How Do Off-Season Cover Crops Affect Soybean Weed Communities?
Abstract
:1. Introduction
2. Materials and Methods
Variables Analyzed and Statistical Analyses
- Relative frequency (RF):
- Relative density (RD):
- Relative abundance (RA):
- Relative Importance Value Index (IVIR):
3. Results
3.1. 2020–2021 Season—Júlio de Castilhos
3.2. 2020–2021 Season—Santa Maria
3.3. 2020–2021 Season—Capão do Leão
3.4. 2020–2021 Season—Similarity Analysis
3.5. 2021–2022 Season—Barra do Ribeiro
3.6. 2021–2022 Season—Santa Maria
3.7. 2021–2022 Season—Santo Ângelo
3.8. 2021–2022 Season—Similarity Analysis
4. Discussion
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Conflicts of Interest
References
- Mennan, H.; Jabran, K.; Zandstra, B.H.; Pala, F. Non-Chemical Weed Management in Vegetables by Using Cover Crops: A Review. Agronomy 2020, 10, 257. [Google Scholar] [CrossRef]
- Gerhards, R.; Schappert, A. Advancing Cover Cropping in Temperate Integrated Weed Management. Pest Manag. Sci. 2019, 76, 42–46. [Google Scholar] [CrossRef] [PubMed]
- Brust, J.; Claupein, W.; Gerhards, R. Growth and weed suppression ability of common and new cover crops in Germany. Crop Prot. 2014, 63, 1–8. [Google Scholar] [CrossRef]
- Seefeldt, S.S.; Una, T.M.; McMoran, D.; Maupin, B.; Myhre, E.; Griffin-LaHue, D. Impacts of Two Years of Autumn Cover Crops in Northwestern Washington on Winter Annual Weed Populations. Weed Sci. 2023, 71, 150–159. [Google Scholar] [CrossRef]
- Murrell, E.G.; Schipanski, M.E.; Finney, D.M.; Hunter, M.C.; Burgess, M.; LaChance, J.C.; Baraibar, B.; White, C.M.; Mortensen, D.A.; Kaye, J.P. Achieving Diverse Cover Crop Mixtures: Effects of Planting Date and Seeding Rate. Agron. J. 2017, 109, 259–271. [Google Scholar] [CrossRef]
- Baraibar, B.; Hunter, M.C.; Schipanski, M.E.; Hamilton, A.; Mortensen, D.A. Weed Suppression in Cover Crop Monocultures and Mixtures. Weed Sci. 2017, 66, 121–133. [Google Scholar] [CrossRef]
- Smith, R.G.; Warren, N.D.; Cordeau, S. Are cover crop mixtures better at suppressing weeds than cover crop monocultures? Weed Sci. 2020, 68, 186–194. [Google Scholar] [CrossRef]
- Concenço, G.; Tomazi, M.; Correia, I.V.T.; Santos, S.A.; Galon, L. Phytosociological surveys: Tools for weed science? Planta Daninha 2013, 31, 469–482. [Google Scholar] [CrossRef]
- Caratti, F.C.; Lamego, F.P.; Reinehr, M.; Fabiani, M.F.; Frizon, D.; Mazzon, M. Floristic composition of weeds in different winter and summer covers. Comun. Sci. 2018, 9, 322–331. [Google Scholar] [CrossRef]
- Forte, C.T.; Galon, L.; Beutler, A.N.; Reichert, F.W., Jr.; Menegat, A.D.; Perin, G.F.; Tironi, S.P. Cultivation Systems, Vegetable Soil Covers and their Influence on the Phytosocyology of Weeds. Planta Daninha 2018, 36, e018176776. [Google Scholar] [CrossRef]
- Silva, M.S.; Costa, T.V.; Furtado, J.A.L.; Souza, J.B.C.; Silva, E.A.; Ferreira, L.S.; Silva, C.A.A.C.; Almeida, E.I.B.; Sousa, W.S.; Oliveira, L.B.T. Performance of pre-emergence herbicides in weed competition and soybean agronomic components. Aust. J. Crop Sci. 2021, 15, 610–617. [Google Scholar] [CrossRef]
- Nkoa, R.; Owen, M.D.K.; Swanton, C.J. Weed Abundance, Distribution, Diversity, and Community Analyses. Weed Sci. 2015, 63, 64–90. [Google Scholar] [CrossRef]
- Baillie, I.C. Soil Taxonomy: A Basic System of Soil Classification for Making and Interpreting Soil Surveys, 2nd ed.; United States Natural Resources Conservation Service, Ed.; U.S. Dept. of Agriculture, Natural Resources Conservation Service: Washington, DC, USA, 1999.
- Silva, L.D.S.; Gatiboni, L.C.; Anghinoni, I.; Souza, R.D. Manual de Calagem e Adubação para os Estados do Rio Grande do Sul e Santa Catarina; Sociedade Brasileira de Ciência do Solo, Núcleo Regional Sul, Comissão de Química e Fertilidade do Solo: Porto Alegre, Brazil, 2016. [Google Scholar]
- Fehr, W.R.; Caviness, C.E. Stages of Soybean Development; Iowa State University of Science and Technology: Ames, IA, USA, 1977; p. 11. [Google Scholar]
- Kissmann, K.G.; Groth, D. Plants Weedy and Harmful, 2nd ed.; BASF: São Paulo, Brazil, 1997; Volume I. [Google Scholar]
- Kissmann, K.G.; Groth, D. Plants Weedy and Harmful, 2nd ed.; BASF: São Paulo, Brazil, 2000; Volume III. [Google Scholar]
- Ellenberg, H.; Mueller-Dombois, D. Aims and Methods of Vegetation Ecology; Wiley & Sons: Hoboken, NJ, USA, 1974. [Google Scholar]
- Barbour, M.G.; Burk, J.H.; Pitts, W.D.; Gilliam, F.S.; Schwartz, M.W. Terrestrial Plant Ecology, 3rd ed.; Barbour, M.G., Ed.; Addison Wesley Longman: Menlo Park, CA, USA, 1999. [Google Scholar]
- Magurran, A.E. Ecological Diversity and Its Measurement; Princeton University Press: Princeton, NJ, USA, 1988. [Google Scholar]
- Sneath, P.H.A.; Sokal, R.R. Numerical Taxonomy. The Principles and Practice of Numerical Classification; W. H. Freeman: New York, NY, USA, 1973. [Google Scholar]
- Hammer, O. PAST: Paleontological statistics software package for education and data analysis. Palaeontol. Electron. 2001, 4, 9. [Google Scholar]
- R Core Team. R: A Language and Environment for Statistical Computing; R Foundation for Statistical Computing: Vienna, Austria, 2018. [Google Scholar]
- Arnhold, E. Easyanova: Analysis of Variance and Other Important Complementary Analyses. 2023. Available online: https://cran.r-project.org/web/packages/easyanova/index.html (accessed on 9 June 2024).
- Radosevich, S.R. Ecology of Weeds and Invasive Plants: Relationship to Agriculture and Natural Resource Management, 3rd ed.; John Wiley & Sons, Inc.: Hoboken, NJ, USA, 2007. [Google Scholar]
- Büchi, L.; Wendling, M.; Amossé, C.; Jeangros, B.; Charles, R. Cover Crops to Secure Weed Control Strategies in a Maize Crop With Reduced Tillage. Field Crops Res. 2020, 247, 107583. [Google Scholar] [CrossRef]
- Gallon, M.; Trezzi, M.M.; Diesel, F.; Balbinot Junior, A.A.; Pagnoncelli Junior, F.D.B.; Barancelli, M.V.J. Environmental Factors’ Action on the Germination Process and Initial Growth of Weeds of Rubiaceae Family. S. Afr. J. Bot. 2018, 117, 26–33. [Google Scholar] [CrossRef]
- Vidal, R.A.; Kalsing, A.; Goulart, I.C.G.R.; Lamego, F.P.; Christoffoleti, P.J. Impacto da temperatura, irradiância e profundidade das sementes na emergência e germinação de Conyza bonariensis e Conyza canadensis resistentes ao glyphosate. Planta Daninha 2007, 25, 309–315. [Google Scholar] [CrossRef]
- Gfeller, A.; Herrera, J.M.; Tschuy, F.; Wirth, J. Explanations for Amaranthus retroflexus Growth Suppression by Cover Crops. Crop Prot. 2018, 104, 11–20. [Google Scholar] [CrossRef]
- Lazaroto, C.A.; Fleck, N.G.; Vidal, R.A. Biologia e ecofisiologia de buva (Conyza bonariensis e Conyza canadensis). Cienc. Rural 2008, 38, 852–860. [Google Scholar] [CrossRef]
- Holkem, A.S.; Silva, A.L.d.; Bianchi, M.A.; Corassa, G.; Ulguim, A.R. Weed management in Roundup Ready® corn and soybean in Southern Brazil: Survey of consultants’ perception. Adv. Weed Sci. 2022, 40, e020220111. [Google Scholar] [CrossRef]
- Kruse, R.; Nair, A. Summer Cover Crops and Lettuce Planting Time Influence Weed Population, Soil Nitrogen Concentration, and Lettuce Yields. HortTechnology 2016, 26, 409–416. [Google Scholar] [CrossRef]
- Stybayev, G.; Zargar, M.; Serekpayev, N.; Zharlygassov, Z.; Baitelenova, A.; Nogaev, A.; Abdiee, A.A.A. Spring-Planted Cover Crop Impact on Weed Suppression, Productivity, and Feed Quality of Forage Crops in Northern Kazakhstan. Agronomy 2023, 13, 1278. [Google Scholar] [CrossRef]
- Souza, M.; Comin, J.J.; Kurtz, C.; Lovato, P.E.; Lima, A.P.; Kuhnen, S. Phenolic Compounds with Allelopathic Potential of Secale cereale L. and Raphanus sativus L. Grown Under an Agroecological No-Tillage System. Planta Daninha 2019, 37. [Google Scholar] [CrossRef]
- Liu, S.; Ma, Z.; Zhang, Y.; Chen, Z.; Du, X.; Mu, Y. The impact of different winter cover crops on weed suppression and corn yield under different tillage systems. Agronomy 2022, 12, 999. [Google Scholar] [CrossRef]
- Concenço, G.; Andres, A.; Schreiber, F.; Silva, A.F.; Moisinho, I.S.; Coradini, M.C. Characterization of the Weed Flora in Rice Areas Under Distinct Cropping Systems and Herbicide Managements. Planta Daninha 2019, 37, e019193842. [Google Scholar] [CrossRef]
- Sawicka, B.; Krochmal-Marczak, B.; Barbaś, P.; Pszczółkowski, P.; Ćwintal, M. Biodiversity of weeds in fields of grain in South-Eastern Poland. Agriculture 2020, 10, 589. [Google Scholar] [CrossRef]
- Cechin, J.; Schmitz, M.F.; Torchelsen, J.S.; Durigon, M.R.; Agostinetto, D.; Vargas, L. Winter cover crops reduce the soil seed bank and infestations of Italian ryegrass in no-tillage system. Crop Sci. 2021, 62, 479–488. [Google Scholar] [CrossRef]
Treat. | Species and Their Respective Cultivars (cv) | DS (kg ha−1) | PE (%) 1 |
---|---|---|---|
2020–2021 season | |||
PO | Fallow (spontaneous vegetation) | - | - |
AP | Black Oat cv Embrapa 139 | 100 | 100 |
ER | Vetch cv Combate | 130 | 100 |
NF | Forage Turnip cv Pé de Pato | 20 | 100 |
RX 110® | Rye cv Progresso + White Oat cv IAPAR 61 + Forage Turnip (cv IPR 16 + cv Japonês) | 84 | 42:45:13 |
RX 210® | Black Oats cv IAPAR 61 + White Oats cv Esmeralda + Rye cv Progresso + Forage Turnip (cv Pé de Pato + cv IPR 16) | 60 | 43:21:22:14 |
RX 220® | White Oats cv Taura + Black Oats cv BRS139 + Rye cv Serrano + Forage Turnip cv IPR 116 | 54 | 8:60:23:9 |
RX 330® | Rye cv Progresso + Black Oat cv IAPAR 16 + Vetch cv Combate | 48 | 33:58:9 |
RX 610® | Black Oat cv IAPAR 61 + Vetch cv Combate + Vetch cv Esmeralda + Forage Turnip cv IPR 16 | 54 | 65:32:3 |
2021–2022 season | |||
PO | Fallow (spontaneous vegetation) | - | - |
AP | Black Oats | 70 | 100 |
ER | Vetch cv Combate | 90 | 100 |
NF | Forage Turnip cv Pé de Pato | 25 | 100 |
TB | White Clover | 6 | 100 |
Mix 1 | Black Oats + Forage Turnip cv IPR 116 + Vetch | 60 | 60:23:17 |
Mix 2 | Black Oats + White Oats + Rye + Forage Turnip cv IPR 116 | 60 | 55:12:15 |
Treatment | Dry Biomass (kg ha−1) |
---|---|
Forage turnip | 4077.07 b 1 |
RX 110® | 7471.37 a |
RX 210® | 7322.36 a |
RX 220® | 4725.07 b |
RX 330® | 3806.05 b |
RX 610® | 6732.95 a |
Treatments | Yield (kg ha−1) |
---|---|
Forage turnip | 3064.49 b 1 |
RX 110® | 3033.74 b |
RX 210® | 4766.21 a |
RX 220® | 3740.02 b |
RX 330® | 4574.07 a |
RX 610® | 4915.23 a |
Treatment | Dry Biomass (kg ha−1) |
---|---|
Fallow 1 | 5935.50 |
Black oats | 5623.70 a 2 |
Vetch | 1352.13 c |
Forage turnip | 4385.47 b |
RX 110® | 5400.60 a |
RX 210® | 7213.60 a |
RX 220® | 5943.90 a |
RX 330® | 4505.87 b |
RX 610® | 5815.60 a |
Treatment | 1st Assessment | 2nd Assessment | 1st Assessment | 2nd Assessment | Capão do Leão | |||||
---|---|---|---|---|---|---|---|---|---|---|
Júlio de Castilhos | Santa Maria | |||||||||
D | H’ | D | H’ | D | H’ | D | H’ | D | H’ | |
Fallow | - | - | - | - | 0.84 | 2.82 | 0.28 | 0.85 | - | - |
Black oats | - | - | - | - | 0.62 | 2.21 | 0.50 | 1.20 | 0.81 | 2.72 |
Vetch | - | - | - | - | 0.85 | 3.21 | 0.76 | 2.35 | 0.80 | 2.83 |
Forage turnip | 0.70 | 1.96 | 0.26 | 0.72 | 0.85 | 3.15 | 0.48 | 1.36 | 0.70 | 2.32 |
RX 110® | 0.66 | 1.85 | 0.50 | 1.00 | 0.80 | 2.79 | 0.56 | 1.37 | 0.70 | 2.31 |
RX 210® | 0.60 | 1.86 | 0.48 | 1.01 | 0.74 | 2.45 | 0.65 | 1.90 | 0.83 | 3.04 |
RX 220® | 0.63 | 1.69 | 0.48 | 0.97 | 0.74 | 2.52 | 0.69 | 1.93 | 0.83 | 3.03 |
RX 330® | 0.70 | 2.12 | 0.51 | 1.07 | 0.75 | 2.45 | 0.62 | 1.66 | 0.80 | 2.80 |
RX 610® | 0.63 | 1.82 | 0.38 | 0.95 | 0.74 | 2.47 | 0.66 | 2.01 | 0.79 | 2.87 |
Treatment | Dry Mass (kg ha−1) |
---|---|
Fallow 1 | 1848.03 |
Black oats | 5760.78 a 2 |
Vetch | 4188.97 a |
Forage turnip | 6248.20 a |
White clover | 1137.43 b |
Mix 1 | 5121.42 a |
Mix 2 | 6345.77 a |
Treatments | Yield (kg ha−1) |
---|---|
Fallow | 3791.68 b 1 |
Black oats | 4299.59 a |
Vetch | 4909.03 a |
Forage turnip | 4390.60 a |
White clover | 4831.62 a |
Mix 1 | 4359.39 a |
Mix 2 | 3642.68 b |
Treatment | Dry Mass (kg ha−1) |
---|---|
Fallow 1 | 2274.18 |
Black oats | 6443.30 a 2 |
Vetch | 3426.42 b |
Forage turnip | 6452.53 a |
White clover | 1971.60 b |
Mix 1 | 6925.02 a |
Mix 2 | 8331.95 a |
Treatment | Dry Mass (kg ha−1) |
---|---|
Fallow 1 | 2958.44 |
Black oats | 6374.96 a 2 |
Vetch | 2131.51 b |
Forage turnip | 7942.56 a |
White clover | 125.61 b |
Mix 1 | 9253.41 a |
Mix 2 | 7758.36 a |
2021–2022 Season | ||||||
---|---|---|---|---|---|---|
Treatment | Barra do Ribeiro | Santa Maria | Santo Ângelo | |||
D | H’ | D | H’ | D | H’ | |
Fallow | 0.88 | 3.29 | 0.39 | 1.42 | 0.79 | 2.74 |
Black oats | 0.75 | 2.22 | 0.41 | 1.12 | 0.67 | 1.74 |
Vetch | 0.72 | 2.11 | 0.47 | 1.52 | 0.57 | 1.85 |
Forage turnip | 0.64 | 1.92 | 0.46 | 1.59 | 0.74 | 2.48 |
White clover | 0.77 | 2.32 | 0.40 | 1.46 | 0.74 | 2.53 |
Mix 1 | 0.72 | 2.15 | 0.38 | 0.89 | 0.59 | 1.82 |
Mix 2 | 0.73 | 2.27 | 0.26 | 0.73 | 0.44 | 1.30 |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Grün, E.; Alves, A.F.; Silva, A.L.d.; Zanon, A.J.; Corrêa, A.R.; Leichtweis, E.M.; Avila Neto, R.C.; Ulguim, A.d.R. How Do Off-Season Cover Crops Affect Soybean Weed Communities? Agriculture 2024, 14, 1509. https://doi.org/10.3390/agriculture14091509
Grün E, Alves AF, Silva ALd, Zanon AJ, Corrêa AR, Leichtweis EM, Avila Neto RC, Ulguim AdR. How Do Off-Season Cover Crops Affect Soybean Weed Communities? Agriculture. 2024; 14(9):1509. https://doi.org/10.3390/agriculture14091509
Chicago/Turabian StyleGrün, Eduarda, Alexandre Ferigolo Alves, Anelise Lencina da Silva, Alencar Junior Zanon, Arícia Ritter Corrêa, Eduard Mroginski Leichtweis, Roberto Costa Avila Neto, and André da Rosa Ulguim. 2024. "How Do Off-Season Cover Crops Affect Soybean Weed Communities?" Agriculture 14, no. 9: 1509. https://doi.org/10.3390/agriculture14091509
APA StyleGrün, E., Alves, A. F., Silva, A. L. d., Zanon, A. J., Corrêa, A. R., Leichtweis, E. M., Avila Neto, R. C., & Ulguim, A. d. R. (2024). How Do Off-Season Cover Crops Affect Soybean Weed Communities? Agriculture, 14(9), 1509. https://doi.org/10.3390/agriculture14091509