Arbuscular Mycorrhizal Fungi in Cerrado: An Overview of Scientific Production, Trends, and Gaps

Autores

DOI:

https://doi.org/10.21664/2238-8869.2025v14i2.p31-44

Palavras-chave:

Cerrado, cienciometria, FMA, Glomeromycota

Resumo

Os fungos micorrizicos arbusculares (FMA) são fungos biotróficos obrigatórios do filo Glomeromycota, esses fungos estão intimamente relacionados a biomassa vegetal. Entretanto, pouco se sabe sobre esses fungos uma vez que vivem abaixo do solo, ainda mais em domínios tão ameaçados e importantes como o Cerrado. Nosso objetivo nesse estudo, foi avaliar as tendências e lacunas da produção científica sobre Glomeromycota no Cerrado, visando mostrar um panorama da produção científica nos últimos dez anos, mostrando tendências e lacunas das pesquisas com FMA no Cerrado. Para isso, utilizamos uma busca booleana de artigos na base de dados Web of Science com termos específicos. Recuperamos 63 artigos que nos mostraram que há uma tendência no aumento do número de publicações sobre FMA, entretanto a maioria dos estudos estão voltados para uma abordagem ecológica, taxonômica e agrícola do fungo, tendo uma grande lacuna de conhecimento biotecnológica e de uso desses fungos. Esperamos com esses dados, auxiliar pesquisas acerca de FMA, e impulsionar o conhecimento sobre o filo Glomeromycota no Cerrado.

Referências

Abrahão, A, Costa, PB, Lambers, H, Andrade, SAL, Sawaya, ACHF, Ryan, MH, Oliveira, RS 2019. Soil types select for plants with matching nutrient-acquisition and -use traits in hyperdiverse and severely nutrient-impoverished campos rupestres and cerrado in Central Brazil. Journal of Ecology, 107(3), 1302-1316. DOI: https://doi.org/10.1111/1365-2745.13111

Aker, AM, Caproni, AL, Berbara, RLL, Granha, JRDDO, Silva, CFD, Pereira, MG 2022. Arbuscular mycorrhizal fungi in the Cerrado biome: effects of land use system, soil texture, and seasonality. Revista Caatinga, 35, 170-180. DOI: https://doi.org/10.1590/1983-21252022v35n117rc

Araujo, ASF, Melo, VMM, Pereira, APA, Lopes, ÂCA 2021. Arbuscular mycorrhizal community in soil from different Brazilian Cerrado physiognomies. Rhizosphere, 19, 100375. DOI: https://doi.org/10.1016/j.rhisph.2021.100375

Aria, M, Cuccurullo, C 2017. bibliometrix: An R-tool for comprehensive science mapping analysis. Journal of Informetrics, 11(4), 959-975. DOI: https://doi.org/10.1016/j.joi.2017.08.007

Barbosa, BB, Pimentel, JP, Rodovalho, NS, Bertini, SCB, Kumar, A, Ferreira, L FR, Azevedo, LCB 2022. Ascomycetous isolates promote soil biological and nutritional attributes in corn and soybeans in sandy and clayey soils. Rhizosphere, 24, 100625. DOI: https://doi.org/10.1016/j.rhisph.2022.100625

Calaça, FJS, Bustamante, MMC 2022. Richness of arbuscular mycorrhizal fungi (Glomeromycota) along a vegetation gradient of Brazilian Cerrado: Responses to seasonality, soil types, and plant communities. Mycological Progress, 21(2), 27. DOI: https://doi.org/10.1007/s11557-022-01785-1

Carneiro, MAC, Assis, PCR, Paulino, HB, Rocha, MR 2019. Diversity of arbuscular mycorrhizal fungi and nematodes in a 14 years no-tillage chronosequence. Rhizosphere, 10, 100149. DOI: https://doi.org/10.1016/j.rhisph.2019.100149

Carvalho, F, Souza, FA, Carrenho, R, Moreira, FMS, Jesus, EC, Fernandes, GW 2012. The mosaic of habitats in the high-altitude Brazilian rupestrian fields is a hotspot for arbuscular mycorrhizal fungi. Applied Soil Ecology, 52, 9-19. DOI: https://doi.org/10.1016/j.apsoil.2011.10.001

Carvalho, FMV, Marco, P, Ferreira, LG 2009. The Cerrado into-pieces: Habitat fragmentation as a function of landscape use in the savannas of central Brazil. Biological Conservation, 142(7), 1392-1403. DOI: https://doi.org/10.1016/j.biocon.2009.01.031

Castro, AP, Silva, MRSS, Quirino, BF, Bustamante, MMC, Krüger, RH 2016. Microbial Diversity in Cerrado Biome (Neotropical Savanna) Soils. PLOS ONE, 11(2), e0148785. DOI: https://doi.org/10.1371/journal.pone.0148785

Cely, MVT, Oliveira, AG, Freitas, VF, Luca, MB, Barazetti, AR, Santos, IMO, Gionco, B, Garcia, GV, Prete, CEC, Andrade, G 2016. Inoculant of Arbuscular Mycorrhizal Fungi (Rhizophagus clarus) Increase Yield of Soybean and Cotton under Field Conditions. Frontiers in Microbiology, 7. DOI: https://www.frontiersin.org/articles/10.3389/fmicb.2016.00720

Moura, JB, Souza, RF, Junior, WGV, Lima, IR, Brito, GHM, Marín, C 2019. Arbuscular Mycorrhizal Fungi Associated with Bamboo Under Cerrado Brazilian Vegetation. Journal of Soil Science and Plant Nutrition, 19(4), 954-962. DOI: https://doi.org/10.1007/s42729-019-00093-0

Detmann, K, Souza LT, Oliveira Neto RR, Delgado, MN, Rebello, VPA, Azevedo, AA, Kasuya, MCM, Selosse, MA, Almeida, AM 2019. Arbuscular mycorrhizae and absence of cluster roots in the Brazilian Proteaceae Roupala montana Aubl. Symbiosis, 77(2), 115-122. DOI: https://doi.org/10.1007/s13199-018-0581-0

French, KE 2017. Engineering Mycorrhizal Symbioses to Alter Plant Metabolism and Improve Crop Health. Frontiers in Microbiology, 8, 1403. DOI: https://doi.org/10.3389/fmicb.2017.01403

Gerz, M, Bueno, CG, Ozinga, WA, Zobel, M, Moora, M 2019. Responses of plant community mycorrhization to anthropogenic influence depend on the habitat and mycorrhizal type. Oikos, 128(11), 1565-1575. DOI: https://doi.org/10.1111/oik.06272

Guilherme, FAG, Júnior, AF, Souza, LF, Martins, AP, Ferreira, GL, Maciel, EA 2022. Effect of drainage ditches on diversity, structure and dynamics vegetation in campos de murundus (mound fields). Ecological Engineering, 182, 106723. DOI: https://doi.org/10.1016/j.ecoleng.2022.106723

Hammer, O, Harper, D, Ryan, P 2001. PAST: Paleontological Statistics Software Package for Education and Data Analysis. Palaeontologia Electronica, 4, 1-9.

Hart, MM, Antunes, PM, Chaudhary, VB, Abbott, LK 2018. Fungal inoculants in the field: Is the reward greater than the risk? Functional Ecology, 32(1), 126-135. DOI: https://doi.org/10.1111/1365-2435.12976

Jesus, MV, Scalon, SPQ, Dresch, DM, Linné, JA, Lima, VT, Reis, LC, Santos, CC, Foresti, AC 2022. Arbuscular mycorrhizae alleviate water deficit in Dipteryx alata Vogel: Seedling quality and resilience. Canadian Journal of Forest Research, 52(3), 320-327. DOI: https://doi.org/10.1139/cjfr-2021-0088

Jobim, K, Oliveira, BIS, Goto, BT 2016. Checklist of the Glomeromycota in the Brazilian Savanna. Glomeromycota in the Brazilian Savanna, 131, 13.

Leite, M, Cassiolato, AMR, Lannes, LS 2019. Urochloa decumbens Has Higher Mycorrhizal Colonization in Degraded than in Pristine Areas in the Brazilian Cerrado. Floresta e Ambiente, 26, e20190060. DOI: https://doi.org/10.1590/2179-8087.006019

Lima, DC, Alves, MR, Noguera, NH, Nascimento, RP 2022. A review on Brazilian baru plant (Dipteryx alata Vogel): Morphology, chemical composition, health effects, and technological potential. Future Foods, 5, 100146. DOI: https://doi.org/10.1016/j.fufo.2022.100146

Lucas, LS, Neto, AR, Moura, JB, Souza, RF, Santos, MEF, Moura, LF, Xavier, EG, Santos, JM, Nehring, R, Dutra e Silva, S 2022. Mycorrhizal fungi arbuscular in forage grasses cultivated in Cerrado soil. Scientific Reports, 12(1), Artigo 1. DOI: https://doi.org/10.1038/s41598-022-07088-5

Magalhães, RM 2014. A cadeia produtiva da amêndoa do Baru (Dipteryx alata Vog.) no Cerrado: Uma análise da sustentabilidade da sua exploração. Ciência Florestal, 24, 665-676. DOI: https://doi.org/10.5902/1980509815723

Martínez-García, LB 2011. Micorrizas arbusculares en ecosistemas semiáridos. Respuesta a factores de estrés ambiental: Ecosistemas, 20(2-3), Artigo 2-3. https://www.revistaecosistemas.net/index.php/ecosistemas/article/view/654

Moraes, JMAS, Zanchi, CS, Pires, GC, Moretti, CF, Barbosa, MV, Silva, AO, Pacheco, LP, Carbone CMA, Oliveira, RL, Kemmelmeier, K, Souza, ED 2019. Arbuscular mycorrhizal fungi in integrated crop livestock systems with intercropping in the pasture phase in the Cerrado. Rhizosphere, 11, 100165. DOI: https://doi.org/10.1016/j.rhisph.2019.100165

Moura, J, Souza, R, Vieira Junior, W, Lucas, L, Santos, J, Silva, S, Marín, C 2022. Effects of a megafire on the arbuscular mycorrhizal fungal community and parameters in the Brazilian Cerrado ecosystem. Forest Systems, 31. DOI: https://doi.org/10.5424/fs/2022311-18557

Paiva Neto, VB, Torrezan, MA, Silva, MAV, Padilha, DRC, Borel, JC, Zuffo-Borges, MCR 2022. Self-pollination of the orchid Cycnoches haagii from Brazilian Cerrado results in albino phenotype seedlings. Ornamental Horticulture, 28, 85-91. DOI: https://doi.org/10.1590/2447-536X.v28i1.2411

Pontes, JS, Pereira, CD, Machado, CTT, Coyne, D 2017. Diversity of arbuscular mycorrhizal fungi in the Brazilian's Cerrado and in soybean under conservation and conventional tillage. Applied Soil Ecology, 117-118, 178-189. DOI: https://doi.org/10.1016/j.apsoil.2017.04.023

R Core Team. R: The R Project for Statistical Computing, 2023. [cited 2023 Oct 10]. Available at: https://www.r-project.org/

Santos, GL, Pereira, MG, Delgado, RC, Magistrali, IC, Gomes SC, Oliveira, MMC, Larangeira, PBJ, Silva, PT 2021. Degradation of the Brazilian Cerrado: Interactions with human disturbance and environmental variables. Forest Ecology and Management, 482, 118875. DOI: https://doi.org/10.1016/j.foreco.2020.118875

Silva, SD, Barbosa, AS 2020. Paisagens e fronteiras do Cerrado: Ciência, biodiversidade e expansão agrícola nos chapadões centrais do Brasil. Estudos Ibero-Americanos, 46(1), e34028-e34028. DOI: https://doi.org/10.15448/1980-864X.2020.1.34028

Silva, PST, Cassiolato, AMR, Galindo, FS, Jalal, A, Nogueira, TAR, Oliveira, CES, Filho, MCMT 2022a. Azospirillum brasilense and Zinc Rates Effect on Fungal Root Colonization and Yield of Wheat-Maize in Tropical Savannah Conditions. Plants (Basel, Switzerland), 11(22), 3154. DOI: https://doi.org/10.3390/plants11223154

Silva, PST, Prates, AR, Fernandes, DM, Cassiolato, AMR, Maltoni, KL 2022b. Microrganismos e lodo de esgoto compostado no desenvolvimento inicial de mudas de baru em vasos. Engenharia Sanitaria e Ambiental, 27, 1021-1029. DOI: https://doi.org/10.1590/S1413-415220210240

Silva-Flores, P, Argüelles-Moyao, A, Aguilar-Paredes, A, Calaça, FJS, Duchicela, J, Fernández, N, Furtado, ANM, Guerra-Sierra, B, Lovera, M, Marín, C, Neves, MA, Pezzani, F, Rinaldi, AC, Rojas, K, Vasco-Palacios, AM 2021. Mycorrhizal science outreach: Scope of action and available resources in the face of global change. Plants, People, Planet, 3(5), 506-522. DOI: https://doi.org/10.1002/ppp3.10213

Souza, ED, Silva, CRM, Pinto, FA, Carneiro, MAC, Paulino, HB, Pacheco, LP, Terra, FD, Laroca, JVS 2019. Soil quality indicators after conversion of "murundu" fields into no-tillage cropping in the Brazilian Cerrado. Pesquisa Agropecuária Brasileira, 54, e00374. DOI: https://doi.org/10.1590/S1678-3921.pab2019.v54.00374

Teixeira, AFS, Kemmelmeier, K, Marascalchi, MN, Stürmer, SL, Carneiro, MAC, Moreira, FMS 2017. Arbuscular mycorrhizal fungal communities in an iron mining area and its surroundings: Inoculum potential, density, and diversity of spores related to soil properties. Ciência e Agrotecnologia, 41, 511-525. DOI: https://doi.org/10.1590/1413-70542017415014617

van der Heijden, MGA., Klironomos, JN, Ursic, M, Moutoglis, P, Streitwolf-Engel, R, Boller, T, Wiemken, A, Sanders, IR 1998. Mycorrhizal fungal diversity determines plant biodiversity, ecosystem variability and productivity. Nature, 396(6706), Artigo 6706. DOI: https://doi.org/10.1038/23932

Vieira, LC, Silva, DKA, Silva, IR, Gonçalves, CM, Assis, DMA, Oehl, F, Silva, GA 2019. Ecological aspects of arbuscular mycorrhizal fungal communities in different habitat types of a Brazilian mountainous area. Ecological Research, 34(1), 182-192. DOI: https://doi.org/10.1111/1440-1703.1061

Downloads

Publicado

2025-06-05

Como Citar

ABREU, Igor Manoel Paulo Goulart de; MORAIS, Isa Lucia de; CALAÇA, Francisco Júnior Simões. Arbuscular Mycorrhizal Fungi in Cerrado: An Overview of Scientific Production, Trends, and Gaps. Fronteira: Journal of Social, Technological and Environmental Science, [S. l.], v. 14, n. 2, p. 31–44, 2025. DOI: 10.21664/2238-8869.2025v14i2.p31-44. Disponível em: https://revistas.unievangelica.edu.br/index.php/fronteiras/article/view/7400. Acesso em: 9 jun. 2025.