Maydis leaf blight of maize: Update on status, sustainable management and genetic architecture of its resistance
Tài liệu tham khảo
Kumar, 2022, Genetic diversity, population structure and linkage disequilibrium analyses in tropical maize using genotyping by sequencing, Plants, 11, 799, 10.3390/plants11060799
Khokhar, 2014, Post flowering stalk rot complex of maize –present status and future prospectus, Maydica, 59, 226
Payak, 1973, How to control maize diseases, Indian Farming, 23, 20
Payak, 1985, Maize diseases and approaches to their management, Trop. Pest Manag., 31, 302, 10.1080/09670878509371006
Rathore, 2005, Advances in biology, epidemiology and management of downey mildews and leaf spots
Singh, 1979, Helminthosporium maydis on maize, FAO Plant Prot. Bull., 27, 134
Martinez, 2010, Damages caused by Bipolaris maydis in Panicum maximum cv Tanzania, Semina: Ciencias Agrarias Londrina, 31, 863
Singh, 2012, Southern corn leaf blight- an important disease of maize: an extension fact sheet, Indian. Res.J.Ext. Educ., 1, 334
Drechsler, 1925, Leaf spot of maize caused by Ophiobolus heterostrophus, the asciogerous stage of Helminthosporium exhibiting bipolar germination, J. Agric. Res., 31, 701
Tatum, 1971, The Southern corn leaf blight epidemic, Science, 117, 1113, 10.1126/science.171.3976.1113
Payak, 1980, 114
Hooker, 1970, Physiological races of Helminthosporium maydis and disease resistance, Plant Dis. Rep., 54, 1109
Ullstrup, 1970, History of southern corn leaf blight, Plant Dis. Rep., 56, 1101
Wei, 1988, Pathological and physiological identification of race C of Bipolaris maydis in China, Phytopathology, 78, 550, 10.1094/Phyto-78-550
Smith, 1975, Expression of monogenic chlorotic-lesion resistance to Helminthosporium maydis in corn, Phytopathology, 65, 1160, 10.1094/Phyto-65-1160
Munjal, 1960, Some unrecorded disease of sorghum and maize from India, Curr. Sci., 29, 442
Sharma, 1978, Outbreak of a new pathotype of Helminthosporum maydis on maize in India, Indian Phytopathol., 31, 112
Kumar, 2016, Inheritance study and stable sources of maydis leaf blight (Cochliobolus heterostrophus) resistance in tropical maize germplasm, Cereal Res. Commun., 44, 424, 10.1556/0806.44.2016.004
Payak, 1968, Combating maize disease, Indian Farmer Disease, 1, 53
Jorgensen, 2012, Significant yield increases from control of leaf diseases in maize- an overlooked problem, Outlooks Pest Manag., 23, 162, 10.1564/23aug04
Gregory, 1978, Predicting yield losses in corn from southern corn leaf blight, Phytopathology, 68, 517, 10.1094/Phyto-68-517
Ali, 2012, Accumulation of desirable alleles for southern corn blight (SLB) in maize (Zea mays L.) under the epiphytotic of Helminthosporium maydis, Aust. J.crop sci, 6, 1283
Chandrashekara, 2014, Identification of new sources of resistance to turcicum leaf blight and maydis leaf blight in maize (zea mays L.), Sabrao Journal of Breeding and Genetics, 46, 44
Ullstrup, 1978, Evolution and dynamics of corn diseases and insect problems since the advent of hybrid corn, 283
Fisher, 1976, Leaf infection and yield loss caused by 4 Helminthosporium leaf diseases of corn, Phytopathology, 66, 942, 10.1094/Phyto-66-942
Byrnes, 1989, Relationships between yield of three maize hybrids and severity of southern leaf blight caused by race O of Bipolaris maydis, Plant Dis., 73, 834, 10.1094/PD-73-0834
Richards, 2006
Manamgoda, 2014, The genus Bipolaris. Study in mycology, IMA fungus, 79, 221
Singh, 1974, Seed health testing of maize. Evaluation of testing techniques, with particular reference to Drechslera maydis, Seed Sci. Technol., 2, 349
Owolade, 2000, Fungi associated with maize seed discolouration and abnormalities in south- western Nigeria, Trop. Agric. Res. Ext., 3, 102
Manamgoda, 2011, Cochliobolus: an overview and current status of species, Fungal Divers., 51, 3, 10.1007/s13225-011-0139-4
Sivanesan, 1987, Graminicolous species of Bipolaris, Curvularia, Drechslera, Exserohilum and their teleomorphs, Mycologia, 158, 1
Scheffer, 1997
Berbee, 1999, Cochliobolus phylogenetics and the origin of known, highly virulent pathogens, inferred from ITS and glyceraldehyde-3-phosphate dehydrogenase gene sequences, Mycologia, 91, 964, 10.1080/00275514.1999.12061106
Alexopoulos, 1996
Zhang, 2012, Pleosporales, Fungal Divers., 53, 1, 10.1007/s13225-011-0117-x
Cai, 2009, A polyphasic approach for studying Colletotrichum Fungal Diversity, 39
Hyde, 2010, A case for reinventory of Australia's plant pathogens, Persoonia, 25, 50, 10.3767/003158510X548668
Nelson, 1957, Heterothallism in Helminthosporium maydis, Phytopathology, 47, 191
Smith, 1970, Physiologic races of Helminthosporium maydis, Plant Dis. Rep., 54, 819
Blanco, 1972, Relative survival of populations of race O and race T of Helminthosporium maydis on corn in normal cytoplasm, Plant Disease Reportier, 56, 889
Zamani, 2014, Characterization of Iranian isolates of Fusarium oxysporum on the basis of RAPD analysis, virulence and vegetative compatibility, J. Phytopathol., 152, 449
Gouveia, 2005, Genetic diversity of Hemileia vastatrix based on RAPD markers, Mycologia, 97, 10.1080/15572536.2006.11832815
Gogoi, 2014, Genetic variability in the isolates of Bipolaris maydis causing maydis leaf blight of maize, Afr. J. Agric. Res., 9, 1906
Chung, 2010, Characterization and fine-mapping of a resistance locus for northern leaf blight in maize bin 8.06, Theor. Appl. Genet., 121, 205, 10.1007/s00122-010-1303-z
Lim, 1972, A preliminary characterization of Helminthosporium maydis toxin, Plant Disease Reportier, 56, 805
Wang, 1983, A preliminary report on studies of the relation between peroxidise activity and resistance of maize to Helminthosporium maydis Nishik and Miyake, Acta Phytopathol. Sin., 13, 60
Zhai, 2004, Effects of peroxidase activity induced by Bipolaris maydis race T toxin, J. Yunnan Agric. Univ., 19, 387
Wheeler, 1971, Helminthosporium maydis T- toxin as an indicator of resistance to Southern corn leaf blight, Plant Disease Reportier, 55, 667
Payne, 1978, 68, 707
Rai, 2002, Effect of environmental parameters on the development of turticum leaf blight of maize, Ann. Biol., 18, 153
Tsai, 1993, Disease development, meteorological factors and yield losses of sweet corn cultivars caused blight, Plant Pathology Bulletin, 2, 26
Pal, 2001, Effect of agronomic practices on maydis leaf blight disease of maize, J. Mycopathological.Res, 39, 77
Pakki, 2005, Epidemiology and control of corn leaf blight disease caused by Helminthosporium sp, J Penelitiandan Pengembangan Pertanian, 24, 101
Joshi, 1969, Multiplication of inoculum of Helminthosporium turcicum on sorghum seeds, Indian Phytopathol., 22, 146
Carson, 2004, Identification and mapping of quantitative trait loci conditioning resistance to southern leaf blight of maize caused by Cochliobolus heterostrophus race O, Phytopathology, 94, 862, 10.1094/PHYTO.2004.94.8.862
Makarova, 2004, Dynamics of northern corn leaf blight development under monsoon climatic conditions of Pramur'e, Kukuruza-i-Sorgo, 5, 11
Kumar, 1998, Location of seed-borne fungi associated with discoloured maize seeds, Indian Phytopathol., 51, 247
White, 1973, Ultrastructural changes in corn leaves after inoculation with Helminthosporium maydis, race T, Phytopathology, 63, 296, 10.1094/Phyto-63-296
Wheeler, 1977, Ultrastructure of penetration by Helminthosporium maydis, Physiol. Plant Pathol., 11, 171, 10.1016/0048-4059(77)90055-8
Horwitz, 2013, Cochliobolus heterostrophus: a dothideomycete pathogen of maize, 213
Payak, 1983, Disease rating scales in maize in India, 1
Balint-Kurti, 2006, Analysis of quantitative trait loci for resistance to southern leaf blight in juvenile maize, Phytopathology, 96, 221, 10.1094/PHYTO-96-0221
Hooda, 2018, Mass screening techniques for resistance to maize diseases, ICAR-Indian Inst. Maize Res. PAU Campus, Ludhiana, 1004, 14pp
Balint-Kurti, 2006, Identification of quantitative trait loci for resistance to southern leaf blight and days to anthesis in a maize recombinant inbred line population, Phytopathology, 96, 1067, 10.1094/PHYTO-96-1067
Fry, 1984, Influence of naturally occurring marker genes on the ability of Cochliobolus heterostrophus to induce field epidemics of southern corn leaf blight, Phtopathology, 74, 175, 10.1094/Phyto-74-175
Worley, 1966, Reduction of southern blight on tomato by deep plowing, Plant Dis. Rep., 50, 443
Gurjar, 2012, Efficacy of plant extracts in plant disease management, Agric. Sci., 3, 425
Li, 2009, Powdery mildew of dogwoods: current status and future prospects, Plant Dis., 93, 1084, 10.1094/PDIS-93-11-1084
Guleria, 2010, Toxicity of Solanum xanthocarpum fruit extract against Alternaria brassicae, causal agent of Alternaria blight of Indian mustard (Brassica juncea), Archieves of Phytopathology and Plant Protection, 43, 283, 10.1080/03235400701803937
Glick, 1995, A novel procedure for rapid isolation of plant growth promoting Pseudomonas, Can. J. Microbiol., 41, 533, 10.1139/m95-070
Dethoup, 2007, Morphology and distribution of Talaromyces Flavus from soil and potential use as a biological control agent against plant pathogenic fungi, Thai J. Agric. Sci., 40, 37
Kewachi, 2009, Mycofungicides and fungal biofertilizers, Fungal Divers., 38, 25
Talubnak, 2010, Biological Control of vanilla anthracnose using Emericela nidulans, J. Agric. Technol., 6, 47
Sibounnavong, 2012, Antifungal activities of Chaetomium brasilense CB01 and Chaetomium cupreum CC03 against Fusarium oxysporum f.sp. lycopersici race 2, J. Agric. Technol., 8, 1029
Jha, 2005, Management of maydis leaf blight of maize using eco friendly strategies, J.Indian.Agric. weed sci, 3, 41
Kumar, 2009, Potential of Trichoderma spp. as bio control agent against pathogens causing maydis leaf blight of maize, J. Biol. Control, 23, 89
Cowan, 1999, Plant products as antimicrobial agents, Clin. Microbiol. Rev., 12, 564, 10.1128/CMR.12.4.564
Das, 2010, Techniques for evaluation of medicinal plant products as antimicrobial agent: current methods and future trends, J. Med. Plants Res., 4, 104
Jha, 2004, Effects of botanicals on maydis leaf blight of maize in vitro, Ann. Biol., 20, 173
Kumar, 2009, Evaluation of plant extracts for management of maydis leaf blight of maize, Ann. Plant Protect. Sci., 17, 130
Adeyemo, 2015, Complete inhibition of mycelia growth of fungal pathogens of maize by botanicals, Afr. J. Plant Sci., 93, 106, 10.5897/AJPS2014.1252
Blandino, 2012, Timing of azoxystrobin + propiconazole application on maize to control northern corn leaf blight and maximize grain yield, Field Crop. Res., 139, 20, 10.1016/j.fcr.2012.09.014
Wang, 2015, Optimization of chemical fungicide combination targeting the maize fungal pathogen, Bipolaris maydis: a systematic approach, IEEE (Inst. Electr. Electron. Eng.) Trans. Biomed. Eng., 62, 80
Kumar, 2009, Efficacy of fungicides against Helminthosporium maydis of maize, Ann. Plant Protect. Sci., 17, 255
Naz, 2013, Effect of different fungicides on the incidence of maize pathogen, Helminthosporium maydis . Jokull Journal, 63
Yamashita, 2010, 9, 37
Hulagappa, 2013, Field evaluation of fungicides for management of maydis leaf blight of maize caused by Dreschslera maydis (Nisikado), Trends in Biosciences, 6, 789
Rai, 2012, Foliar diseases of maize and their management, Int. J. Plant Protect., 5, 449
Goulart, 1993, Treatment of maize (Zea mays L.) seed with fungicides, Revista Brasileira- de- Sementes, 15, 165, 10.17801/0101-3122/rbs.v15n2p165-169
Kosolapova, 2010, The result with a combined treatment of seed is higher, Zashchita I Karantin Rastenii, 2, 28
Miller, 1970, Southern corn leaf blight, Plant Disase Reportier, 54
Van Eijnatten, 1961, Susceptibility to leaf blight caused by Cochliobolus heterostrophus in Nigerian varieties of maize, Nature, 191, 515, 10.1038/191515a0
Craig, 1969, Inheritance of chlorotic lesion resistance to Helminthosporium maydis in maize, Plant Dis. Rep., 53, 742
Smith, 1973, Monogenic chlorotic-lesion resistance in corn to Helminthosporium maydis, Crop Sci., 13, 330, 10.2135/cropsci1973.0011183X001300030013x
Zaitlin, 1993, Linkage of rhm, a recessive gene for resistance to Southern corn leaf blight, to RFLP marker loci in maize (Zea mays) seedlings, Genome, 36, 555, 10.1139/g93-076
Cai, 2003, Identification of AFLP markers closely linked to the rhm gene for resistance to Southern corn leaf blight in maize by using bulked segregant analysis, Mol. Genet. Genom., 269, 10.1007/s00438-003-0837-z
Zhao, 2012, Identification and fine mapping of rhm1 locus for resistance to southern corn leaf blight in maize, J. Integr. Plant Biol., 54, 321, 10.1111/j.1744-7909.2012.01112.x
Kaur, 2019, Mapping quantitative trait loci associated with southern leaf blight resistance in maize (Zea mays L.), J. Phytopathol., 167, 591, 10.1111/jph.12849
Yang, 2017, A gene encoding maize caffeoyl‐CoA O‐methyltransferase confers quantitative resistance to multiple pathogens, Nat. Genet., 49, 1364, 10.1038/ng.3919
Zhang, 2022, Ascorbate peroxidase 1 confers resistance to southern corn leaf blight in maize, J. Integr. Plant Biol., 64, 1196, 10.1111/jipb.13254
Holley, 1989, New source of resistance to southern corn leaf blight from tropical hybrid maize derivatives, Plant Dis., 73, 562, 10.1094/PD-73-0562
Burnette, 1985, Inheritance of resistance to Bipolaris maydis race O in crosses derived from nine resistant inbred lines of maize, Phytopathology, 75, 1195, 10.1094/Phyto-75-1195
Balint-Kurti, 2008, Identification of quantitative trait loci for resistance to southern leaf blight and days to anthesis in two maize recombinant inbred line populations, Phytopathology, 98, 315, 10.1094/PHYTO-98-3-0315
Balint-Kurti, 2007, Precise mapping of quantitative trait loci for resistance to southern leaf blight, caused by Cochliobolus heterostrophus race O, and flowering time using advanced intercross maize lines, Genetics, 176, 645, 10.1534/genetics.106.067892
Kump, 2011, Genome-wide association study of quantitative resistance to southern leaf blight in the maize nested association mapping population, Nat. Genet., 43, 163, 10.1038/ng.747
Belcher, 2011, Analysis of quantitative disease resistance to southern leaf blight and of multiple disease resistance in maize, using near-isogenic lines, Theor. Appl. Genet., 124, 433, 10.1007/s00122-011-1718-1
Bubeck, 1993, Quantitative trait loci controlling resistance to gray leaf spot in maize, Crop Sci., 33, 838, 10.2135/cropsci1993.0011183X003300040041x
Wisser, 2006, The genetic architecture of disease resistance in maize: a synthesis of published studies, Phytopathology, 96, 120, 10.1094/PHYTO-96-0120
Wisser, 2011, Multivariate analysis of maize disease resistance suggests a pleiotropic genetic basis and implicates a GST gene, Proc. Natl. Acad. Sci. U.S.A., 108, 7339, 10.1073/pnas.1011739108
Kumar, 2022, Population structure analysis and association mapping for turcicum leaf blight resistance in tropical maize using SSR markers, Genes, 13, 618, 10.3390/genes13040618
Xing, 2006, Analysis of sugarcane mosaic virus resistance in maize in an isogenic dihybrid crossing scheme and implications for breeding potyvirus-resistant maize hybrids, Genome, 49, 1274, 10.1139/g06-070
Yang, 2017, A gene encoding maize caffeoyl‐CoA O‐methyltransferase confers quantitative resistance to multiple pathogens, Nat. Genet., 49, 1364, 10.1038/ng.3919
Yousef, 2001, Comparison of phenotypic and markerassisted selection for quantitative traits in sweet corn, Crop Sci., 41, 10.2135/cropsci2001.413645x
Asea, 2012, Genetic gain and cost efficiency of marker-assisted selection of maize for improved resistance to multiple foliar pathogens, Mol. Breed., 29, 515, 10.1007/s11032-011-9568-8
Kumar, 2020, Genetically modified crops: current status and future prospects, Planta, 251, 91, 10.1007/s00425-020-03372-8
Zhu, 2018, Pyramiding of nine transgenes in maize generates high-level resistance against necrotrophic maize pathogens, Theor. Appl. Genet., 131, 2145, 10.1007/s00122-018-3143-1
Agarwal, 2018, Insights into maize genome editing via CRISPR/Cas9, Physiol. Mol. Biol. Plants, 24, 175, 10.1007/s12298-017-0502-3
Jiang, 1999, Genetic analysis of adaptation differences between highland and lowland tropical maize using molecular markers, Theor. Appl. Genet., 99, 1106, 10.1007/s001220051315
Zwonitzer, 2010, Mapping resistance quantitative trait loci for three foliar diseases in a maize recombinant inbred line population evidence for multiple disease resistance, Phytopathology, 100, 72, 10.1094/PHYTO-100-1-0072
Negeri, 2011, Mapping QTL controlling southern leaf blight resistance by joint analysis of three related recombinant inbred line populations, Crop Sci., 51, 1571, 10.2135/cropsci2010.12.0672
Pengfei, 2011, QTL mapping for resistance to southern leaf blight in sweet corn, Afr. J. Agric. Res., 6, 6197
Li, 2018, Increased experimental conditions and marker densities identified more genetic loci associated with southern and northern leaf blight resistance in maize, Sci. Rep., 8
Lennon, 2014
Kaur, 2019, Mapping quantitative trait loci associated with southern leaf blight resistance in maize (Zea mays L.), J. Phytopathol., 167, 591, 10.1111/jph.12849
Srivastava, 2017, Additional sources of resistance for southern corn leaf blight in Indian maize germplasm, J.Crop.Breed. Genet., 3, 41
Hooda, 2012, Identifying sources of multiple disease resistance in maize, Maize J, 1, 82
Goudar, 2016, Evaluation of maize inbred lines and hybrids for resistance to maydis leaf blight, J. Farm Sci., 29, 408
Brewbaker, 1998, Disease-resistant tropical supersweet corn populations, Hortscience, 33, 1262, 10.21273/HORTSCI.33.7.1262
Mubeen, 2017, Study of southern corn leaf blight (SCLB) on maize genotypes and its effect on yield, J.Saudi.Soc. Agric. Sci., 16, 210
Wang, 2014, Evaluation of maize inbred lines currently used in Chinese breeding programs for resistance to six foliar diseases, Crop J., 2, 213, 10.1016/j.cj.2014.04.004
Paudel, 2007, Tolerance and resistance of maize genotypes against southern leaf blight disease, 256
