Selecting alternative sterile and non-sterile substrates for mycorrhizal inoculant production

Autores/as

  • Laura Mathias Barroso UENF
  • Roberta Dias da Silva Lisboa UENF
  • Silvaldo Felipe da Silveira UENF
  • Solange Silva Samarão UENF
  • Luciana Aparecida Rodrigues UENF

Palabras clave:

sugarcane bagasse, coconut fibre, urban waste compost, Glomus sp., Rhizophagus sp.

Resumen

Alternative substrates were evaluated for mycorrhizal inoculants production considering the beneficial effects of arbuscular mycorrhizal fungi (AMF) for plants and environment. The first step of the experiment aimed at evaluating the potential of substrates produced from sugarcane bagasse (SB), coconut fibre (CF) and urban waste compost (UWC) to produce AMF inoculants, by using Brachiaria decumbens as multiplier plant. The experiment has followed a randomized block design, at 7x3 factorial arrangement (seven substrates: SB, CF, SB+CF 1:1, SB+UWC 3:1, CF+UWC 3:1, SB+CF+UWC 3:3:2, Soil+Sand 3:1, vs. three substrate preparations: inoculated/sterilized, inoculated/non-sterilized, non-inoculated/sterilized). Inoculums produced in the first experimental stage were tested at the second stage, based on the inoculated/sterilized preparation. Seed germination, dry shoot biomass, mycorrhizal root rate and total spore production were assessed in both tests. There was significant decrease in seed emergence in organic substrates in relation to Soil+Sand, although the plants growth in organic substrates was greater. Artificial inoculation was not superior to spontaneous substrate mycorrhization or affected inoculum production. Mycorrhizal colonization of roots was equivalent in most organic substrates and in Soil+Sand. However, spore production stood out in organic substrate mixes, mainly when CF and UWC were used. This finding was confirmed at the second experimental stage.

Citas

Berbara RL, Souza FA & Fonseca HMAC (2006) Fungos micorrízicos arbusculares: muito além da nutrição. In: Fernandes MS (Ed.) Nutrição mineral de plantas. Viçosa, Sociedade Brasileira de Ciência do Solo. p.53-88.

Brundrett MC (2009) Mycorrhizal associations and other means of nutrition of vascular plants: understanding the global diversity of host plants by resolving conflicting information and developing reliable means of diagnosis. Plant and Soil, 320:37-77.

Carneiro RFV, Martins MA, Freitas MSM, Detmann E & Vasquez HM (2008) Bagaço de cana-de-açúcar como substrato para multiplicação de fungos micorrízicos arbusculares e sua influência sob o estilosantes. Revista Caatinga, 21:189-196.

Chaiyasen A, Chaiya L, Douds DD & Lumyong S (2017) Influence of host plants and soil diluents on arbuscular mycorrhizal funguspropagation for on-farm inoculum production using leaf litter compost and agrowastes. Biological Agriculture & Horticulture, 33:52-62.

Claessen MEC, Barreto WO, Paulo JL & Duarte MN (1997) Manual de Métodos de Análise de Solo. 2ª ed. Rio de Janeiro, Empresa Brasileira de Pesquisa Agropecuária. 212p.

Da Costa RB, Almeida EV, Kaiser P, Luana PDA, Martinez DT & Tsukamoto Filho ADA (2011) Avaliação genética em progênies de Myracrodruon urundeuva Fr. All. na região do Pantanal, estado do Mato Grosso. Revista Brasileira de Ciências Agrárias, 6:685-693.

Da Silva Júnior JMT, Mendes Filho PF, Gomes VF, Guimarães FA & dos Santos EM (2010) Desenvolvimento do meloeiro associado a fungos micorrízicos arbusculares e cultivado em substrato pó de coco. Revista Brasileira de Ciências Agrárias, 5:54-59.

Da Silva Júnior JMT, Mendes Filho PF, Gomes VFF, Guimarães FVA & dos Santos EM (2012) Efeito da esterilização do substrato sobre o crescimento de mudas de meloeiro em presença de fungos micorrízicos arbusculares e compostos orgânico. Revista Caatinga, 25:98-103.

Do Nascimento JML, dos Santos MRB, Queiroz MAÁ & Yano-Melo AM (2014) Desenvolvimento vegetativo e associação micorrízica em plantas de mandioca adubadas com resíduo agroindustrial. Semina: Ciências Agrárias, 35:727-734.

Garcia KGV Gomes VFF, Mendes Filho PF, Martins CM, De Almeida AMM & Da Silva Júnior JMT (2017) Tolerância de Mimosa caesalpiniaefolia Benth. associada a micorrízas arbusculares em substrato da mineração de manganês. Ciências Agrárias, 60:247-255.

Gerdemann JW & Nicolson TH (1963) Spores of mycorrhizal endogone species extracted from soil by wet sieving and decanting. Transactions of the British Mycological Society, 46:235-244.

Giovannetti M, Avio L & Sbrana C (2010) Fungal spore germination and pre-symbiotic mycelial growth–physiological and genetic aspects. In: Koltai H & Kapulnik Y (Eds.) Arbuscular mycorrhizas: physiology and function. Dordrecht, Springer. p.03-32.

Goetten LC, Moretto G & Stürmer SL (2016) Influence of arbuscular mycorrhizal fungi inoculum produced on-farm and phosphorus on growth and nutrition of native woody plant species from Brazil. Acta Botanica Brasilica, 30:09-16.

Grace C & Stribley DP (1991) A safer procedure for routine staining of vesicular-arbuscular mycorrhizal fungi. Mycological Research, 95:1160-1162.

Ijdo M, Cranenbrouck S & Declerck S (2011) Methods for large-scale production of AM fungi: past, present, and future. Mycorrhiza, 21:01-16.

Jalonen R, Timonen S, Sierra J & Nygren P (2013) Arbuscular mycorrhizal symbioses in a cut-and-carry forage production system of legume tree Gliricidia sepium and fodder grass Dichanthium aristatum. Agroforsyst system, 87:319-330.

Jin H, Germida JJ & Walley FL (2013) Impact of arbuscular mycorrhizal fungal inoculants on subsequent arbuscular mycorrhizal fungi colonization in pot-cultured field pea (Pisum sativum L.). Mycorrhiza, 23:45-59.

Kim M & Day DF (2011) Composition of sugar cane, energy cane, and sweet sorghum suitable for ethanol production at Louisiana sugar mills. Journal of Industrial Microbiology and Biotechnology, 38:803-807.

Koske RE & Gemma JN (1989) A modified procedure for staining roots to detect VA mycorrhizas. Mycological Research, 92:486-488.

Lopes ES, Oliveira ED, Dias R & Schenk NC (1983) Occurrence and distribution of vesicular-arbuscular mycorrhizal fungi in coffee (Coffea arabica L.) plantations in Central São Paulo State, Brazil. Turrialba, 33:417-422.

Mendonça JJ, de Oliveira PR, Santos JS, Santos JFS, Menezes GS, Costa FM, Barbosa AVG & Marino RH (2019) Crescimento e colonização micorrízica do tomateiro IPA06 inoculado com fungos micorrízicos arbusculares em substrato orgânico. Revista Brasileira de Ciências Agrárias, 14:1-9.

Moreira BC, Prates Junior P, Jordão TC, Silva MDCSD, Ribeiro APF, Stürmer SL, Salomão LCC, Otoni WC & Kasuya MCM (2019) Effect of inoculation of pineapple plantlets with arbuscular mycorrhizal fungi obtained from different inoculum sources multiplied by the on-farm method. Revista Brasileira de Ciência do Solo, 43:e0180148.

Pal S, Singh HB, Farooqui A & Rakshit A (2016) Commercialization of arbuscular mycorrhizal technology in agriculture and forestry. In: Singh HB, Sarma BK & Keswani C (Eds.) Agriculturally Important Microorganisms: Commercialization and Regulatory Requirements in Asia. Singapore, Springer. p.97-105.

Rodrigues KM & Rodrigues BF (2017) Development of carrier based in vitro produced arbuscular mycorrhizal (AM) fungal inocula for organic agriculture. Annals of Advanced Agricultural Sciences, 1:26-37.

Rodrigues LA, Martins MA & Salomão MSMB (2003) Uso de micorrizas e rizóbio em cultivo consorciado de eucalipto e sesbânia: I-Crescimento, absorção e tranferência de nitrogênio entre plantas. Revista Brasileira Ciência do Solo, 27:583-591.

Rodrigues LA, Muniz TA, Samarão SS & Cyrino AE (2016) Qualidade de mudas de Moringa oleifera Lam. cultivadas em substratos com fibra de coco verde e compostos orgânicos. Revista Ceres. 63:545-552.

Santos HG, Jacomine PKT, Anjos LHC, Oliveira VA, Lumbreras JF, Coelho MR, Almeida JA, Araújo Filho JC, Oliveira JB & Cunha TJF (2018a) Sistema brasileiro de classificação de solos. 5 ed. Brasília, Embrapa. 530p.

Santos JS, Santos JFS, Lopes LJDO, Mendonça JDJ, Holanda FSR & Marino RH (2018b) Arbuscular mycorrhizal fungi and dark septate endophytic fungi on the biomass development of vetiver grass. Revista Caatinga, 31:602-611.

Schlemper TR & Stürmer SL (2014) On-farm production of arbuscular mycorrhizal fungi inoculum using lignocellulosic agrowastes. Mycorrhiza, 24:571-580.

Universidade Federal de Viçosa (2007) SAEG: Sistema para Análises Estatísticas e Genéticas. Versão 9.1. Viçosa, Fundação Arthur Bernardes. CD-ROM.

Tanwar A, Aggarwal A, Yadav A & Parkash V (2013) Screening and selection of efficient host and sugarcane bagasse as substrate for mass multiplication of Funneliformis mosseae. Biological Agriculture & Horticulture, 29:107-117.

Descargas

Publicado

2025-06-03

Cómo citar

Mathias Barroso, L., Dias da Silva Lisboa, R., da Silveira, S. F., Silva Samarão, S., & Aparecida Rodrigues, L. (2025). Selecting alternative sterile and non-sterile substrates for mycorrhizal inoculant production. Revista Ceres, 69(5), 603–612. Recuperado a partir de https://ojs.ceres.ufv.br/ceres/article/view/8060

Número

Sección

SOIL AND PLANT NUTRITION

Artículos más leídos del mismo autor/a