Accès libre

Effects of Grass-Based Crop Rotation, Nematicide, and Irrigation on the Nematode Community in Cotton

À propos de cet article

Citez

Bird, G. W., Schumacher, L. A, Davenport, J., and Kendle, T. 2009. Influence of precipitation on populations of Heterodera glycines in the presence and absence of resistant cultivars. Journal of Nematology 41(4):310. Bird G. W. Schumacher L. A, Davenport, J. and Kendle T. 2009 Influence of precipitation on populations of Heterodera glycines in the presence and absence of resistant cultivars Journal of Nematology 414310Search in Google Scholar

Bongers, T. 1990. The maturity index: An ecological measure of environmental disturbance based on nematode species composition. Oecologia 83:14–19. Bongers T. 1990 The maturity index: An ecological measure of environmental disturbance based on nematode species composition Oecologia 8314 19Search in Google Scholar

Bongers, T. 1994. De nematoden van Nederland. Pirola, Schoorl, Netherlands: KNNV Publishing. Bongers T. 1994 De nematoden van Nederland. Pirola, Schoorl Netherlands KNNV PublishingSearch in Google Scholar

Bongers, T. 1999. The maturity index, the evolution of nematode life history traits, adaptive radiation and cp-scaling. Plant and Soil 212:13–22. Bongers T. 1999 The maturity index, the evolution of nematode life history traits, adaptive radiation and cp-scaling Plant and Soil 21213 22Search in Google Scholar

Bongers, T., and Bongers, M. 1998. Functional diversity of nematodes. Applied Soil Ecology 10:239–251. Bongers T. and Bongers M. 1998 Functional diversity of nematodes Applied Soil Ecology 10239251Search in Google Scholar

Bongers, T., and Ferris, H. 1999. Nematode community structure as a bioindicator in environmental monitoring. Trends Ecology Evolution 14:224–228. Bongers T. and Ferris H. 1999 Nematode community structure as a bioindicator in environmental monitoring Trends Ecology Evolution 14224 228Search in Google Scholar

Carrascosa, M., Sánchez-Moreno, S., and Alonso-Prados, J. L. 2014. Relationships between nematode diversity, plant biomass, nutrient cycling and soil suppressiveness in fumigated soils. European Journal of Soil Biology 62:49–59. Carrascosa M. Sánchez-Moreno S. and Alonso-Prados J. L. 2014 Relationships between nematode diversity, plant biomass, nutrient cycling and soil suppressiveness in fumigated soils European Journal of Soil Biology 6249 59Search in Google Scholar

Cesarz, S., Schulz, A. E., Beugnon, R., and Eisenhauer, N. 2019. Testing soil nematode extraction efficiency using different variations of the Baermann-funnel method. Soil Organisms 91:61–72. Cesarz S. Schulz A. E. Beugnon R. and Eisenhauer N. 2019 Testing soil nematode extraction efficiency using different variations of the Baermann-funnel method Soil Organisms 9161 72Search in Google Scholar

Coleman, D. C., and Wall, D. H. 2015. Soil fauna: Occurrence, biodiversity, and roles in ecosystem function. Pp. 111–149 in E. A. Paul, ed. Soil microbiology, ecology, and biochemistry. London, UK: Academic Press. Coleman D. C. and Wall D. H. 2015 Soil fauna: Occurrence, biodiversity, and roles in ecosystem function Pp 111 149 in Paul E. A. ed Soil microbiology, ecology, and biochemistry London, UK Academic PressSearch in Google Scholar

Cook, R. D., and Weisburg, S. 1999. Response transformations. Applied regression including computing and graphics. Pp. 316–333. New York, NY: Wiley-Interscience. Cook R. D. and Weisburg S. 1999 Response transformations. Applied regression including computing and graphics Pp 316 333 New York, NY Wiley-InterscienceSearch in Google Scholar

Davis, E. L., Hussey, R. S., and Baum, T. J. 2004. Getting to the roots of parasitism. Trends in Parasitology 20:134–141. Davis E. L. Hussey R. S. and Baum T. J. 2004 Getting to the roots of parasitism Trends in Parasitology 20134 141Search in Google Scholar

Desaeger, J., Wram, C., and Zasada, I. 2020. New reduced-risk agricultural nematicides – Rationale and review. Journal of Nematology 52:e2020–e2091. doi/10.21307/jofnem-2020-091. Desaeger J. Wram C. and Zasada I. 2020 New reduced-risk agricultural nematicides – Rationale and review Journal of Nematology 52e2020 e2091 10.21307/jofnem-2020-091Open DOISearch in Google Scholar

Domene, X., Chelinho, S., Campana, P., Natal-da-Luz, T., Alcañiz, J. M., Andrés, P., Römbke, J., and Sousa, J. P. 2011. Influence of soil properties on the performance of Folsomia candida: Implications for its use in soil ecotoxicology testing. Environmental Toxicology and Chemistry 30:1497–1505. Domene X. Chelinho S. Campana P. Natal-da-Luz T. Alcañiz J. M. Andrés P. Römbke J. and Sousa J. P. 2011 Influence of soil properties on the performance of Folsomia candida: Implications for its use in soil ecotoxicology testing Environmental Toxicology and Chemistry 301497 1505Search in Google Scholar

Ettema, C. H. 1998. Soil nematode diversity: Species coexistence and ecosystem function. Journal of Nematology 30:159–169. Ettema C. H. 1998 Soil nematode diversity: Species coexistence and ecosystem function Journal of Nematology 30159 169Search in Google Scholar

Faske, T. R., and Hurd, K. 2015. Sensitivity of Meloidogyne incognita and Rotylenchulus reniformis to fluopyram. Journal of Nematology 47:316–321. Faske T. R. and Hurd K. 2015 Sensitivity of Meloidogyne incognita and Rotylenchulus reniformis to fluopyram Journal of Nematology 47316 321Search in Google Scholar

Ferris, H., Bongers, T., and de Goede, R. G. M. 2001. A framework for soil food web diagnostics: Extension of the nematode faunal analysis concept. Applied Soil Ecology 18:13–29. Ferris H. Bongers T. and de Goede R. G. M. 2001 A framework for soil food web diagnostics: Extension of the nematode faunal analysis concept Applied Soil Ecology 1813 29Search in Google Scholar

Grabau, Z. J., and Chen, S. 2016. Influence of longterm corn-soybean crop sequences on soil ecology as indicated by the nematode community. Applied Soil Ecology 100:172–185. Grabau Z. J. and Chen S. 2016 Influence of longterm corn-soybean crop sequences on soil ecology as indicated by the nematode community Applied Soil Ecology 100172 185Search in Google Scholar

Grabau, Z. J., Liu, C., Schumacher, L. A., Small, I. M., and Wright, D. L. 2021a. In-furrow fluopyram nematicide efficacy for Rotylenchulus reniformis management in cotton production. Crop Protection 140:105423. doi/10.1016/j.cropro.2020.105423. Grabau Z. J. Liu C. Schumacher L. A. Small I. M. and Wright D. L. 2021a In-furrow fluopyram nematicide efficacy for Rotylenchulus reniformis management in cotton production Crop Protection 140105423 10.1016/j.cropro.2020.105423Open DOISearch in Google Scholar

Grabau, Z. J., Treadwell, D. D., Perez Orozco, J. J., Campbell, D. N., and Hochmuth, R. C. 2021b. Organic or conventional production system and nutrient rate affect the nematode community in carrot production. Journal of Nematology 53:1–18. doi/10.21307/jofnem-2021-082. Grabau Z. J. Treadwell D. D. Perez Orozco J. J. Campbell D. N. and Hochmuth R. C. 2021b Organic or conventional production system and nutrient rate affect the nematode community in carrot production Journal of Nematology 531 18 10.21307/jofnem-2021-082Open DOISearch in Google Scholar

Grabau, Z. J., Mauldin, M. D., Habteweld, A., and Carter, E. T. 2020. Nematicide efficacy at managing Meloidogyne arenaria and non-target effects on free-living nematodes in peanut production. Journal of Nematology 52:1–10. doi /10.21307/jofnem-2020-028. Grabau Z. J. Mauldin M. D. Habteweld A. and Carter E. T. 2020 Nematicide efficacy at managing Meloidogyne arenaria and non-target effects on free-living nematodes in peanut production Journal of Nematology 521 10 10.21307/jofnem-2020-028Open DOISearch in Google Scholar

Griffiths, B. S., and Caul, S. 1993. Migration of bacterial-feeding nematodes, but not protozoa, to decomposing grass residues. Biology and Fertility of Soils 15:201–207. Griffiths B. S. and Caul S. 1993 Migration of bacterial-feeding nematodes, but not protozoa, to decomposing grass residues Biology and Fertility of Soils 15201 207Search in Google Scholar

Hodson, A. K., Milkereit, J., John, G. C., Doll, D. A., and Duncan, R. A. 2019. The effect of fumigation on nematode communities in California almond orchards. Nematology 27(9):899–912. doi/10.1163/15685411-00003262. Hodson A. K. Milkereit J. John G. C. Doll D. A. and Duncan R. A. 2019 The effect of fumigation on nematode communities in California almond orchards Nematology 279899 912 10.1163/15685411-00003262Open DOISearch in Google Scholar

Hou, X., Hu, N., Zhang, X., Liang, L., and Zhai, R. 2010. Vertical distribution of soil nematode communities under different tillage systems in lower reaches of Liaohe river. Chinese Geographical Science 20(2):106–111. Hou X. Hu N. Zhang X. Liang L. and Zhai R. 2010 Vertical distribution of soil nematode communities under different tillage systems in lower reaches of Liaohe river Chinese Geographical Science 202106 111Search in Google Scholar

Jenkins, W. R. 1964. A rapid centrifugal-flotation technique for separating nematodes from soil. Plant Disease Reporter 48:692. Jenkins W. R. 1964 A rapid centrifugal-flotation technique for separating nematodes from soil Plant Disease Reporter 48692Search in Google Scholar

Katsvairo, T.W., Wright, D. L., Marois, J. J., Hartzog, D. L., and Rich, J. R. 2007. Performance of peanut and cotton in a bahiagrass cropping system. Agronomy Journal 99:1245–1251. Katsvairo T.W. Wright D. L. Marois J. J. Hartzog D. L. and Rich J. R. 2007 Performance of peanut and cotton in a bahiagrass cropping system Agronomy Journal 991245 1251Search in Google Scholar

Katsvairo, T. W., Wright, D. L., Marois, J. J., Hartzog, D. L., Rich, J. R., and Wiatrak, P. J. 2006. Sod-livestock integration into the peanut-cotton rotation: A systems farming approach. Agronomy Journal 98:1156–1171. Katsvairo T. W. Wright D. L. Marois J. J. Hartzog D. L. Rich J. R. and Wiatrak P. J. 2006 Sod-livestock integration into the peanut-cotton rotation: A systems farming approach Agronomy Journal 981156 1171Search in Google Scholar

Khanal, C., McGawley, E. C., Overstreet, C., and Stetina, S. R. 2018. The elusive search for reniform nematode resistance in cotton. Phytopathology 108:532–541. Khanal C. McGawley E. C. Overstreet C. and Stetina S. R. 2018 The elusive search for reniform nematode resistance in cotton Phytopathology 108532 541Search in Google Scholar

Levene, H. 1960. Robust tests for equality of variances. Pp. 278–292 in I. Olkin, ed. Contributions to probability and statistics. Palo Alto, CA: Stanford University Press. Levene H. 1960 Robust tests for equality of variances Pp 278 292 in Olkin I. ed Contributions to probability and statistics Palo Alto, CA Stanford University PressSearch in Google Scholar

Linford, M. B., and Oliveira, J. M. 1940. Rotylenchulus reniformis, Nov.gen. n. sp., a nematode parasite of roots. Proceedings of Helminthological Society Washington 7:35–42. Linford M. B. and Oliveira J. M. 1940 Rotylenchulus reniformis, Nov.gen n. sp., a nematode parasite of roots. Proceedings of Helminthological Society Washington 735 42Search in Google Scholar

Mai, W. F., and Mullin, P. G. 1996. Plant-parasitic nematodes: A pictorial key to genera. Ithaca, NY: Cornell University Press. Mai W. F. and Mullin P. G. 1996 Plant-parasitic nematodes: A pictorial key to genera Ithaca, NY Cornell University PressSearch in Google Scholar

Matute, M. M., and Anders, M. 2012. Influence of rice rotation systems on soil nematode trophic groups in Arkansas. Journal of Agricultural Science 4(2):11–20. Matute M. M. and Anders M. 2012 Influence of rice rotation systems on soil nematode trophic groups in Arkansas Journal of Agricultural Science 4211 20Search in Google Scholar

Moore, S. R., and Lawrence, K. S. 2012. Rotylenchulus reniformis in cotton: Current methods of management and the future of site-specific management. Nematropica 42:227–236. Moore S. R. and Lawrence K. S. 2012 Rotylenchulus reniformis in cotton: Current methods of management and the future of site-specific management Nematropica 42227 236Search in Google Scholar

Neher, D. A. 2010. Ecology of plant and free-living nematodes in natural and agricultural soil. Annual Review of Phytopathology 48:371–394. Neher D. A. 2010 Ecology of plant and free-living nematodes in natural and agricultural soil Annual Review of Phytopathology 48371 394Search in Google Scholar

Neher, D. A., and Darby, B. J. 2006. Computation and application of nematode community indices: General guidelines. Pp. 211–222 in E. Abebe, I. Andrassy, and W. Transpurger, eds. Freshwater nematodes: Ecology and taxonomy. Wallingford, UK: CABI. Neher D. A. and Darby B. J. 2006 Computation and application of nematode community indices: General guidelines Pp 211 222 in Abebe E. Andrassy I. and Transpurger W. eds Freshwater nematodes: Ecology and taxonomy Wallingford, UK CABISearch in Google Scholar

Neher, D. A., Nishanthan, T., Grabau, Z. J., and Chen, S. Y. 2019. Crop rotation and tillage affect nematode communities more than biocides in monoculture soybean. Applied Soil Ecology 140:89–97. Neher D. A. Nishanthan T. Grabau Z. J. and Chen S. Y. 2019 Crop rotation and tillage affect nematode communities more than biocides in monoculture soybean Applied Soil Ecology 1408997Search in Google Scholar

Nyaku, S. T., Affokpon, A., Danquah, A., and Brentu, F. C. 2017. Harnessing useful rhizosphere microorganisms for nematode control. Pp. 153–182 in M. M. Shah, and M. Mahamood, eds. Nematology – Concepts, diagnosis, and control. London, UK: InTech. Nyaku S. T. Affokpon A. Danquah A. and Brentu F. C. 2017 Harnessing useful rhizosphere microorganisms for nematode control Pp 153 182 in Shah M. M. and Mahamood M. eds Nematology – Concepts, diagnosis, and control London, UK InTechSearch in Google Scholar

Porazinska, D. L., Duncan, L. W., McSorley, R., and Graham, J. H. 1999. Nematode communities as indicators of status and processes of a soil ecosystem influenced by agricultural management practices. Applied Soil Ecology 13:69–86. Porazinska D. L. Duncan L. W. McSorley R. and Graham J. H. 1999 Nematode communities as indicators of status and processes of a soil ecosystem influenced by agricultural management practices Applied Soil Ecology 1369 86Search in Google Scholar

Rosenberg, R. 1976. Benthic faunal dynamics during succession following pollution abatement in a Swedish estuary. Oikos 27:414–427. Rosenberg R. 1976 Benthic faunal dynamics during succession following pollution abatement in a Swedish estuary Oikos 27414 427Search in Google Scholar

Schafer, C. T. 1973. Distribution of foraminifera near pollution sources in Chaleur Bay. Water, Air, and Soil Pollution 2:219–233. Schafer C. T. 1973 Distribution of foraminifera near pollution sources in Chaleur Bay Water, Air, and Soil Pollution 2219 233Search in Google Scholar

Schumacher, L. A., Grabau, Z. J., Wright, D. L., Small, I. M., and Liao, H. 2020. Nematicide influence on cotton yield and plant-parasitic nematodes in conventional and sod-based crop rotation. Journal of Nematology 52:e2020–e2034. doi/10.21307/jofnem-2020-034. Schumacher L. A. Grabau Z. J. Wright D. L. Small I. M. and Liao H. 2020 Nematicide influence on cotton yield and plant-parasitic nematodes in conventional and sod-based crop rotation Journal of Nematology 52e2020 e2034 10.21307/jofnem-2020-034Open DOISearch in Google Scholar

Sieriebriennikov, B., Ferris, H., and de Goede, R. G. M. 2014. NINJA: An automated calculation system for nematode-based biological monitoring. European Journal of Soil Biology 61:90–93. Sieriebriennikov B. Ferris H. and de Goede R. G. M. 2014 NINJA: An automated calculation system for nematode-based biological monitoring European Journal of Soil Biology 6190 93Search in Google Scholar

Smolik, J. D. 1983. Effect of nematicide treatments on nontarget nematode populations associated with corn. Plant Disease 67:28–31. Smolik J. D. 1983 Effect of nematicide treatments on nontarget nematode populations associated with corn Plant Disease 6728 31Search in Google Scholar

Sylvia, D., Alagely, A., Chellemi, D., and Demchenko, L. 2001. Arbuscular mycorrhizal fungi influence tomato competition with bahiagrass. Biology and Fertility of Soils 34:448–452. Sylvia D. Alagely A. Chellemi D. and Demchenko L. 2001 Arbuscular mycorrhizal fungi influence tomato competition with bahiagrass Biology and Fertility of Soils 34448 452Search in Google Scholar

Trap, J., Bonkowski, M., Plassard, C., Villenave, C., and Blanchart, E. 2016. Ecological importance of soil bacterivores for ecosystem functions. Plant and Soil 398:1–24. Trap J. Bonkowski M. Plassard C. Villenave C. and Blanchart E. 2016 Ecological importance of soil bacterivores for ecosystem functions Plant and Soil 3981 24Search in Google Scholar

Van den Hoogen, J., Geisen, S., Routh, D., Ferris, H., Traunspurger, W., Wardle, D., Goede, R., Adams, B., Ahmad, W., Andriuzzi, W., Bardgett, R., Bonkowski, M., Campos-Herrera, R., Cares, J., Caruso, T., Caixeta, L., Chen, X., Costa, S., Creamer, R., and Crowther, T. 2019. Soil nematode abundance and functional group composition at a global scale. Nature 572:194–198. Van den Hoogen J. Geisen S. Routh D. Ferris H. Traunspurger W. Wardle D. Goede R. Adams B. Ahmad W. Andriuzzi W. Bardgett R. Bonkowski M. Campos-Herrera R. Cares J. Caruso T. Caixeta L. Chen X. Costa S. Creamer R. and Crowther T. 2019 Soil nematode abundance and functional group composition at a global scale Nature 572194 198Search in Google Scholar

Waldo, B. D., Grabau, Z. J., Mengistu, T. M., and Crow, W. T. 2019. Nematicide effects on non-target nematodes in bermudagrass. Journal of Nematology 51:1–12. Waldo B. D. Grabau Z. J. Mengistu T. M. and Crow W. T. 2019 Nematicide effects on non-target nematodes in bermudagrass Journal of Nematology 511 12Search in Google Scholar

Wei, P., Liu, Y., Li, W., Qian, Y., Nie, Y., Kim, D., and Wang, M. 2016. Metabolic and dynamic profiling for risk assessment of fluopyram, a typical phenylamide fungicide widely applied in vegetable ecosystem. Scientific Reports 6:33898. Wei P. Liu Y. Li W. Qian Y. Nie Y. Kim D. and Wang M. 2016 Metabolic and dynamic profiling for risk assessment of fluopyram, a typical phenylamide fungicide widely applied in vegetable ecosystem Scientific Reports 633898Search in Google Scholar

Wilson, M. J., and Kakouli-Duarte, T. 2009. Nematodes as environmental indicators. Pp. 315. UK: CABI. Wilson M. J. and Kakouli-Duarte T. 2009 Nematodes as environmental indicators Pp 315 UK CABISearch in Google Scholar

Yeates, G. W. 1999. Effects of plants on nematode community structure. Annual Review of Phytopathology 37:127–149. Yeates G. W. 1999 Effects of plants on nematode community structure Annual Review of Phytopathology 37127 149Search in Google Scholar

Zhang, K., Schumacher, L., Maltais-Landry, G., Grabau, Z. J., George, S., Wright, D. L., Small, I. M., and Liao, H. 2022. Integrating perennial bahiagrass into the conventional rotation of cotton and peanut enhances interactions between microbial and nematode communities. Applied Soil Ecology 170:104254. doi/10.1016/j.apsoil.2021.104254. Zhang K. Schumacher L. Maltais-Landry G. Grabau Z. J. George S. Wright D. L. Small I. M. and Liao H. 2022 Integrating perennial bahiagrass into the conventional rotation of cotton and peanut enhances interactions between microbial and nematode communities Applied Soil Ecology 170104254 10.1016/j.apsoil.2021.104254Open DOISearch in Google Scholar

Zhao, D., Wright, D. L., Marois, J. J., Mackowiak, C. L., and Brennan, M. 2010. Improved growth and nutrient status of an oat cover crop in sod-based versus conventional peanut-cotton rotations. Agronomy and Sustainable Development 30: 497–504. Zhao D. Wright D. L. Marois J. J. Mackowiak C. L. and Brennan M. 2010 Improved growth and nutrient status of an oat cover crop in sod-based versus conventional peanut-cotton rotations Agronomy and Sustainable Development 30 497 504Search in Google Scholar

eISSN:
2640-396X
Langue:
Anglais
Périodicité:
Volume Open
Sujets de la revue:
Life Sciences, other