Academic literature on the topic 'Papaya Leaf Diseases­ Anthracnose'

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Journal articles on the topic "Papaya Leaf Diseases­ Anthracnose"

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Purba, Rusta Malum, and I. Nengah Muliarta. "Papaya Leaves as a Plant-Based Pesticide to Control Pests and Plant Diseases." Formosa Journal of Sustainable Research 3, no. 7 (2024): 1455–76. http://dx.doi.org/10.55927/fjsr.v3i7.10314.

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The purpose of writing this article is to explore information regarding the effectiveness of papaya leaf extract in controlling plant pests and diseases. The writing method uses library research by collecting data through searches on Web of Science, Google Scholar, ScienceDirect, and Citation Index. Based on phytochemical tests of papaya leaf extract, there are several chemical compounds in the form of flavonoids, alkaloids, tannins, saponins, and terpenoids which have potential as natural ingredients for vegetable pesticides because they can affect plant pest insects. Papaya leaf extract can
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A, Sainath Chaithanya, and Rachana M. "Identification of Diseased Papaya Leaf through Transfer Learning." Indian Journal of Science and Technology 16, no. 48 (2023): 4676–87. https://doi.org/10.17485/IJST/v16i48.2690.

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Abstract <strong>Background/Objectives:</strong>&nbsp;Papaya leaf being an excellent source of bioactive compounds plays a crucial role in the formulation of Ayurvedic remedies, irrespective of medicinal usage Papaya leaves are frequently affected by diseases which harm the crop and decrease its productivity. Hence, it urges for disease detection.&nbsp;<strong>Methods/Statistical analysis:</strong>&nbsp;Utilizing computer vision methods to detect diseases, presents a solution to the limitations of constant human supervision. The study introduces a transfer learning model built upon the Resnet-
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Prasad, Durga, and R. N. Singh. "Major diseases of field and horticultural crops in Northern Bihar region of India." INTERNATIONAL JOURNAL OF PLANT SCIENCES 17, no. 2 (2022): 180–90. http://dx.doi.org/10.15740/has/ijps/17.2/180-190.

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A survey was conducted to determine the status of major diseases of field and horticultural crops grown in Saharsa, Supaul, Madhepura and Khagaria districts of northern Bihar, India. Three blocks in each district and three villages in each block were surveyed through a random field survey method. Per cent disease incidence was recorded on randomly selected plants in a particular field of selected location. The incidence of diseases was observed on the basis of typical field symptoms and later the association was confirmed through microscopic examinations in the laboratory. In view of maximum d
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Rovicky*, Ach, Widowati Widowati, and Astutik Astutik. "Pest and Disease Control Strategies to Increase the Productivity of Shallot Plants (Allium ascalonium L.)." Riwayat: Educational Journal of History and Humanities 7, no. 3 (2024): 1253–60. http://dx.doi.org/10.24815/jr.v7i3.40246.

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This study reviews the impact of pest and disease attacks on shallot plants (Allium ascalonium L.) and control strategies to increase plant production. Pests such as Spodoptera exigua (onion caterpillar), Thrips tabaci (thrips), Spodoptera ltura F. (armyworm), Liriomyza spp. (leaf slitting fly), and Gryllotalpa spp. (orong-orong), as well as diseases such as trotol or purple spot (Purple blotch), anthracnose (Antracnose), downy mildew, moler or fusarium wilt (Twisting disease), leaf blight (Stemphylium leaf blight), and leaf spot (Cercospora leaf spot) cause a significant decrease in productio
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Tarnowski, T. L. B., and R. C. Ploetz. "First Report of Colletotrichum boninense, C. capsici, and a Glomerella sp. as Causes of Postharvest Anthracnose of Passion Fruit in Florida." Plant Disease 94, no. 6 (2010): 786. http://dx.doi.org/10.1094/pdis-94-6-0786c.

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Anthracnose is an important foliar and fruit disease of passion fruit, Passiflora spp. (3). In 2008, postharvest anthracnose on purple and yellow passion fruits (P. edulis Sims and P. edulis f. flavicarpa O. Degner, respectively) from a commercial planting in Miami-Dade County, FL was examined. Lesions began as light brown areas that became papery, covered much of the fruit surface, and developed pink-to-dark sporulation. Single-conidium isolates from lesions were examined morphologically and with internal transcribed spacer (ITS) sequences. Four taxa were identified: Colletotrichum boninense
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Subedi, Subash, Sheela Koirala, and Saraswati Neupane. "Diversity and occurrence of major diseases of vegetables and fruit crops during spring season at Aanbukhaireni rural municipality of Tanahun district, Nepal." Journal of Agriculture and Natural Resources 2, no. 1 (2019): 60–74. http://dx.doi.org/10.3126/janr.v2i1.26043.

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A survey has been conducted to assess the diversity and occurrence of major vegetables and fruits cultivated in Aanbukhaireni rural municipality of Tanahun district, Nepal during spring season of 2019.The surveyed areas were Satrasayaphant, Baradiphant and Dumridanda villages of ward no 1, Yeklephant, Markichowk and Pateni villages of ward no2 , Gaadapani village of ward no 3, Saakhar village of ward no 4 and Ghummaune village of ward no. 5. The surveyed area consists of upper tropical and sub tropical climate. The total no of farmers field selected for the survey was 34, 32, 24, 17 and 21 fro
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PINEM, ALPIN JUAN HAGATA, DEWA NGURAH SUPRAPTA, and NI WAYAN SUNITI. "Uji Efektivitas Ekstrak Daun Trembesi (Samanea saman (Jacq.) Merr) Untuk Menghambat Pertubuhan Jamur Colletotrichum sp. Penyebab Penyakit Antraknosa Pada Pepaya (Carica Papaya)." Agrotrop : Journal on Agriculture Science 13, no. 2 (2023): 207. http://dx.doi.org/10.24843/ajoas.2023.v13.i02.p05.

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Effectiveness of Rain Tree Leaf Extract (Samanea Saman (Jacq.) Merr) to Inhibit the Growth of the Fungus Colletotrichum sp. the Cause of Anthracnose Disease on Papaya (Carica papaya). Due to its high nutritional value and high economic value, papaya is a local fruit that is in great demand in the community. The production of papaya fruit fluctuates due to a number of factors, one of which is the fungus Colletotrichum sp., which causes anthracnose disease in papaya fruit. In most cases, synthetic fungicides are utilized to combat anthracnose. Reduce the use of synthetic fungicides and replace t
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Efri, Efri, Titik Nur Aeny, Ivayani Ivayani, and Meisroyatul Hulfa. "THE POTENCY OF CALABUR TREE (Muntingia calabura) LEAF EXTRACT TO CONTROL ANTHRACNOSE OF PAPAYA FRUIT." Jurnal Hama dan Penyakit Tumbuhan Tropika 20, no. 1 (2020): 37–45. http://dx.doi.org/10.23960/j.hptt.12037-45.

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The potency of calabur tree (Muntingia calabura) leaf extract to control anthracnose of papaya fruit. The papaya anthracnose caused by Colletotrichum gloeosporioides is one of the factors causing a decrease in papaya production. The research aimed to determine the abilty of calabur tree leaf extract in inhibiting growth, sporulation, and viability of C. gloeosporioides as well as incubation period and disease severity on the fruit of papaya. The experiment was arranged in a nested design, the concentrations (0, 10, 20, 30, 40, 50, and 60%) were nested within the calabur tree leaf extract metho
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Rangkuti, Eryna Elfasari, Suryo Wiyono, and Widodo Widodo. "Identifikasi Colletotrichum spp. Asal Tanaman Pepaya." Jurnal Fitopatologi Indonesia 13, no. 5 (2018): 175. http://dx.doi.org/10.14692/jfi.13.5.175.

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Colletotrichum spp. is known as the causal agent of anthracnose and considered as an important limiting factors on papaya production. The objective of this study was to determine the species of Colletotrichum spp. from various plant parts of papaya (Carica papaya) showing anthracnose symptom. Twenty isolates of Colletotrichum spp. was isolated and were grouped into 3 morphological groups based on colony similarity, conidial morphology, and setae formation. A total of 12 isolates of group I and 3 isolates of group II were identified morphologically as C. gloeosporioides sensu lato based on cyli
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Darmawati, Emmy, and Florensius Labat Bionille. "APPLICATION OF BIO-FUNGICIDES AS INHIBITING ANTHRACNOSE TO EXTEND THE SELLING TIME OF CALLINA PAPAYA." Agric 33, no. 2 (2021): 143–56. http://dx.doi.org/10.24246/agric.2021.v33.i2.p143-156.

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Anthracnose is a disease that attacks papaya fruit while in the field and continues until the fruit is harvested and distributed to the market. Biofungiside made from citronella and green betel was expected to extend the selling papaya at inhibiting the growth of anthracnose. The study was aimed to determine the appropriate concentration of extracts of citronella leaves (Cymbopogon nardus L.) and green betel leaves (Piper betle L.) in inhibiting the growth of C. gloeosporioides as a cause of anthracnose. The extraction was done by boiling the leaves. The test methods used were in vitro and in
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Dissertations / Theses on the topic "Papaya Leaf Diseases­ Anthracnose"

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Uaciquete, Americo. "Characterization, epidemiology and control strategies for the anthracnose pathogen (Colletotrichum spp.) on cashew (Anarcardium occidentale L.) in Mozambique." Thesis, University of Pretoria, 2013. http://hdl.handle.net/2263/40249.

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The first confirmation of the presence of Colletotrichum gloeosporioides Penz. on cashew in Mozambique was based on a combination of observed symptoms, isolation and identification using basic morphological and molecular techniques. Anthracnose is now the second most important in the country, after powdery mildew caused by Oidium anacardii Noack. The present thesis represents a broad overview of the disease in Mozambique. The main focus of this study was thus to gather scientific information on the relevance of this disease in the country and through experimentation, generate recommendat
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Ramos, Romero Lucia. "Occurrence and Importance of Foliar Diseases on Maize (Zea mays L.) in Central Europe." Doctoral thesis, 2016. http://hdl.handle.net/11858/00-1735-0000-002E-E448-3.

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Books on the topic "Papaya Leaf Diseases­ Anthracnose"

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Byther, Ralph S. Sycamore anthracnose (leaf and twig blight). Washington State University, Cooperative Extension, 1997.

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Dao, Van Duy. Winning Cancer, Diabetes, Fibromyalgia, Pain, Arthritis, Metabolism Diseases from Mixing Application of Aspirin Sugar, Metabolism, Papaya Leaf, Traditional Medicine, and Vietnamese Qi Gong. Independently Published, 2019.

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Book chapters on the topic "Papaya Leaf Diseases­ Anthracnose"

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Veeraballi, Rathan Kumar, Muni Sankar Nagugari, Chandra Sekhara Rao Annavarapu, and Eswar Varma Gownipuram. "Deep Learning Based Approach for Classification and Detection of Papaya Leaf Diseases." In Advances in Intelligent Systems and Computing. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-16657-1_27.

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Vishunavat, Karuna, Kuppusami Prabakar, and Theerthagiri Anand. "Seed Health: Testing and Management." In Seed Science and Technology. Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-19-5888-5_14.

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AbstractHealthy seeds play an important role in growing a healthy crop. Seed health testing is performed by detecting the presence or absence of insect infestation and seed-borne diseases caused by fungi, bacteria, and viruses. The most detrimental effect of seed-borne pathogens is the contamination of previously disease-free areas and the spread of new diseases. Sowing contaminated or infected seeds not only spreads pathogens but can also reduce yields significantly by 15–90%. Some of the major seed-borne diseases affecting yield in cereals, oilseeds, legumes, and vegetables, particularly in
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Viana, Eliseth De Souza, J. L. Jesus, E. S. Viana, et al. "EFFECT OF PAPAYA LEAF EXTRACTS ON THE CONTROL OF PAPAYA ANTHRACNOSE." In Ciências Agrárias: o avanço da ciência no Brasil - Volume 5. Editora Científica Digital, 2022. http://dx.doi.org/10.37885/220910121.

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Pocasangre, Luis Ernesto, and Alfonso Martinuz. "Minor fungal diseases of banana." In Achieving sustainable cultivation of bananas Volume 3: Diseases and pests. Burleigh Dodds Science Publishing, 2024. http://dx.doi.org/10.19103/as.2022.0108.07.

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This chapter gives an overview of a number of minor diseases which affects bananas in different parts of the world. It gives an overview of the occurence, causal agent, key disease symptoms, host susceptibility and control of the the following diseases: Cordana leaf spot, Deightoniella leaf spot, Speckle, Anthracnose, Cigar-end rot, Banana blast disease, Freckle disease and Black cross.
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Daivasikamani, S., and A. P. Ranjini. "Diseases affecting coffee: an overview." In Climate-smart production of coffee: Improving social and environmental sustainability. Burleigh Dodds Science Publishing, 2022. http://dx.doi.org/10.19103/as.2021.0096.22.

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Among the various diseases of coffee, leaf rust, black rot, anthracnose, root diseases and nursery diseases are of particular importance, causing considerable damage every year in most coffee regions. Control measures are based on integrated disease management (IDM) techniques which include growing resistant/tolerant varieties, cultural and biological control measures and where appropriate, judicious and timely application of chemical control.
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Swetha, P., and R. Sundararaj. "Diseases of Medicinal Plants Cultivated in Karnataka and Their Management." In Medicinal Plants [Working Title]. IntechOpen, 2022. http://dx.doi.org/10.5772/intechopen.104632.

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A broad spectrum of fungal diseases infecting selected 10 medicinal plants surveyed in Karnataka, India, was studied in the present research. We present a detailed review on previously reported as well as our present investigation’s details of fungal diseases, etiology, symptoms, and its management. Some of the commonly observed diseases are Anthracnose disease, Blight disease, Leaf spot, Root rot, Powdery mildew, Downy mildew, and Wilt disease. The detailed analysis of medicinal plants revealed that the medicinal plants are susceptible to diverse fungal phytopathogens. Therefore, sustainable
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Balakrishna K. "Fusion Approach-Based Horticulture Plant Diseases Identification Using Image Processing." In Advances in Computational Intelligence and Robotics. IGI Global, 2020. http://dx.doi.org/10.4018/978-1-7998-2736-8.ch005.

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Plant disease is the major threat to the productivity of the plants. Identification of the plant diseases is the key to prevent the losses in the productivity and quality of the yield. It is a very challenging task to identify diseases detection on the plant for sustainable agriculture, where it requires a tremendous amount of work, expertise in the plant disease, and also requires excessive processing time. Hence, image processing is used here for detection of diseases in multi-horticulture plants such as alternaria alternata, anthracnose, bacterial blight, and cercospora leaf spot and also a
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Sarita, Bentham Science Publisher, and Rakesh Kumar Chugh. "Mycorrhiza Fungi as a Potential Bioprotectant Against the Plant Pathogens of Chilli." In Industrial Applications of Soil Microbes. BENTHAM SCIENCE PUBLISHERS, 2024. http://dx.doi.org/10.2174/9789815079753124030009.

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Arbuscular mycorrhiza (AM), a symbiosis between plants and members of the Glomeromycota, an ancient phylum of fungi, boosts the availability of water and nutrients to the host plant, such as phosphate and nitrogen. In exchange, the fungus receives up to 20% of the carbon fixed by the plants. Arbuscules, symbiotic entities found inside plant root cells, are responsible for nutrient delivery. The formation of AM is accompanied by a signalling molecule exchange between the symbionts. Plant roots secrete strigolactones, a new class of plant hormones, which help in host recognition. In India, chill
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Conference papers on the topic "Papaya Leaf Diseases­ Anthracnose"

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Mehta, Shiva, and Pooja Sharma. "Implementing CNNs with Federated Learning for Enhanced Detection of Papaya Leaf Diseases." In 2024 4th Asian Conference on Innovation in Technology (ASIANCON). IEEE, 2024. https://doi.org/10.1109/asiancon62057.2024.10837810.

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Suryavanshi, Ankita, Vinay Kukreja, Sushant Chamoli, Shiva Mehta, and Ashish Garg. "A New Age for Agricultural Diagnostics: Federated CNN for Papaya Leaf Diseases." In 2024 IEEE International Conference on Interdisciplinary Approaches in Technology and Management for Social Innovation (IATMSI). IEEE, 2024. http://dx.doi.org/10.1109/iatmsi60426.2024.10502474.

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