • Sayer EJ (2006) Using experimental manipulation to assess the roll of leaf litter in the functioning of forest ecosystems. Biol Rev 80:1–31

    Google Scholar 

  • Sileshi G, Mafongoya PL (2007) Quantity and quality of organic inputs from coppicing leguminous trees influence abundance of soil macrofauna in maize crops in eastern Zambia. Biol Fertil Soils 43:333–340

    Article  Google Scholar 

  • Thioulouse J, Chessel D, Dolédec S, Olivier JM (1997) ADE-4: a multivariate analysis and graphical display software. Stat Comput 7:75–83

    Article  Google Scholar 

  • Tian G, Brussard L, Kang BT (1993) Biological effects of plant residues with contrasting chemical compositions under humid tropical conditions: effects on soil fauna. Soil Biol Biochem 25:731–737

    Article  Google Scholar 

  • Wall DH, Moore JC (1999) Interactions underground: soil diversity, mutualism, and ecosystem processes. Bioscience 49:109–117

    Article  Google Scholar 

  • Wardle DA (1995) Impacts of disturbance on detritus food webs in agro-ecosystems of contrasting tillage and weed management practices. Adv Ecol Res 26:105–182

    Article  Google Scholar 

  • Yang X, Warren M, Zou X (2007) Fertilization responses of soil litter fauna and litter quantity, quality and turnover in low and high elevation forests of Puerto Rico. Appl Soil Ecol 37:63–71

    Article  CAS  Google Scholar 

  • Yang W, Liu F, Zhou L, Zhang S, An S (2012) Growth and photosynthetic responses of Canarium pimela and Nephelium topengii seedlings to a light gradient. Agroforest Syst (online first). doi:10.1007/s10457-012-9570-0

    Google Scholar 

  • Young A (1989) Agroforestry for soil conservation. CAB International/ICRAF, Wallingford

    Google Scholar 

  • Zaia FC, Gama-Rodrigues AC, Gama-Rodrigues EF (2008) Formas de fósforo no solo sob leguminosas florestais, floresta secundária e pastagem no norte fluminense. Rev Bras Cienc Solo 32:1191–1197 (in Portuguese)

    Article  CAS  Google Scholar 

Download references

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Correspondence to Emanuela Forestieri Gama-Rodrigues.

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Manhães, C.M.C., Gama-Rodrigues, E.F., Silva Moço, M.K. et al. Meso- and macrofauna in the soil and litter of leguminous trees in a degraded pasture in Brazil. Agroforest Syst 87, 993–1004 (2013). https://doi.org/10.1007/s10457-013-9614-0

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