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Fluopyram or Resistant Cultivars Manage Meloidogyne arenaria Infestation in Virginia-Type Peanut Production

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Apr 22, 2025

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Becker, J. O., Ploeg, A., and Nunez, J.J. 2019. Multi-year field evaluation of fluorinated nematicides against Meloidogyne incognita in carrots. Plant Disease 103:2392–2396. BeckerJ. O. PloegA. NunezJ.J. 2019 Multi-year field evaluation of fluorinated nematicides against Meloidogyne incognita in carrots Plant Disease 103 2392 2396 Search in Google Scholar

Bendezu, I. F., and Starr, J. L. 2003. Mechanism of resistance to Meloidogyne arenaria in the peanut cultivar COAN. Journal of Nematology 35:115–118. BendezuI. F. StarrJ. L. 2003 Mechanism of resistance to Meloidogyne arenaria in the peanut cultivar COAN Journal of Nematology 35 115 118 Search in Google Scholar

Branch, W. D., and Brenneman, T. B. 2015. Registration of ‘Georgia-14N’ peanut. Journal of Plant Registrations 9:159–161. BranchW. D. BrennemanT. B. 2015 Registration of ‘Georgia-14N’ peanut Journal of Plant Registrations 9 159 161 Search in Google Scholar

Branch, W. D., and Brenneman, T. B. 2020. Registration of ‘GEORGIA-19HP’ peanut. Journal of Plant Registrations 14:306–310. BranchW. D. BrennemanT. B. 2020 Registration of ‘GEORGIA-19HP’ peanut Journal of Plant Registrations 14 306 310 Search in Google Scholar

Branch, W. D., and Brenneman, T. B. 2023. Registration of ‘Georgia-22MPR’ peanut. Journal of Plant Registrations 17:299–303. BranchW. D. BrennemanT. B. 2023 Registration of ‘Georgia-22MPR’ peanut Journal of Plant Registrations 17 299 303 Search in Google Scholar

Branch, W. D., Brenneman, T. B., and Hookstra, G. 2014. Field test results versus marker assisted selection for root-knot nematode resistance in peanut. Peanut Science 41:85–89. BranchW. D. BrennemanT. B. HookstraG. 2014 Field test results versus marker assisted selection for root-knot nematode resistance in peanut Peanut Science 41 85 89 Search in Google Scholar

Burow, M. D., Starr, J. L., Park, C., Simpson, C. E., and Paterson, A. H. 2014. Introgression of homeologous quantitative trait loci (QTLs) for resistance to the root-knot nematode [Meloidogyne arenaria (Neal) Chitwood] in an advanced backcross-QTL population of peanut (Arachis hypogaea L.). Molecular Breeding 34:393–406. BurowM. D. StarrJ. L. ParkC. SimpsonC. E. PatersonA. H. 2014 Introgression of homeologous quantitative trait loci (QTLs) for resistance to the root-knot nematode [Meloidogyne arenaria (Neal) Chitwood] in an advanced backcross-QTL population of peanut (Arachis hypogaea L.) Molecular Breeding 34 393 406 Search in Google Scholar

Chiteka, Z. A., Gorbet, D. W., Shokes, F. M., Kucharek, T. A., and Knauft, D. A. 1988. Components of resistance to late leafspot in peanut. I. levels and variability-implications for selection. Peanut Science 15:25–30. ChitekaZ. A. GorbetD. W. ShokesF. M. KucharekT. A. KnauftD. A. 1988 Components of resistance to late leafspot in peanut. I. levels and variability-implications for selection Peanut Science 15 25 30 Search in Google Scholar

Choi, K., Burow, M. D., Church, G., Burow, G., Paterson, A. H., Simpson, C. E., and Starr, J. L. 1999. Genetics and mechanism of resistance to Meloidogyne arenaria in peanut germplasm. Journal of Nematology 31:283–290. ChoiK. BurowM. D. ChurchG. BurowG. PatersonA. H. SimpsonC. E. StarrJ. L. 1999 Genetics and mechanism of resistance to Meloidogyne arenaria in peanut germplasm Journal of Nematology 31 283 290 Search in Google Scholar

Clevenger, J., Chu, Y., Arrais Guimaraes, L., Maia, T., Bertioli, D., Leal-Bertioli, S., Timper, P., Holbrook, C. C., and Ozias-Akins, P. 2017. Gene expression profiling describes the genetic regulation of Meloidogyne arenaria resistance in arachis hypogaea and reveals a candidate gene for resistance. Scientific Reports 7: article 1317. ClevengerJ. ChuY. Arrais GuimaraesL. MaiaT. BertioliD. Leal-BertioliS. TimperP. HolbrookC. C. Ozias-AkinsP. 2017 Gene expression profiling describes the genetic regulation of Meloidogyne arenaria resistance in arachis hypogaea and reveals a candidate gene for resistance Scientific Reports 7 article 1317 Search in Google Scholar

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

Cordova, L. G., Amiri, A., and Peres, N. A. 2017. Effectiveness of fungicide treatments following the strawberry advisory system for control of Botrytis fruit rot in florida. Crop Protection 100:163–167. CordovaL. G. AmiriA. PeresN. A. 2017 Effectiveness of fungicide treatments following the strawberry advisory system for control of Botrytis fruit rot in florida Crop Protection 100 163 167 Search in Google Scholar

Culbreath, A. K., Todd, J. W., Gorbet, D. W., Shokes, F. M., and Pappu, H. R. 1997. Field response of new peanut cultivar UF 91108 to tomato spotted wilt virus. Plant Disease 81:1410–1415. CulbreathA. K. ToddJ. W. GorbetD. W. ShokesF. M. PappuH. R. 1997 Field response of new peanut cultivar UF 91108 to tomato spotted wilt virus Plant Disease 81 1410 1415 Search in Google Scholar

Culbreath, A. K., Tillman, B. L., Gorbet, D. W., Holbrook, C. C., and Nischwitz, C. 2008. Response of new field-resistant peanut cultivars to twin-row pattern or in-furrow applications of phorate for management of spotted wilt. Plant Disease 92:1307–1312. CulbreathA. K. TillmanB. L. GorbetD. W. HolbrookC. C. NischwitzC. 2008 Response of new field-resistant peanut cultivars to twin-row pattern or in-furrow applications of phorate for management of spotted wilt Plant Disease 92 1307 1312 Search in Google Scholar

Dahlin, P., Eder, R., Consoli, E., Krauss, J., and Kiewnick, S. 2019. Integrated control of Meloidogyne incognita in tomatoes using fluopyram and Purpureocillium lilacinum strain 251. Crop Protection 124: article 104874. DahlinP. EderR. ConsoliE. KraussJ. KiewnickS. 2019 Integrated control of Meloidogyne incognita in tomatoes using fluopyram and Purpureocillium lilacinum strain 251 Crop Protection 124 article 104874 Search in Google Scholar

Desaeger, J., Wram, C., and Zasada, I. 2020. New reduced-risk agricultural nematicides-rationale and review. Journal of Nematology 52: article e2020-19. DesaegerJ. WramC. ZasadaI. 2020 New reduced-risk agricultural nematicides-rationale and review Journal of Nematology 52 article e2020-19 Search in Google Scholar

Faske, T. R., and Brown, K. 2019. Movement of seed- and soil-applied fluopyram in soil columns. Journal of Nematology 51: article e2019-45. FaskeT. R. BrownK. 2019 Movement of seed- and soil-applied fluopyram in soil columns Journal of Nematology 51 article e2019-45 Search in Google Scholar

Grabau, Z. J., Sandoval Ruiz, R., and Liu, C. 2024. Management of Meloidogyne arenaria in peanut production using resistance or nematicides. Nematropica 54:1–14. GrabauZ. J. Sandoval RuizR. LiuC. 2024 Management of Meloidogyne arenaria in peanut production using resistance or nematicides Nematropica 54 1 14 Search in Google Scholar

Grabau, Z. J., and Chen, S. 2016. Influence of long-term corn-soybean crop sequences on soil ecology as indicated by the nematode community. Applied Soil Ecology 100:172–185. GrabauZ. J. ChenS. 2016 Influence of long-term corn-soybean crop sequences on soil ecology as indicated by the nematode community Applied Soil Ecology 100 172 185 Search 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: article e2020-28. GrabauZ. J. MauldinM. D. HabteweldA. CarterE. T. 2020 Nematicide efficacy at managing Meloidogyne arenaria and non-target effects on free-living nematodes in peanut production Journal of Nematology 52 article e2020-28 Search in Google Scholar

Grabau, Z. J., Liu, C., and Sandoval-Ruiz, R. 2021. Meloidogyne incognita management by nematicides in tomato production. Journal of Nematology 53: article e2021-55. GrabauZ. J. LiuC. Sandoval-RuizR. 2021 Meloidogyne incognita management by nematicides in tomato production Journal of Nematology 53 article e2021-55 Search in Google Scholar

Hagan, A. K., Bowen, K. L., Strayer-Scherer, A., Campbell, H. L., and Parker, C. 2024. Evaluation of fluopyram for disease and root knot nematode control along with yield response on peanut. Crop Protection 175: article 106459. HaganA. K. BowenK. L. Strayer-SchererA. CampbellH. L. ParkerC. 2024 Evaluation of fluopyram for disease and root knot nematode control along with yield response on peanut Crop Protection 175 article 106459 Search in Google Scholar

Holajjer, P., Kamra, A., and Singh, P. A. 2016. Influence of nematode-bacterial interactions on N and P mineralisation in soil and on decomposition of crop residues during aerobic composting. Applied Ecology and Environmental Research 14:283–299. HolajjerP. KamraA. SinghP. A. 2016 Influence of nematode-bacterial interactions on N and P mineralisation in soil and on decomposition of crop residues during aerobic composting Applied Ecology and Environmental Research 14 283 299 Search in Google Scholar

Holbrook, C. C., Clevenger, J., Ozias-Akins, P., Chu, Y., and Brenneman, T. B. 2024. Registration of ‘TifJumbo’ peanut. Journal of Plant Registrations 18:279–284. HolbrookC. C. ClevengerJ. Ozias-AkinsP. ChuY. BrennemanT. B. 2024 Registration of ‘TifJumbo’ peanut Journal of Plant Registrations 18 279 284 Search in Google Scholar

Holbrook, C. C., Ozias-Akins, P., Chu, Y., Brenneman, T. B., and Culbreath, A. K. 2023. Registration of ‘TifNV-HG’ peanut. Journal of Plant Registrations 17:512–516. HolbrookC. C. Ozias-AkinsP. ChuY. BrennemanT. B. CulbreathA. K. 2023 Registration of ‘TifNV-HG’ peanut Journal of Plant Registrations 17 512 516 Search in Google Scholar

Holbrook, C. C., Ozias-Akins, P., Chu, Y., Culbreath, A. K., Kvien, C. K., and Brenneman, T. B. 2017. Registration of ‘TifNV-high O/L’ peanut. Journal of Plant Registrations 11:228–230. HolbrookC. C. Ozias-AkinsP. ChuY. CulbreathA. K. KvienC. K. BrennemanT. B. 2017 Registration of ‘TifNV-high O/L’ peanut Journal of Plant Registrations 11 228 230 Search in Google Scholar

Holbrook, C. C., Timper, P., Culbreath, A. K., and Kvien, C. K. 2008. Registration of ‘Tifguard’ peanut. Journal of Plant Registrations 2:92–94. HolbrookC. C. TimperP. CulbreathA. K. KvienC. K. 2008 Registration of ‘Tifguard’ peanut Journal of Plant Registrations 2 92 94 Search in Google Scholar

Hussey, R. S., and Barker, K. R. 1973. Comparison of methods of collecting inocula of Meloidogyne spp, including a new technique. Plant Disease Reporter 57:1025–1028. HusseyR. S. BarkerK. R. 1973 Comparison of methods of collecting inocula of Meloidogyne spp, including a new technique Plant Disease Reporter 57 1025 1028 Search in Google Scholar

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

Ji, X., Li, J., Dong, B., Zhang, H., Zhang, S., and Qiao, K. 2019. Evaluation of fluopyram for southern root-knot nematode management in tomato production in China. Crop Protection 122:84–89. JiX. LiJ. DongB. ZhangH. ZhangS. QiaoK. 2019 Evaluation of fluopyram for southern root-knot nematode management in tomato production in China Crop Protection 122 84 89 Search in Google Scholar

Jiang, Y., Zhou, H., Chen, L., Yuan, Y., Fang, H., Luan, L., Chen, Y., Wang, X., Liu, M., Li, H., Peng, X., and Sun, B. 2018. Nematodes and microorganisms interactively stimulate soil organic carbon turnover in the macroaggregates. Frontiers in Microbiology 9: article 2803. JiangY. ZhouH. ChenL. YuanY. FangH. LuanL. ChenY. WangX. LiuM. LiH. PengX. SunB. 2018 Nematodes and microorganisms interactively stimulate soil organic carbon turnover in the macroaggregates Frontiers in Microbiology 9 article 2803 Search in Google Scholar

Kandel, Y. R., Bradley, C. A., Chilvers, M., I., Mathew, F. M., Tenuta, A. U., Simth, D. L., Wise, K. A., and Mueller, D. S. 2019. Effect of seed treatment and foliar crop protection products on sudden death syndrome and yield of soybean. Plant Disease 103:1712–1720. KandelY. R. BradleyC. A. ChilversM. I. MathewF. M. TenutaA. U. SimthD. L. WiseK. A. MuellerD. S. 2019 Effect of seed treatment and foliar crop protection products on sudden death syndrome and yield of soybean Plant Disease 103 1712 1720 Search in Google Scholar

Khan, Z., and Kim, Y. H. 2005. The predatory nematode, Mononchoides fortidens (Nematoda: Diplogasterida), suppresses the root-knot nematode, Meloidogyne arenaria, in potted field soil. Biological Control 35:78–82. KhanZ. KimY. H. 2005 The predatory nematode, Mononchoides fortidens (Nematoda: Diplogasterida), suppresses the root-knot nematode, Meloidogyne arenaria, in potted field soil Biological Control 35 78 82 Search in Google Scholar

Kinloch, R. A., and Dickson, D. W. 1991. Comparison of winter and spring soil fumigation with 1,3-D for the management of Meloidogyne arenaria on peanut. Journal of Nematology 23:682–685. KinlochR. A. DicksonD. W. 1991 Comparison of winter and spring soil fumigation with 1,3-D for the management of Meloidogyne arenaria on peanut Journal of Nematology 23 682 685 Search in Google Scholar

Levene, H. 1960. Robust tests for equality of variances. Pp. 278–292 in I. Olkin (ed.) Contributions to probability and statistics. Stanford University Press, Palo Alto, California. LeveneH. 1960 Robust tests for equality of variances 278 292 in OlkinI. (ed.) Contributions to probability and statistics Stanford University Press Palo Alto, California Search in Google Scholar

Li, X., Zhang, T., Wang, X., Hua, K., Zhao, L., and Han, Z. 2013. The composition of root exudates from two different resistant peanut cultivars and their effects on the growth of soil-borne pathogen. International Journal of Biological Sciences 9:164. LiX. ZhangT. WangX. HuaK. ZhaoL. HanZ. 2013 The composition of root exudates from two different resistant peanut cultivars and their effects on the growth of soil-borne pathogen International Journal of Biological Sciences 9 164 Search in Google Scholar

Liu, C., and Grabau, Z. 2022. Meloidogyne incognita management using fumigant and non-fumigant nematicides on sweet potato. Journal of Nematology 54: article e2022-26. LiuC. GrabauZ. 2022 Meloidogyne incognita management using fumigant and non-fumigant nematicides on sweet potato Journal of Nematology 54 article e2022-26 Search in Google Scholar

McSorley, R., Dickson, D. W., Candanedolay, E. M., Hewlett, T. E., and Frederick, J. J. 1992. Damage functions for Meloidogyne arenaria on peanut. Journal of Nematology 24:193–198. McSorleyR. DicksonD. W. CandanedolayE. M. HewlettT. E. FrederickJ. J. 1992 Damage functions for Meloidogyne arenaria on peanut Journal of Nematology 24 193 198 Search in Google Scholar

Melody, C., Griffiths, B., Dyckmans, J., and Schmidt, O. 2016. Stable isotope analysis (delta C-13 and delta N-15) of soil nematodes from four feeding groups. PeerJ 4: article e2372. MelodyC. GriffithsB. DyckmansJ. SchmidtO. 2016 Stable isotope analysis (delta C-13 and delta N-15) of soil nematodes from four feeding groups PeerJ 4 article e2372 Search in Google Scholar

Nagy, E. D., Chu, Y., Guo, Y., Khanal, S., Tang, S., Li, Y., Dong, W. B., Timper, P., Taylor, C., and Ozias-Akins, P. 2010. Recombination is suppressed in an alien introgression in peanut harboring Rma, a dominant root-knot nematode resistance gene. Molecular Breeding 26:357–370. NagyE. D. ChuY. GuoY. KhanalS. TangS. LiY. DongW. B. TimperP. TaylorC. Ozias-AkinsP. 2010 Recombination is suppressed in an alien introgression in peanut harboring Rma, a dominant root-knot nematode resistance gene Molecular Breeding 26 357 370 Search in Google Scholar

Noe, J. P. 1992. Variability among populations of Meloidogyne arenaria. Journal of Nematology 24:404–414. NoeJ. P. 1992 Variability among populations of Meloidogyne arenaria Journal of Nematology 24 404 414 Search in Google Scholar

Pagan, C., Coyne, D., Carneiro, R., Kariuki, G., Luambano, N., Affokpon, A., and Williamson, V. M. 2015. Mitochondrial haplotype-based identification of ethanol-preserved root-knot nematodes from Africa. Phytopathology 105:350–357. PaganC. CoyneD. CarneiroR. KariukiG. LuambanoN. AffokponA. WilliamsonV. M. 2015 Mitochondrial haplotype-based identification of ethanol-preserved root-knot nematodes from Africa Phytopathology 105 350 357 Search in Google Scholar

Ploeg, A. T., Stoddard, C. S., Turini, T. A., Nunez, J. J., Miyao, E. M., and Subbotin, S. A. 2023. Tomato mi-gene resistance-breaking populations of Meloidogyne show variable reproduction on susceptible and resistant crop cultivars. Journal of Nematology 55: article e2023-43. PloegA. T. StoddardC. S. TuriniT. A. NunezJ. J. MiyaoE. M. SubbotinS. A. 2023 Tomato mi-gene resistance-breaking populations of Meloidogyne show variable reproduction on susceptible and resistant crop cultivars Journal of Nematology 55 article e2023-43 Search in Google Scholar

Rodriguez-Kabana, R., Backman, P. A., and Williams, J. C. 1975. Determination of yield losses to sclerotium rolfsii in peanut fields. Plant Disease Reporter 59: 855–858. Rodriguez-KabanaR. BackmanP. A. WilliamsJ. C. 1975 Determination of yield losses to sclerotium rolfsii in peanut fields Plant Disease Reporter 59 855 858 Search in Google Scholar

Rutter, W. B., Wadl, P. A., Mueller, J. D., and Agudelo, P. 2021. Identification of sweet potato germplasm resistant to pathotypically distinct isolates of Meloidogyne enterolobii from the Carolinas. Plant Disease 105:3147–3153. RutterW. B. WadlP. A. MuellerJ. D. AgudeloP. 2021 Identification of sweet potato germplasm resistant to pathotypically distinct isolates of Meloidogyne enterolobii from the Carolinas Plant Disease 105 3147 3153 Search in Google Scholar

Sandoval-Ruiz, R., and Grabau, Z. J. 2023. Host suitability of carinata (Brassica carinata) for Rotylenchulus reniformis. Nematropica 53:6–15. Sandoval-RuizR. GrabauZ. J. 2023 Host suitability of carinata (Brassica carinata) for Rotylenchulus reniformis Nematropica 53 6 15 Search in Google Scholar

Simpson, C. E., and Starr, J. L. 2001. Registration of ‘COAN’ peanut. Crop Science 41:918. SimpsonC. E. StarrJ. L. 2001 Registration of ‘COAN’ peanut Crop Science 41 918 Search in Google Scholar

Tirumalaraju, S. V., Jain, M., and Gallo, M. 2011. Differential gene expression in roots of nematode-resistant and -susceptible peanut (Arachis hypogaea) cultivars in response to early stages of peanut root-knot nematode (Meloidogyne arenaria) parasitization. Journal of Plant Physiology 168: 481–492. TirumalarajuS. V. JainM. GalloM. 2011 Differential gene expression in roots of nematode-resistant and -susceptible peanut (Arachis hypogaea) cultivars in response to early stages of peanut root-knot nematode (Meloidogyne arenaria) parasitization Journal of Plant Physiology 168 481 492 Search in Google Scholar

USDA-NASS. 2023. Crop values: 2022 summary (February 2023). USDA, Washington, DC. USDA-NASS 2023 Crop values: 2022 summary (February 2023) USDA Washington, DC Search 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: article e2019-09. WaldoB. D. GrabauZ. J. MengistuT. M. CrowW. T. 2019 Nematicide effects on non-target nematodes in bermudagrass Journal of Nematology 51 article e2019-09 Search in Google Scholar

Watson, T. T., and Desaeger, J. A. 2019. Evaluation of non-fumigant chemical and biological nematicides for strawberry production in Florida. Crop Protection 117:100–107. WatsonT. T. DesaegerJ. A. 2019 Evaluation of non-fumigant chemical and biological nematicides for strawberry production in Florida Crop Protection 117 100 107 Search in Google Scholar

Wei, F., Zhao, L., Xu, X., Feng, H., Shi, Y., Deakin, G., Feng, Z., and Zhu, H. 2019. Cultivar-dependent variation of the cotton rhizosphere and endosphere microbiome under field conditions. Frontiers in Plant Science 10:1659. WeiF. ZhaoL. XuX. FengH. ShiY. DeakinG. FengZ. ZhuH. 2019 Cultivar-dependent variation of the cotton rhizosphere and endosphere microbiome under field conditions Frontiers in Plant Science 10 1659 Search in Google Scholar

Wright, D. L., Tillman, B., Small, I. M., Ferrell, J. A., and DuFault, N. 2021. Management and cultural practices for peanuts. Gainesville, FL: EDIS, SS-AGR-74, University of Florida/Institute of Food and Agricultural Sciences. WrightD. L. TillmanB. SmallI. M. FerrellJ. A. DuFaultN. 2021 Management and cultural practices for peanuts Gainesville, FL EDIS, SS-AGR-74, University of Florida/Institute of Food and Agricultural Sciences Search in Google Scholar

Yeates, G. W., Bongers, T., De Goede, R. G. M., Freckmann, D. W., and Georgieva, S. S. 1993. Feeding-habits in soil nematode families and genera - an outline for soil ecologists. Journal of Nematology 25:315–331. YeatesG. W. BongersT. De GoedeR. G. M. FreckmannD. W. GeorgievaS. S. 1993 Feeding-habits in soil nematode families and genera - an outline for soil ecologists Journal of Nematology 25 315 331 Search in Google Scholar

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