![]() |
Identification and Characterization of
May Moe Oo, Ha-Yeon Yoon, Hyun A Jang, Sang-Keun Oh
Plant Pathol J. 2018;34(6):480-489. Published online 2018 Dec 1 DOI: https://doi.org/10.5423/PPJ.FT.10.2018.0201
|
Citations to this article as recorded by
Re-identification of Colletotrichum gloeosporioides Species Complex Isolates in Korea and Their Host Plants
Le Dinh Thao, Hyorim Choi, Yunhee Choi, Anbazhagan Mageswari, Daseul Lee, Dong-Hyun Kim, Hyeon-Dong Shin, Hyowon Choi, Ho-Jong Ju, Seung-Beom Hong
The Plant Pathology Journal.2024; 40(1): 16. CrossRef Identification and Fungicide Screening of Fungal Species Associated with Walnut Anthracnose in Shaanxi and Liaoning Provinces, China
Kun Fan, Yu-Kun Qi, Li Fu, Li Li, Xing-Hong Liu, Jian-Lu Qu, De-Wei Li, Ai-Xin Dong, Yi-Ji Peng, Qing-Hai Wang
Plant Disease.2024; 108(3): 599. CrossRef The MdVQ37‐MdWRKY100 complex regulates salicylic acid content and MdRPM1 expression to modulate resistance to Glomerella leaf spot in apples
Qinglong Dong, Dingyue Duan, Feng Wang, Kaiyu Yang, Yang Song, Yongxu Wang, Dajiang Wang, Zhirui Ji, Chengnan Xu, Peng Jia, Haoan Luan, Suping Guo, Guohui Qi, Ke Mao, Xuemei Zhang, Yi Tian, Yue Ma, Fengwang Ma
Plant Biotechnology Journal.2024; 22(8): 2364. CrossRef Colletotrichum Species Associated with Apple Bitter Rot and Glomerella Leaf Spot: A Comprehensive Overview
Vojislav Trkulja, Bojana Čojić, Nenad Trkulja, Andrija Tomić, Slavica Matić, Jela Ikanović, Tatjana Popović Milovanović
Journal of Fungi.2024; 10(9): 660. CrossRef Apple Bitter Rot and Glomerella Leaf Spot: A Comprehensive Review of Causal Species and Their Biology, Fungicide Sensitivities, and Management Strategies
Michael S. McLaughlin, Sanna Abbasi, Pervaiz A. Abbasi, Shawkat Ali
Plant Disease.2024; 108(12): 3432. CrossRef PCR Based Assays for the Specific Detection of Colletotrichum species Causing Apple Bitter Rot in Korea
Abdulkareem Abdullahi, Heung Tae Kim
The Korean Journal of Pesticide Science.2024; 28(3): 298. CrossRef Preservation Properties of Citrus Essential Oils in Fruits Against Food Spoilage Microorganisms
Oluwatayo Benjamin Ajayi-Moses, Clement Olusola Ogidi, Bamidele Juliet Akinyele
Contemporary Agriculture.2024; 73(3-4): 145. CrossRef Evaluation of Streptomyces sporoverrucosus B-1662 for biological control of red pepper anthracnose and apple bitter rot diseases in Korea
DaYoung Kim, Jungyeon Kim, Younmi Lee, Kotnala Balaraju, Ye-Ji Hwang, Mi-Hwa Lee, Wonsu Cheon, Hye Yeon Mun, Chang Soo Lee, Yongho Jeon
Frontiers in Microbiology.2024;[Epub] CrossRef Assessment and Characterization of Colletotrichum species causing Bitter Rot Disease of Apple in Quetta (Pakistan)
Muhammad Shahid, Farah Naz, Sadia Sana, Gulshan Irshad, Muhammad Azam Khan
International Journal of Phytopathology.2024; 13(2): 109. CrossRef Nota científica: Evaluación de un método rápido para la extracción de ADN a partir de aislamientos de Colletotrichum spp.
Camila Gutiérrez-Góngora, Rosa Lilia Ferrucho, Gustavo Marín-Ramírez
Revista Cenicafé.2024; 75(2): e75205. CrossRef Colletotrichum species causing anthracnose disease on avocado fruit in Taiwan
Chao-Jung Wu, Miao-Chun Lin, Hui-Fang Ni
European Journal of Plant Pathology.2023; 165(4): 629. CrossRef Molecular Characterization and Fungicide Sensitivity of Jujube PathogensColletotrichum gloeosporioidesSensu Stricto andColletotrichum nymphaeaein South Korea
Eun Chan Kang, Oliul Hassan, Kyung-Min Kim, Taehyun Chang
Plant Disease.2023; 107(3): 861. CrossRef Re-identification of Colletotrichum acutatum Species Complex in Korea and Their Host Plants
Le Dinh Thao, Hyorim Choi, Yunhee Choi, Anbazhagan Mageswari, Daseul Lee, Seung-Beom Hong
The Plant Pathology Journal.2023; 39(4): 384. CrossRef A Bitter, Complex Problem: Causal Colletotrichum Species in Virginia Orchards and Apple Fruit Susceptibility
Fatemeh Khodadadi, Ricardo D. Santander, Diana J. McHenry, Wayne M. Jurick, Srđan G. Aćimović
Plant Disease.2023; 107(10): 3164. CrossRef Etiology of Anthracnose Disease on Shallots Caused by Colletotrichum gloeosporioides
Rizki Abi Amrullah, Suryo Wiyono, Awang Maharijaya, Agus Purwito
Jurnal Fitopatologi Indonesia.2023; 19(5): 206. CrossRef First Report of Colletotrichum fructicola, C. rhizophorae sp. nov. and C. thailandica sp. nov. on Mangrove in Thailand
Chada Norphanphoun, Kevin D. Hyde
Pathogens.2023; 12(12): 1436. CrossRef Colletotrichum Diversity within Different Species Complexes Associated with Fruit Anthracnose in South Korea and Their Fungicides In-Vitro Sensitivity
Taehyun Chang, Oliul Hassan, Jong Yeob Jeon, Chi Hyun Kim, Dae Min Lee, Ju Sung Kim, Eun Chan Kang, Jaewon Kim
Research in Plant Disease.2023; 29(4): 345. CrossRef Optimization modeling of fluid bed drying and coating technique to control fungal growth and aflatoxin content in paddy
Nittaya Junka, Chaiwat Rattanamechaiskul
Journal of Food Processing and Preservation.2022;[Epub] CrossRef Characterization of Colletotrichum siamense the causal agent of bitter rot and leaf spot in low-chill apple cultivars in central Argentina
Laura Noemí Fernandez, Sandra Alaniz, Marcos Gabriel Derita, Alejandra Lutz, Norberto Francisco Gariglio, Pedro Emilio Mondino, María Alejandra Favaro
International Journal of Pest Management.2022; 68(4): 295. CrossRef Susceptibility of apple fruits from selected cultivars to the Colletotrichum acutatum species complex
Barbora Jílková, Jana Víchová
Plant Protection Science.2022; 58(4): 298. CrossRef Quantification of Colletotrichum fioriniae in Orchards and Deciduous Forests Indicates It Is Primarily a Leaf Endophyte
Phillip L. Martin, Kari A. Peter
Phytopathology®.2021; 111(2): 333. CrossRef Mathematical modelling to control fungal growth in paddy dried using fluidisation
Nittaya Junka, Chaiwat Rattanamechaiskul
Biosystems Engineering.2021; 204: 312. CrossRef Anthracnose on alfalfa caused by Colletotrichum americae-borealis in Córdoba province, Argentina
Nelson Bernardi Lima, Cinthia Conforto, Dannae Lilia Serri, Ernesto Javier Campilongo Mancilla, Sebastian Stenglein, Silvina Vargas-Gil
Crop Protection.2021; 148: 105732. CrossRef Colletotrichum aenigma Associated with Apple Bitter Rot on Newly Bred cv. RubyS Apple
Seung-Yeol Lee, Leonid N. Ten, Jung-Joo Ryu, In-Kyu Kang, Hee-Young Jung
Research in Plant Disease.2021; 27(2): 70. CrossRef Colletotrichum species and complexes: geographic distribution, host range and conservation status
Pedro Talhinhas, Riccardo Baroncelli
Fungal Diversity.2021; 110(1): 109. CrossRef Distinct Transcriptional Programs Underlie Differences in Virulence of Isolates on Host Plants in a Fungal Pathogen, Colletotrichum gloeosporioides
Wonsu Cheon, Young Soo Kim, Kotnala Balaraju, Younmi Lee, Hyeok Tae Kwon, Junhyun Jeon, Yongho Jeon
Frontiers in Microbiology.2021;[Epub] CrossRef Identification, Characterization, and Pathogenicity ofColletotrichumSpecies Causing Anthracnose of Peach in Korea
Dae Min Lee, Oliul Hassan, Taehyun Chang
Mycobiology.2020; 48(3): 210. CrossRef Top‐spray fluidization coating of paddy rice with zinc oxide nanoparticles to reduce infection fromAspergillussp
Pornprapa Kongtragoul, Nittaya Junka
Journal of Food Processing and Preservation.2020;[Epub] CrossRef Diversity, Pathogenicity, and Fungicide Sensitivity of Colletotrichum Species Associated with Apple Anthracnose in South Korea
Chi Hyun Kim, Oliul Hassan, Taehyun Chang
Plant Disease.2020; 104(11): 2866. CrossRef MdWRKY100 encodes a group I WRKY transcription factor in Malus domestica that positively regulates resistance to Colletotrichum gloeosporioides infection
Feng Zhang, Feng Wang, Shuang Yang, Yuanyan Zhang, Hao Xue, Yangshu Wang, Shipin Yan, Yan Wang, Zhihong Zhang, Yue Ma
Plant Science.2019; 286: 68. CrossRef
|