INFLUENCE OF THE BUD POSITION IN THE SACCHARUM OFFICINARUM STALK ON THE INITIAL GROWTH OF SPROUTS
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https://doi.org/10.32404/rean.v11i1.7701Keywords:
Saccharum officinarum, Sugarcane billets, Pre-sprouted seedlings, Bud formationAbstract
The use of buds in different positions on the thatch for planting can become a problem, as each part has different concentrations of reserves and hormonal balances, acting differently on the sprouts. This study aimed to evaluate the initial growth of seedlings from sugarcane buds selected from different parts of the plant stalk. The experiment was conducted in a greenhouse using a randomized block design arranged in a 2 x 3 factorial scheme, consisting of two sugarcane varieties and three bud collection positions, with four replications. Buds from the base, middle, and apex of the sugarcane stalk were used. The sprouting speed index for the RB922579 variety, for buds from the base, middle, and apex, was 115, 367, and 339% higher than the SP803280 variety. Similarly, the values for the sprouting coefficient were 67.8, 78.3, and 191.6%, respectively. The apex buds sprouted 65% more than the base buds. The RB922579 variety was superior to the SP803280 variety regarding sprouting and biometric traits, with only the opposite occurring for sprouting speed. Buds from the apex of the stem provide greater sprouting, sprouting speed index, and sprouting speed coefficient than buds from the base and middle of the stem. Sprouting was not correlated with the biometric traits, which were positively correlated.
References
(I) Baracat Neto, J., Scarpare, F.V., Araujo, R.B., Scarpare Filho, J.A. 2017. Initial development and yield in sugarcane from different propagules. Pesquisa Agropecuária Tropical, 47(3), 273-278. DOI: https://doi.org/10.1590/1983-40632016v DOI: https://doi.org/10.1590/1983-40632016v4744472
(II) Carvalho, J.S.B., Nunes, M.F.P.N., Campos, G.P.A., Goes, M.C.C. 2015. Influência de diferentes tipos de estacas e substratos na propagação vegetativa de Hyptis pectinata. Revista de Ciências Agroveterinárias, 14(1), 89-91. https://revistas.udesc.br/index.php/agroveterinaria/article/view/5643.
(III) CONAB. COMPANHIA NACIONAL DE ABASTECIMENTO. 2023. Ministério da Agricultura, Pecuária e Abastecimento. Acompanhamento de Safra Brasileira. Cana-de-açúcar. Safra 2022/2023. Brasília, Ministério da Agricultura, Pecuária e Abastecimento, 412 p. https://www.conab.gov.br/info-agro/safras/cana/boletim-da-safra-de-cana-de-acucar
(IV) Edmond, J.B., Drapala, W.J. 1958. The effects of temperature, sand and soil, and acetone on germination of okra seed. Proceedings of American Society for Horticultural Science, 71, 428-434.
(V) Ferreira, D.F. 2011. Sisvar: a computer statistical analysis system. Ciência e Agrotecnologia, 35(6), 1039-1042. DOI: https://doi.org/10.1590/S1413-70542011000600001. DOI: https://doi.org/10.1590/S1413-70542011000600001
(VI) Franco, C.B., Oliveira, C.E.S; Silva, K.C.; Steiner, F. 2020. Qualidade de mudas pré-brotadas de cana-de-açúcar em resposta ao tamanho do tubete e do minirrebolo. Revista Brasileira de Tecnologia Agroindustrial. 14(01), 3089-3103. DOI: https://doi.org/10.3895/rbta.v14n1.10397
(VII) Freire, C.S., Simões, A.N., Vieira, M.R.S., Barros Júnior, A.P., Costa, F.B. 2014. Qualidade de raízes de mandioca de mesa minimamente processada nos formatos minitolete e rubiene. Revista Caatinga, 27(4), 95–102. https://www.redalyc.org/articulo.oa?id=237132753012.
(VIII) Jesus, H.I., Medeiros, M.L.D.S., Queiroz Lopes, M.D.F.D., Souza O.B.D., Silva, G.M., Mielezrski, F. 2019. Development and gas Exchange of pre-sprouted sugarcane seedlings in three diferente growing substrate media. Journal of Experimental Agriculture International, 32(4) 1-7. DOI: http://dx.doi.org/10.9734/jeai/2019/v32i430114. DOI: https://doi.org/10.9734/jeai/2019/v32i430114
(IX) Landell, M.G.A. 2012. Sistema de multiplicação de cana-de-açúcar com uso de mudas pré brotadas (MPB), oriundas de gemas individualizadas. Instituto Agronômico, Campinas. https://www.iac.sp.gov.br/publicacoes/publicacoes/iacdoc109.pdf.
(X) Machado, E. C.; Pereira, A. R.; Fahal, J. I.; Arruda, H. V.; Cione, J. 1982. Índices biométricos de duas variedades de cana-de-açúcar. Pesquisa Agropecuária Brasileira, 17(9), 1323-1329. https://seer.sct.embrapa.br/index.php/pab/article/view/16281/10473.
(XI) Maia Júnior, S.O., Silva, J.A.C., Santos, K.P.O., Andrade, J.A., Silva, J.V., Endres, L. 2018. Caracterização morfológica e produtiva e suas correlações em cultivares de cana-de-açúcar. Ciência Agrícola, 16(1), 31-42. https://www.seer.ufal.br/index.php/revistacienciaagricola/article/view/4060/3600. DOI: https://doi.org/10.28998/rca.v16i1.4060
(XII) Manhães, C.M.C., Garcia, R.F., Francelino, F.M.A., Francelino, H.O., Coelho, F.C. 2015. Fatores que afetam a brotação e o perfilhamento da cana-de-açúcar. Vértices, 17(1), 163-181. DOI: http://dx.doi.org/10.5935/1809-2667.20150011. DOI: https://doi.org/10.5935/1809-2667.20150011
(XIII) May, A., Ramos, N. P. 2019. Uso de gemas individualizadas de cana-de-açúcar para a produção de mudas. Jaguariúna: Embrapa Meio Ambiente, 19p. (Circular Técnica 29). https://ainfo.cnptia.embrapa.br/digital/bitstream/item/197206/1/Andre-May-CT-29.pdf
(XIV) Meschede, D.K., Velini, E.D., Carbonari, C.A., Moraes, C.P. 2012. Teores de lignina e celulose em plantas de cana-de-açúcar em função da aplicação de maturadores. Planta Daninha, 30(1), 121-127, 2012. DOI: http://dx.doi.org/10.1590/S0100-83582012000100014. DOI: https://doi.org/10.1590/S0100-83582012000100014
(XV) Mohanty, M., Das, P.P., Nanda, S.S. 2015. Introducing SSI (Sustainable Sugarcane Initiative) technology for enhances cane production and economic returns in real farming situations under east coast climatic conditions of India. Sugar Tech, 17(2), 116-120. DOI: https://doi.org/10.1007/s12355-014-0311-8. DOI: https://doi.org/10.1007/s12355-014-0311-8
(XVI) Nascimento, J. M., Souza, C. M. A., Arcoverde, S. N. S., Altomar, P. H. 2021. Aplicação de maturador e fertilizante foliar em cana-de-açúcar. Revista Cultura Agronômica,30(1), 51-65. DOI: http://dx.doi.org/10.32929/2446-8355.2021v30n1p51-65. DOI: https://doi.org/10.32929/2446-8355.2021v30n1p51-65
(XVII) Oliveira, A.R., Braga, M.B., Santos, B.L.S., Walker, A.M. 2016. Biometria de cultivares de cana-de-açúcar sob diferentes reposições hídricas no vale do submédio São Francisco. Revista Energia na Agricultura, 31(1), 48-58. DOI: http://dx.doi.org/10.17224/EnergAgric.2016v31n1p48-58. DOI: https://doi.org/10.17224/EnergAgric.2016v31n1p48-58
(XVIII) Oliveira, H.P., Melo, R. O., Baldotto, M.A., Andrade, M.A., Baldotto, L.E.B. 2018. Performance of pre-sprouted sugarcane seedlings in response to the application of humic acid and plant growth-promoting bactéria. Semina: Ciências Agrárias, 39(3), 1365-1370. DOI: https://doi.org/10.5433/1679-0359.2018v39n3p1365. DOI: https://doi.org/10.5433/1679-0359.2018v39n3p1365
(XIX) Pinto, L.E.V., Spósito, T.H.N., Godinho, A.M.M., Martins, F.B. 2016. Produção de mudas pré brotadas de cana-de-açúcar em função de diferentes substratos. Colloquium agrariae, 12, 93-99. DOI: http://dx.doi.org/10.5747/ca.2016.v12.nesp.000177. DOI: https://doi.org/10.5747/ca.2016.v12.nesp.000177
(XX) Santos, H.G., Jacomine, P.K.T., Anjos, L.H.C., Oliveira, V.A., Lumbreras, J.F., Coelho, M.R., Almeida, J.A., Araujo Filho, J.C., Oliveira, J.B., Cunha, T.J.F. 2018. Sistema Brasileiro de Classificação de Solos. Embrapa, Brasília. https://www.embrapa.br/busca-de-publicacoes/-/publicacao/1094003/sistema-brasileiro-de-classificacao-de-solos.
(XXI) Segato, S.V., Mattiuz, C.F.M., Mozambani, A.E. 2006. Aspectos fenológicos da 355 cana-de-açúcar. In: Segato, S. V., Pinto, A.S., Jendiroba, E. (Ed.) Atualização em produção de cana de-açúcar. Livroceres, Piracicaba, p. 19-36.
(XXII) Sousa, B.T., Zucareli, V., Martins, A.P.C. 2020. Quantificação de açúcares totais e auxina no desenvolvimento inicial de mini-toletes de cana-de-açúcar. Colloquium Agrariae, 16(3), 94-103, DOI: http://dx.doi.org/10.5747/ca.2020.v16.n3.a375. DOI: https://doi.org/10.5747/10.5747/ca.2020.v16.n3.a375
(XXIII) Taiz, L., Zeiger, E., Moller, I. M.; Murphy, A. 2017. Fisiologia e desenvolvimento vegetal. Artmed Editora, São Paulo.
Thomas, A.L. 2016. Desenvolvimento das plantas de batata, mandioca, fumo e cana-de-açúcar. UFRGS, Porto Alegre. https://lume.ufrgs.br/handle/10183/143809.
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