Efficacy of Plant Extracts on Morphology and Cultural Characteristics of <i>Bipolaris sorokiniana</i>, Causing Black Point Disease of Wheat in Bangladesh — Oak Academic Publishing
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Efficacy of Plant Extracts on Morphology and Cultural Characteristics of <i>Bipolaris sorokiniana</i>, Causing Black Point Disease of Wheat in Bangladesh
Institute of Environmental Science, University of Rajshahi, Rajshahi, Bangladesh
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Institute of Environmental Science, University of Rajshahi, Rajshahi, Bangladesh
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Department of Plant Pathology, Faculty of Agriculture, Sher-e-Bangla Agricultural University, Dhaka, Bangladesh
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Institute of Environmental Science, University of Rajshahi, Rajshahi, Bangladesh
1 Institute of Environmental Science, University of Rajshahi, Rajshahi, Bangladesh
2 Institute of Environmental Science, University of Rajshahi, Rajshahi, Bangladesh
3 Department of Plant Pathology, Faculty of Agriculture, Sher-e-Bangla Agricultural University, Dhaka, Bangladesh
4 Institute of Environmental Science, University of Rajshahi, Rajshahi, Bangladesh
Black point of wheat caused by Bipolaris sorokiniana (Bs) is very destructive disease of wheat in Bangladesh and all over the world. The symptoms of diseases caused by Bipolaris sorokiniana can vary depending on the host plant and environmental conditions. The conidia of Bs germinate from two poles, which differ physiologically as indicated by the rate, growth character, of length, breadth and number of septa on different media. The aim of this study was to evaluate the efficacy of selected plant extracts on the morphology and cultural characteristics of the fungus Bipolaris sorokiniana causing black point disease in wheat crops in Bangladesh. The efficacy of fifteen plant extracts on the growth and characteristics of Bs was conducted in vitro in 2019-2020. The treatments were : Untreated control, T 1 —Black berry Leaves, T 2 — Guava Leaves, T 3 —Lantena camera leaves, T 4 —Eucalyptus Leaves, T 5 — Turmeric Leaves, T 6 —Khoksha Leaves, T 7 —Papaya leaves, T 8 -Gurlic Bulb, T 9 —Chili dust, T 10 —Nigella seeds, T 11 —Turmeric dust, T 12 —Cloves, T 13 — Bohera fruits, T 14 —Black pepper and T 15 —Neem leaves. After 15 days of inoculation of Bipolaris sorokiniana , colony color and shapes were Gerrish blackish, greenish blackish, greyish blackish and shapes were round or irregular. In our study, conidia color was dark brown to light brown, conidiophore color was brown, dark brown, grayish brown, dark olivaceous, light brown and conidia shapes were elliptical, oblong or slightly curved. The septation of conidia w as 2 - 5 and highest septation was seen in T 4 and T 14 treatments. The highest conidial length was 17.79 μm recorded in T 2 treatment and lowest was 6.62 μm T 9 treatment where conidial breath was 8.27 μm in control and lowest was 3.79 μm in T 8 treatment. Mycelial growth rate of Bipolaris sorokiniana w as different in different treatments in different days after inoculation (DAI) where at 7 DAI, % reduction of mycelial growth over control was highest in Bohera and Neem Leaves treatments respectively.
Christensen, J.J. (1922) Studies on the Parasitism of Helminthosporium sativum Minn. Bulletin 11, University of Minnesota, Minnesota Agricultural Experiment Station, Minneapolis, 38.
Sharmin, A., Aminuzzaman, F.M., Ansari, T.H. and Ahmed, M. (2022) Morphological, Cultural, Molecular and Pathogenic Variation of Bipolaris sorokiniana in Wheat. American Journal of Molecular Biology, 12, 190-202. https://www.scirp.org/journal/amib.2161-6663 https://doi.org/10.4236/ajmb.2022.124016
Christensen, J.J. (1925) Physiology Specialization and Mutation in Helminthosporium sativum. Phytopathology, 15, 785-795.
Luttrell, E.S. (1955) A Taxonomic Revision of Helminothsporium sativum and Related Species. Pakistan Journal of Botany, 33, 338-351.
Shoemaker, R.A. (1959) Nomenclature of Drechslera and Bipolaris, Grass Parasites Segregated from Helminthosporium. Canadian Journal of Botany, 37, 879-887. https://doi.org/10.1139/b59-073
Aminuzzaman, F.M., Hossain, I. and Ahmed, F. (2010) Cultural Variation and Pathogenicity of Bipolaris sorokiniana on Wheat in Bangladesh. International Journal of Agriculture, Environment and Biotechnology, 3, 207-216.
Luz,W.C. (1987) Identificação dos principais fungos das sementes de trigo. Circular Técnica EMBRAPA-MA-CNPT, 20 p.
Mehta, R.Y. (1978) Doenças do trigo e seu controle. Agronômica Ceres, São Paulo, 190 p.
Reis, E.M. (1985) Doenças do trigo: Podridão comum de raízes. CNDA, São Paulo, 43 p.
Alcorn, J.L. (1988) The Taxonomy of Helminthosporium Species. Annual Review of Phytopathology, Palo Alto, 26, 37-56. https://doi.org/10.1146/annurev.py.26.090188.000345
Misra, A.P., Pandey, S.P., Misra, A.K. and Jha, J. (1981) Pathogenic Difference in Isolates of Bipolaris sorokiniana from Wheat, Barley and Triticale from Different Geographic Region. 3rd Inter. Symp. Plant Path. IARI, New Delhi, 131-132.
Sivanesan, A. and Holliday, P. (1981) CMI Descriptions of Pathogenic Fungi and Bacteria. Set 71, Nos. 701-710, 20 p.
Sivanesan, A. (1990) Mycosphaerella graminicola. CMI Descriptions of Pathogenic Fungi and Bacteria No. 986. Mycopathologia, 109, 51-53.
Maraite, H., Zinno, D., Longree, H., Daumerie, V. and Duveiller, E. (1998) Fungi Associated with Foliar Blight of Wheat in Warmer Areas. Proceeding of the International Workshop on Helminthsporium Diseases of Wheat: Spot Blotch and Tan Spot, El Batan, 9-14 February 1997, 293-300.
Yesmin, D., Akhter, N. and Aminuzzaman, F.M. (2012) Black Pointed Wheat Seeds and Leaf Blight (Bipolaris sorokiniana) Severity. LAP Lambert Academic Publishing GmbH & Co. KG, Saarbrucken.
Pascaul, C.B. and Raymundo, A.D. (1991) Variability of Helminthosporium sativum Isolates Causing Leaf Spot in Wheat. Philippine Journal of Crop Science, 16, 38.
Hetzler, J. (1992) Host-Pathogen Interaction in Population of Bipolaris sorokiniana in the Nontraditional Areas. Doctoral Thesis, The Georg-August University Gottingen, Göttingen, 132 p.
Hossain, I. and Azad, A.K. (1992) Reaction of Wheat to Helminthosporium sativum in Bangladesh. Hereditas, 116, 203-205. https://doi.org/10.1111/j.1601-5223.1992.tb00824.x
Ahmed, A.U., Rahman, M.Z., Bhuiyan, K.A. and Mian, I.H. (1997) Variation in Isolates of Bipolaris sorokiniana from Wheat. Bangladesh Journal of Plant Pathology, 13, 29-36.
Alam, K.B., Shaheed, M.A., Ahmed, F. and Malakar, P.K. (1994) Bipolaris Leaf Spot (Spot Blotch) of Wheat in Bangladesh. CIMMYT, Mexico City, 334-342.
Hanson, E.W. and Christensen, I.I. (1953) The Black Point Disease of Wheat in the United States. The University of Minnesota Agricultural Experiment Station Technical Bulletin 206, 30 p.
Ilija, K.K., Mitrev, S. and Kostadinovska, E.D. (2000) Bipolaris sorokiniana (Teleomorph Cochiliobolus sativus)—Causer of Barley Leaf Lesions and Root Rot in Macedonia. Faculty of Agriculture, Department of Plant Protection, Goce Delcev Stip University, Shtip.
Almaguer, M., Rojas, T.I., Dobal, V., Batista, A. and Aira, M.J. (2013) Effect of Temperature on Growth and Germination of Conidia in Curvularia and Bipolaris Species Isolated from the Air. Aerobiologia, 29, 13-20. https://doi.org/10.1007/s10453-012-9257-z
Acharya, K., Dutta, A.K. and Pradhan, P. (2011) Bipolaris sorokiniana (Sacc.) Shoem.: The Most Destructive Wheat Fungal Pathogen in the Warmer Areas. Australian Journal of Crop Science, 5, 1064-1071.
Jones, D.G. and Clifford, B.C. (1983) Cereal Diseases, Their Pathology and Control. John Wiley and Sons Limited, Hoboken.
Mathre, D.E. (1987) Compendium of Barley Diseases. American Pathological Science, St. Paul.
Machacek, J.E. and Greaney, F.J. (1938) The Black Point or Kernel Smudge Diseases of Cereals. Canadian Journal of Research Section C, 16, 84-113. https://doi.org/10.1139/cjr38c-007
EL-Helaly, A.F. (1947) The Black Point Disease of Wheat. Phytopathology, 37, 773-780.
Conner, R.L. and Thomas, J.B. (1985) Genetic Variation and Screening Techniques for Resistance to Black Point in Soft White Spring Wheat. Canadian Journal of Plant Pathology, 7, 402-407. https://doi.org/10.1080/07060668509501669
Kendra, R.M., Maria, H.D.M. and Erna, E.B. (2006) Identification of Bipolaris bicolor and Bipolaris sorokiniana on Wheat Seeds (Triticum aestivum L.) in Brazil. Brazilian Journal of Microbiology, 37, 247-250. https://www.researchgate.net/publication/242613446 https://doi.org/10.1590/S1517-83822006000300010
Morejón, K.R., Kimati, H. and Fancelli, M.I. (1998) Bipolaris Bicolor (Mitra) Shoemaker: Species Associated to Foliar Spot in Pupunha Palm (Bactris gasipaes Kunth) in Brazil. Revista Iberoamericana de Micología, Cuba, 15, 55-57.
ISTA (2001) (International Rules for Seed Testing Association) International Rules for Seed Testing. Rules Amendments. Seed Science and Technology, 29, 1-127.
ISTA (1996) International Rules for Seed Testing. Seed Science and Technology, 13, 299-513.
Valim, L.M., Prestes, A.M., Vander, S.S., Matsumara, A.T.S. and Vander, S.S. (1997) Variation in Cultural Characteristics, Morphology and Virulence among Isolates of Bipolaris sorokiniana. Fitopatologia Brasileira, 22, 483-487.
Bidari, V.B. and Govindu, H.C. (1975) Comparative Studies on the Physiology of Leaf, Neck and Earhead Isolates of Helminthosporium sativum Pamm, King and Bakke Parasitic on Wheat Crop in Karnataka. The Mysore Journal of Agricultural Sciences, 9, 421-426.
Chidambaram, P., Mathur, S.B. and Nergaars, P. (1973) Identification of Seed Borne Drechslera spp. In: International Seed Testing Association (ISTA) Handbook on Seed Health Testing, ISTA, Bassersdorf, 165-207.
Azad, A.K., Sardar, A., Yesmin, N., Rahman, M. and Islam, S. (2013) Eco-Friendly Pest Control in Cucumber (Cucumis sativa L.) Field with Botanical Pesticides. Natural Resources, 4, 404-419. https://doi.org/10.4236/nr.2013.45050
Hossain, M.H. and Hossain, I. (2012) Effect of Seed Treatment with Different Botanicals, Bavistin and BAU Bio-Fungicide on Germination and Seedling Vigor of Groundnut. Bangladesh Agronomy Journal, 16, 87-94.
Hossain, I., Rashid, A.Q.M.B., Fakir, G.A. and Meah, M.B. (1998) Leaf Blight of Wheat: Its Status and Impact on Grain Formation. 1st National Workshop on Seed Pathology, Progress and Prospect of Seed Pathological Research in Bangladesh, Mymensingh, 9-12 June 1998.
Panse, V.G. and Sukhatme, P.V. (1967) Statistical Methods for Agricultural Workers. ICAR, New Delhi, 381.
Chauhan, P.K., Singh, D.P. and Karwasra, S.S. (2017) Morphological and Pathogenic Variability in Bipolaris sorokiniana Causing Spot Blotch in Wheat (Triticum aestivum, T. durum, T. dicoccum) in India. International Journal of Current Microbiology and Applied Sciences, 6, 3499-3520. http://www.ijcmas.com https://doi.org/10.20546/ijcmas.2017.611.412
Deepti and Kumar, R. (2018) Morphological Characterization of Bipolaris sorokiniana Isolates, Isolated from Different Wheat Genotypes. Journal of Biotechnology and Crop Science, 7, 37-42.
Avato, P., Vitali, C., Mongelli, P. and Tava, A. (1997) Antimicrobial Activity of Polyacetylenes from Bellis perennis and Synthetic Derivatives. Planta Medica, 63, 503-507. https://doi.org/10.1055/s-2006-957751
Zavala, M.A., Perez, S. and Perez, R.M. (1997) Antimicrobial Screening of Some Medicinal Plants. Phytotherapy Research, 11, 368-371. https://doi.org/10.1002/(SICI)1099-1573(199708)11:5 3.0.CO;2-6
Ertürk, O. (2006) Antibacterial and Antifungal Activity of Ethanolic Extracts from Eleven Spice Plants. Biologia, 61, 275-278. https://doi.org/10.2478/s11756-006-0050-8
Ewa Czerwińska (2015) Antibacterial and Antifungal Activity of Plant Extracts. Agnieszka Szparaga Koszalin University of Technology, 17, 209-229.
Barnett, H.L. and Hunter, B.B. (1999) Illustrated Genera of Imperfect Fungi. 4th Edition, APS Press, St. Paul, 126.
Aminuzzaman, F.M. and Hossain, I. (2005) Pathotype Variation on Bipolaris sorokiniana on Wheat. Bangladesh Journal of Plant Pathology, 21, 81-88.
Iftikhar, S., Shahzad, A., Munir, A. and Ahmed, I. (2009) Characterization of Bipolaris sorokiniana Isolated from Different Agro-Ecological Zones of Wheat Production in Pakistan. Pakistan Journal of Botany, 41, 301-308.
Navathe, S., Yadav, P.S., Chand, R., Mishra, V.K., Vasistha, N.K., Meher, P.K., et al. (2020) ToxA-TSN1 Interaction for Spot Blotch Susceptibility in Indian Wheat: An Example of Inverse Gene-for-Gene Relationship. Plant Disease, 104, 71-81. https://doi.org/10.1094/PDIS-05-19-1066-RE
Wiese, M.V. (1987) Compendium of Wheat Diseases. APS Press, St. Paul.
Raza, M., Hossain, M., Ghazaneer, M.U., Hamid, M.I., Asad, S. and Nangyal, H. (2014) Characterization and Pathology of Bipolaris sorokiniana Spot Blotch of Wheat in Pakistan. FUUAST Journal of Biology, 4, 97-100.
Aggarwal, R., Singh, V.B., Gurjar, M.S., Gupta, S. and Srinivas, P. (2009) Intraspecific Variations in Indian Isolates of Bipolaris sorokiniana Infecting Wheat Based on Morphological, Pathogenic and Molecular Characters. Indian Phytopathology, 62, 449-460.
Magar, P.B., Suraj, Baidya, S., Koju, R. and Adhikary, S. (2020) In-Vitro Evaluation of Botanicals and Fungicides against Bipolaris sorokiniana, Causing Spot Blotch of Wheat. Journal of Agriculture and Natural Resources, 3, 296-305. https://doi.org/10.3126/janr.v3i2.32534
Nasrin, Z., Ferdousy, Z.A., Sarker, B.C., Sultana, S., Adhikary, S.K. and Mondal, C. (2017) Effect of Subculturing and Age on Sporulation and Morphological Characteristics of Bipolaris sorokiniana. Life Science, 14, 59-70.
Islam, M., Juraimi, A.S., Idris, A.S., Rusli, M.H., Omar, R.Z.R., Tohiran, K.A. and Husri, M.N. (2023) Effects of Culture Medium and Light Durations on the Fungal Growth of Bipolaris sorokiniana. Journal of Oil Palm Research. https://doi.org/10.21894/jopr.2023.0010