Phytosociological survey of weeds in different temperate truit trees in Lavras – MG

Authors

DOI:

https://doi.org/10.33448/rsd-v9i8.6553

Keywords:

Fruit culture; Importance value index; Similarity assessment; Cyperus rotundus; Cynodon dactylon; Brachiaria plantaginea; Pennisetum clandestinum.

Abstract

Brazilian fruit culture has great importance in the economy, appearing as the third largest world producer. In this context, weed management becomes indispensable from an agronomic point of view, as they compete for water, light, nutrient and space, causing many losses to the crops of interest. These losses are accentuated as they are not properly controlled, for this reason, a phytosociological survey is carried out, which allows us to know the dynamics of weeds and their correct identification. The objective of this work was to carry out a phytosociological survey of weeds existing in the cultivation of temperate fruit in the municipality of Lavras-MG. The survey was carried out in the Fruit Sector of the Federal University of Lavras (UFLA). A phytosociological survey was carried out on 18 cultivars of Pereira (Pyrus spp.), Seven cultivars of Macieira (Malus domestica L.), 22 cultivars of Pessegueiro (Prunus persica (L.) Batsch), seven cultivars of Raspberry, ten cultivars of Blackberry -Black (Rubus spp.), In addition to an area planted with 11 cultivars of Caquizeiro (Diospyrus kaki L.), a cultivar of Figueira (Ficus carica L.) and 34 cultivars of Quince (Cydonia oblonga and Chaenomelis sinensis L.). The identifications of the weeds were based on material analysis, photographs and consulting the specialized literature, afterwards the identification, there was the classification and analysis of the community structure, grouping it into families, scientific name, common name and as to the cycle plant productive species. Spatial Distribution, Variance, Density, Frequency, Constancy, Dominance, Importance Value, Importance Value Index and Similarity Assessment were evaluated. The phytosociological survey showed that the species Cyperus rotundus was the species with the highest IVI in the cultivation of mulberry, raspberry, apple and quince. While the Cynodon dactylon species had the highest IVI in the cultivation of raspberries, pear and quince. On the other hand, the Brachiaria plantaginea species reached the highest IVI in the cultivation of apple trees. Finally, the Pennisetum clandestinum species reached the highest IVI in persimmon cultivation.

References

Adegas, F. S., Oliveira, M. F., Vieira, O. V., Prete, C. E. C., Gazziero, D. L. P., Voll, E. (2010). Levantamento Fitossociológico de Plantas Daninhas na Cultura do Girassol. Planta Daninha, 28 (4), 705-716.

Barroso, A. A., Albrecht, A. J., Reis, F. C., Placido, H. F., Toledo, R. E., Albrecht, L. P., Filho, V. R. (2014). Different glyphosate susceptibility in Chrolis polydactyla accessions. Weed Technology, 28(4), 587-591.

Belle, C., Kulczynski, S. M., Kaspary. T. E., Kuhn, P. R. (2017). Plantas daninhas como hospedeiras alternativas para Meloidogyne inognita. Nematropica, 47(1), 26-33.

Benvenutti, M. A., Barber, D. g., Mayer, D. G., Ison, K., Colman, M. V., Findsen, C. (2019). Comparison between a laser sensor and mechanical tools to estimate pasture mass in strata pf kikuyu (Pennisetum clandestinum) pastures. Animal Feed Science and Technology, 249, 31-36.

Bhullar, M. S., Walia, U. S., Singh, S., Singh, M., Jhala, A. J. (2012). Control of morningflories (Ipomea spp.) in sugarcane (Saccharum spp.). Weed Technology, 26(1), 77-82.

Carvalho, L. B., Bianco, S., Blanco, M. S. (2014). Comparative study of dry mass and macronutrients accumulation by Zea mays and Ipomoea hederifolia plants. Planta Daninha, 32(1), 99-107.

Castro, A. I., Peña, J. M., Torrez-Sanchez, J., Jiménez-Brenes, F. M., Valencia-Gredilla, F., Reansens, J., López-Granados, F. (2020). Mapping Cynodon dactylon infesting cover crops with an automatic decision tree-OBIA procedure and UAV imagery for precision viticulture. Remote Sensing, 12 (1), 56.

Concenço, G., Tomazi, M., Correia, I. V. T., Santos, S. A., Galon, L. (2013). Phytosociological surveys: tools for weed science? Planta Daninha, 31(2), 469-482.

Correia, N. M., Kronka Jr, B. (2010). Controle qu[imico de plantas daninhas dos gêneros Ipomoea e Merremia em cana-soca. Planta Daninha, 28(SPE), 1143-1152.

Costa, R. N., Silva, D. M. R., Rocha, A. O., Lima, A. N. S., Santos, J. C. C., Silva, L. K. S., Acchile, S. (2019). Levantamento Fitossociológico de Plantas Daninhas e Área de Produção de Mamão. Revista Científica Rural, 21(3), 172-182.

Dias, A. C. R., Carvalho, S. J. P., Bracalion, P. H. S., Novembre, A. D. L. C., Christoffoleti, P. J. (2010). Competitiveness of alexandergrasse or bengal dayflower with soybean. Planta Daninha, 28 (3), 515-522.

Fontenot, D. P., Griffin, J. L., Bauerle, M. J. (2016). Bermudagrass (Cynodon dactylon) competition with sugarcane at planting. Journal American Society of Sugar Cane Tehnologists, 36(1), 19-30.

Fried G., Chauvel, B., Reynaud, P., Sache I. (2017). Decreases in Crop Production by Non-native Weeds, Pests, and Pathogens. In: Vilá M., Hulme P. (Eds). Impact of Biological Invasions on Ecosystem Services. Invading Nature - Springer Series in Invasion Ecology, vol 12. Springer, Cham.

Hong, M.; Guo Q. S.; Nie, B.H.; Kang, Y.; Pei, S.X.(2011). Responds of Cyperus rotundus to flooding-drying habit changes in Three Gorges Reservoir hydrofluctuation belt. Journal of Agricultural University of Hebei, 34, 77-84.

Machi, A. R., Ferrari, L. S., Arthur, V. (2018). Efficacy of irradiated glyphosate against Brachiaria plantaginea L. Journal of Agricultural Science, 10(7), 383-389.

Martins, M. P., Parreira, M.C., Martins, J. S., Soares, J. B. C., Ribeiro, R. (2018) Levantamento fitossociológico de plantas daninhas na cultura da pimenta-do-reino na Amazônia Oriental. Revista Brasileira de Agropecuária Sustentável, 8(3), 91-98.

Monteiro, L. C., Verzignassi, J. R., Barrios, S. C. L., Valle, C. B., Fernandes, C. D., Benteo, G. L., Libório, C. B. (2016). Brachiaria decumbes intraspecific hybrids: characterization and selection for seed production. Journal of Seed Science, 38(1), 62-67.

Panozzo, L. E.; Agostinetto, D.; Galon, L.; Moraes, P.V.D.; Pinto, J.J.O.; Neves, R. (2009) Métodos de manejo de Cyperus esculentus na lavoura de arroz irrigado. Planta Daninha, 27, 165-174.

Pitelli, R. A. (2015). O termo planta-daninha. Planta Daninha, 33(3), 622-623.

Ramos, R. F., Kaspary, T. E., Balardin, R. R., Dalla, D. N., Antonioli, Z. I., Bellé, C. (2019). Plantas daninhas como hospedeiras dos nematoides-das-galhas. Revista Agronomia Brasileira, 3(1), 1-3.

Roozkhosh, M.; Eslami, S. V.; Al-ahmadi, M. J. (2017). Effect of plastic mulch and burial depth on purple nutsedge (Cyperus rotundus) emergence and growth. Archives of Agronomy and Soil Science, 63(10), 1454-1464.

Powles, S. B. (2008). Evolved glyphosate-resistant weeds around the world: lessons to be learnt. Pest Management Science: formerly Pesticide Science, 64(4), 360-365.

Sarmento, H. G. S., Filho, J. M. C., Aspiazú, I., Rodrigues, T. M., Ferreira, E. A. (2015). Levantamento fitossociológico de plantas daninhas em áreas de bananicultura no Vale do Rio Gorutuba, norte de Minas Gerais. Revista Agroambiente On-line, 9(3), 308-316.

Sarmento, H. G. S., Rodrigues, T. M., Aspiazú, I., Corsato, C. E. (2017) Phytosociological survey in pineapple cultivated in northern Minas Gerais. Nativa, 5(4), 321-236.

Sena, F. H. S., Aspiazú, I., Silva, N. P., Oliveira, R. M., Silva, K. M. J., Matrangolo, C. A. R., Brito, C. F. B. (2019). Levantamento fitossociológico de plantas daninhas em pomares de mangueira no semiárido mineiro. Nativa, 7(5), 500-505.

Silva, A. B., Mello, M. R. F., Sena, A. R., Filho, R. M. L., Leite, T. C. C. (2016). Efeito do extrato de Cyperus rotundus L. no enraizamento de estacas de amoreira-preta. -Cientec-Revista de Ciência e Tecnologia e Humanidades do IFPE, 8(1), 1-9.

Silveira, R. R., Santos, M. V., Ferreira, E. A., Braz, T. G. S., Santos, J. B., Andrade, J. C. A., Costa, J. P. R., Silva, A. M. S., Silva, L. D. (2019). Controle e susceptibilidade de capim-braquiária e capim-ruziziensis ao glyhosate e fluazifop-p-butil. Achivos de Zootecnia, 68(263), 404-410.

Silveira, R. R., Santos, M. V., Ferreira, E. A., Santos, J. B, Silva, L. D. (2017). Chlorophyll Fluorescence in Brachiarua decumbes and Brachiaria ruziziensis submitted to herbicides. Planta Daninha, 35(1), e01765099.

Vázquez-García, J. G., Golmohammadzadeh, S., Palma-Bautista, C., Rojano-Delgado, A. M., Domínguez-Valenzuela, J. A., Cruz-Hipólito, H. E., Prado, R. (2020). New Case of False Star Grass (Chloris distichophylla) Population Evolving Glyphosate Resistance. Agronomy, 10(3), 377.

Yousefi, A. R., Rahimi, M. R. (2014). Integration of soil-applied herbicides ate the reduced rates with physical control for weed management in fennel (Foeniculum vulgare Mill.). Crop Protection, 63(1), 107-112.

Khatounian, C. A.; Oliveira, D. A. M.; Ferreira, T. M.; Dupre, M.; Merianne, H. (2018). Distribuição dos tubérculos de Tiririca (Cyperus rotundus L.) no perfil do solo e suas implicações para a conversão para agricultura orgânica de hortas urbanas. Scientia Plena, 14(9), 1-6.

Published

03/08/2020

How to Cite

ARAÚJO, H. H. R.; SOUZA, F. B. M. de; PIO, R.; FREIRE, A. I.; PEREIRA, A. M.; CRUZ, R. R. P.; PIMENTEL, R. M.; MELO, C. C. V.; SOUZA, A. J. M. de. Phytosociological survey of weeds in different temperate truit trees in Lavras – MG. Research, Society and Development, [S. l.], v. 9, n. 8, p. e964986553, 2020. DOI: 10.33448/rsd-v9i8.6553. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/6553. Acesso em: 25 apr. 2024.

Issue

Section

Agrarian and Biological Sciences