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Soil Sci., 58, 74, 10.1111\u002Fj.1365-2389.2006.00801.x","https:\u002F\u002Fdoi.org\u002F10.1111\u002Fj.1365-2389.2006.00801.x",{"mag":502,"openalex":503,"doi":504},"2111148073","W2111148073","10.1111\u002Fj.1365-2389.2006.00801.x",{"id":506,"createTime":507,"updateTime":508,"relativeEntities":509,"slug":510,"properties":511,"entityType":95,"verifyStatus":96,"verifyTime":520,"verifyNote":98,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":521,"fullTextUrl":18,"authors":522,"publicationType":135,"publisherRelationship":538,"citationCount":18,"citationInfo":18,"publishDate":580,"publishYear":581,"citationAnalyzeStatus":582,"lastCitationAnalyze":508,"indexDatabases":583,"openAccess":18,"references":18,"isForceReanalyzing":181},"bc761939-f3d8-4327-8171-06b061afbfce","2024-01-19T18:04:13.140+00:00","2026-08-19T02:40:27.538+00:00",[],"Strategies-to-manage-weedy-rice-in-Asia",{"title":512,"gsPaper":514,"references":516,"doi":518},{"EN":513},"Strategies to manage weedy rice in Asia",{"VOID":515},"[]",{"VOID":517},"Abeysekara, 2010, Weedy rice: a threat to direct seeded rice culture in Sri Lanka\nAllard, J.-L., Pradith, W., Kotzian, R.K., 2005. 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Plant Pathol., 80, 85\nChampeil, 2004, Fusarium head blight: epidemiological origin of the effects of cultural practices on head blight attacks and the production of mycotoxins by Fusarium in wheat grains, Plant Sci., 166, 1389, 10.1016\u002Fj.plantsci.2004.02.004\nChelkowski, 1989, Formation of mycotoxins produced by Fusaria in heads of wheat, triticale and rye, 63\nCleveland, 2003, Research on pre-harvest prevention of mycotoxins and mycotoxigenic fungi in US crops, Pest Manage. Sci., 59, 629, 10.1002\u002Fps.724\nDilantha, F., 1999. Overview of the Fusarium situation in Canada. In: Canadian Workshop on Fusarium Head Blight.\nDill-Macky, 2000, The effect of previous crop residues and tillage on Fusarium head blight of wheat, Plant Dis., 84, 71, 10.1094\u002FPDIS.2000.84.1.71\nDoohan, 2003, Influence of climatic factors on Fusarium species pathogenic to cereals, Eur. J. Plant Pathol., 109, 755, 10.1023\u002FA:1026090626994\nEdwards, 2004, Influence of agricultural practices on Fusarium infection of cereals and subsequent contamination of grain by trichothecene mycotoxins, Toxicol. Lett., 153, 29, 10.1016\u002Fj.toxlet.2004.04.022\nGilchrist, 2002, Fusarium head blight\nHörberg, 2002, Patterns of splash dispersed conidia of Fusarium poae and Fusarium culmorum, Eur. J. Plant Pathol., 108, 73, 10.1023\u002FA:1013936624884\nKhonga, 1988, Inoculum production and survival of Gibberella zeae in maize and wheat residues, Can. J. Plant Pathol., 10, 232, 10.1080\u002F07060668809501730\nKoch, 2006, Evaluation of environmental and management effects on Fusarium head blight infection and deoxynivalenol concentration in the grain of winter wheat, Eur. J. Agron., 24, 357, 10.1016\u002Fj.eja.2006.01.006\nMiller, 1995, Fungi and mycotoxins in grain: implication for stored product research, J. Stored Prod. Res., 31, 1, 10.1016\u002F0022-474X(94)00039-V\nMiller, 1998, Effect of tillage practice on Fusarium head blight of wheat, Can. J. Plant Pathol., 20, 95, 10.1080\u002F07060669809500450\nMinervini, 2004, Toxicity and apoptosis induced by the mycotoxins nivalenol, deoxynivalenol and fumonisin B1 in a human erythroleukemia cell line, Toxicol. In Vitro, 18, 21, 10.1016\u002FS0887-2333(03)00130-9\nPirgozliev, 2003, Strategies for the control of Fusarium head blight in cereals, Eur. J. Plant Pathol., 109, 731, 10.1023\u002FA:1026034509247\nRamirez, 2004, Impact of environmental factors and fungicides on growth and deoxynivalenol production by Fusarium graminearum isolates from Argentinian wheat, Crop Prot., 23, 117, 10.1016\u002Fj.cropro.2003.07.005\nRossi, 2002, Effect of constant and fluctuating temperature regimes on sporulation of four fungi causing head blight of wheat, J. Plant Pathol., 84, 95\nRotter, 1996, Toxicology of deoxynivalenol (vomitoxin), J. Toxicol. Environ. Health, 48, 1, 10.1080\u002F009841096161447\nSchaafsma, 1993, Ear rot development and mycotoxin production in corn in relation to inoculation method, corn hybrid, and species of Fusarium, Can. J. Plant Pathol., 15, 185, 10.1080\u002F07060669309500821\nSchaafsma, 2001, Agronomic consideration for reducing deoxynivalenol in wheat grain, Can. J. Plant Pathol., 23, 279, 10.1080\u002F07060660109506941\nShifrin, 1999, Trichotecene mycotoxins trigger a ribotoxic stress response that activate c-Jun N-terminal kinase and p38 mitogen-activated protein kinase and induces apoptosis, J. Biol. Chem., 274, 13985, 10.1074\u002Fjbc.274.20.13985\nSutton, 1982, Epidemiology of wheat head blight and maize ear rot caused by Fusarium graminearum, Can. J. Plant Pathol., 4, 195, 10.1080\u002F07060668209501326\nTeich, 1989, Epidemiology of wheat (Triticum aestivum L.) scab caused by Fusarium spp., 269\nWalklate, 1989, Vertical dispersal of plant pathogens by splashing. 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Res., 113, 867, 10.1016\u002Fj.mycres.2009.04.005\nFerraz, 2010\nFranco-Navarro, 2009, New records of Pochonia chlamydosporia from Mexico: isolation, root colonization and parasitism of Nacobbus aberrans eggs, Nematropica, 39, 133\nFreitas, 2009, Controle biológico de nematóides: estudo de casos, 41\nGaspard, 1990, Association of Verticillium chlamydosporium and Paecilomyces lilacinus with root-knot nematode infested soil, J. Nematol., 22, 207\nGodoy, 1983, Fungal parasites of Meloidogyne arenaria eggs in an Alabama soil: a mycological survey and greenhouse studies, Nematropica, 13, 201\nHallmann, 2009, Biological control using microbial pathogens, endophytes and antagonists, 380\nHidalgo-Diaz, 2000, Nematophagous Verticillium spp. in soils infested with Meloidogyne spp. in Cuba: isolation and screening, Int. J. Pest Manage., 46, 277, 10.1080\u002F09670870050206046\nHirsch, 2000, Detection of the nematophagous fungus Verticillium chlamydosporium in nematode-infested plant roots using PCR, Mycol. Res., 104, 435, 10.1017\u002FS0953756299001483\nHussey, 1973, A comparison of methods of collecting inocula of Meloidogyne spp., including a new technique, Plant Dis. Rep., 57, 1025\nKerry, 1975, Fungi and the decrease of cereal cyst-nematode populations in cereal monoculture, EPPO Bull., 5, 353, 10.1111\u002Fj.1365-2338.1975.tb02485.x\nKerry, 1991, Methods for studying the growth and survival of the nematophagous fungus. Verticillium chlamydosporium Goddard in soil, Bull. SROP., 14, 34\nKerry, 1995, Ecological considerations for the use of nematophagous fungus, Verticillium chlamydosporium, to control plant parasitic nematodes, Can. J. Bot., 73, S65, 10.1139\u002Fb95-226\nKerry, 2001, Exploitation of the nematophagous fungus Verticillium chlamydosporium Goddard for the biological control of root-knot nematodes (Meloidogyne spp.), 155\nKerry, 1996, The importance of rhizosphere interactions in the biological control of plant parasitic nematodes – a case study using Verticillium chlamydosporium, Pestic. Sci., 47, 69, 10.1002\u002F(SICI)1096-9063(199605)47:1\u003C69::AID-PS386>3.0.CO;2-6\nKerry, 2002\nLopes, 2007, Potencial de isolados de fungos nematófagos no controle de Meloidogyne javanica, Nematol. Bras, 31, 78\nManzanilla-López, 2009, Measuring abundance, diversity and parasitic ability in two populations of the nematophagous fungus Pochonia chlamydosporia var. chlamydosporia, Biocontrol Sci. Tech., 19, 391, 10.1080\u002F09583150902783793\nMorton, 2003, PCR-based DNA fingerprinting indicates host-related genetic variation in the nematophagous fungus Pochonia chlamydosporia, Mycol. Res., 107, 198, 10.1017\u002FS0953756203007251\nOlivares-Bernabeu, 2002, Fungal egg-parasites of plant-parasitic nematodes from Spanish soils, Rev. Iberoam. Micol., 19, 104\nPérez-Rodríguez, 2007, Isolates of Pochonia chlamydosporia var. chlamydosporia from Mexico as potential biological control agents of Nacobbus aberrans, Nematropica, 37, 127\nScott, 1974, A cluster analysis method for grouping means in the analysis of variance, Biometrics, 30, 507, 10.2307\u002F2529204\nSegers, 1996, The role of the proteinase VCP1 produced by the nematophagous Verticillium chlamydosporium in the infection process of nematode eggs, Mycol. Res., 100, 421, 10.1016\u002FS0953-7562(96)80138-9\nSmith, 1994\nSosnowska, 2001, The role of fungi in reduction of sugar beet nematode (Heterodera schachtii Schmidt) population, Bull. OILB-SROP, 24, 151\nSun, 2006, Fungi and actinomycetes associated with Meloidogyne spp. eggs and females in China and their biocontrol potential, J. Invert. 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Integrated approaches for managing the Asian citrus psyllid Diaphorina citri (Homoptera: Psyllidae) in Florida. In: Proceedings Florida State Horticultural Society 3–4 June 2007, (Palm Beach, FL), pp. 110–115.\nQureshi, 2008, Rate, placement and timing of aldicarb applications to control Asian citrus psyllid, Diaphorina citri Kuwayama (Hemiptera: Psyllidae), in oranges, Pest. Manag. Sci., 64, 1159, 10.1002\u002Fps.1612\nQureshi, 2009, Exclusion techniques reveal significant biotic mortality suffered by Asian citrus psyllid Diaphorina citri (Hemiptera: Psyllidae) populations in Florida citrus, Biol. Contr., 50, 129, 10.1016\u002Fj.biocontrol.2009.04.001\nQureshi, 2009, Incidence of invasive Diaphorina citri (Hemiptera: Psyllidae) and its introduced parasitoid Tamarixia radiata (Hymenoptera: Eulophidae) in Florida citrus, J. Econ. 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