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21por Dung, Jeremiah K. S.“…The perennial aspect of U.S. mint production, coupled with the soilborne, polyetic nature of V. dahliae, makes controlling Verticillium wilt in mint a challenge. Studies investigating the biology and genetics of the fungus, the molecular mechanisms of virulence and resistance, and the role of soil microbiota in modulating host-pathogen interactions are needed to improve our understanding of Verticillium wilt epidemiology and inform novel disease management strategies. …”
Publicado 2020
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23por Luo, Huaiyong, Pandey, Manish K., Zhi, Ye, Zhang, Huan, Xu, Siliang, Guo, Jianbin, Wu, Bei, Chen, Haiwen, Ren, Xiaoping, Zhou, Xiaojing, Chen, Yuning, Chen, Weigang, Huang, Li, Liu, Nian, Sudini, Hari K., Varshney, Rajeev K., Lei, Yong, Liao, Boshou, Jiang, Huifang“…KEY MESSAGE: Two novel and adjacent genomics and candidate genes for bacterial wilt resistance were identified on chromosome B02 in peanut variety Zhonghua 6 using both traditional QTL mapping and QTL-seq methods. …”
Publicado 2020
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24por Li, Yanwei, Wang, Ying, Wu, Xinyi, Wang, Jian, Wu, Xiaohua, Wang, Baogen, Lu, Zhongfu, Li, GuojingEnlace del recurso
Publicado 2021
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25“…However, to design novel strategies to combat vascular wilt diseases, understanding the (molecular) biology of vascular pathogens and the molecular mechanisms underlying plant defense against these pathogens is crucial. …”
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26por Kanapin, Alexander, Bankin, Mikhail, Rozhmina, Tatyana, Samsonova, Anastasia, Samsonova, Maria“…Importantly, several QTNs spanned regions that harbored genes involved in the pathogen recognition and plant immunity response, including the KIP1-like protein (Lus10025717) and NBS-LRR protein (Lus10025852). Our results provide novel insights into the genetic architecture of flax resistance to Fusarium wilt and pinpoint potential candidate genes for further in-depth studies.…”
Publicado 2021
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27por Aamir, Mohd, Singh, Vinay Kumar, Dubey, Manish Kumar, Meena, Mukesh, Kashyap, Sarvesh Pratap, Katari, Sudheer Kumar, Upadhyay, Ram Sanmukh, Umamaheswari, Amineni, Singh, Surendra“…Vascular wilt of tomato caused by Fusarium oxysporum f.sp. lycopersici (FOL) is one of the most devastating diseases, that delimits the tomato production worldwide. …”
Publicado 2018
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28por Chinnaiah, Senthilraja, Gautam, Saurabh, Herron, Benjamin, Workneh, Fekede, Rush, Charles M., Gadhave, Kiran R.“…Tomato spotted wilt orthotospovirus (TSWV) is one of the most successful pandemic agricultural pathogens transmitted by several species of thrips in a persistent propagative manner. …”
Publicado 2023
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29por Ashraf, Nasheeman, Ghai, Deepali, Barman, Pranjan, Basu, Swaraj, Gangisetty, Nagaraju, Mandal, Mihir K, Chakraborty, Niranjan, Datta, Asis, Chakraborty, Subhra“…This is the first report on differential transcriptome of an unsequenced genome during vascular wilt.…”
Publicado 2009
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30por Pei, Yakun, Li, Xiancai, Zhu, Yutao, Ge, Xiaoyang, Sun, Yun, Liu, Nana, Jia, Yujiao, Li, Fuguang, Hou, Yuxia“…However, little is known about cotton GLPs in relation to fungal pathogens. Here, a novel GLP gene was isolated from Gossypium hirsutum and designated as GhABP19. …”
Publicado 2019
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31por Habe, Ippei, Miyatake, Koji, Nunome, Tsukasa, Yamasaki, Masanori, Hayashi, Takeshi“…This is the first study to identify novel QTLs for bacterial wilt resistance in potato by using genome-wide markers.…”
Publicado 2019
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32por Luna-Hernández, Saúl A., Bonilla-Landa, Israel, Reyes-Luna, Alfonso, Rodríguez-Hernández, Alfredo, Cuapio-Muñoz, Ulises, Ibarra-Juárez, Luis A., Suarez-Mendez, Gabriel, Barrera-Méndez, Felipe, Pérez-Landa, Irving D., Enríquez-Medrano, Francisco J., Díaz de León-Gómez, Ramón E., Olivares-Romero, José L.“…The beetle can carry a fungus responsible for the Laurel Wilt, a vascular lethal disease that can host over 300 tree species, including redbay and avocado. …”
Publicado 2021
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33por Tao, Jiemeng, Yu, Shizhou, Jin, Jingjing, Lu, Peng, Yang, Zhixiao, Xu, Yalong, Chen, Qiansi, Li, Zefeng, Cao, Peijian“…Using 16S high-throughput sequencing, we studied how bacterial wilt disease affected the variation and assembly of the three continuous root-associated microbiomes of tobacco. …”
Publicado 2022
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34por Nishmitha, K., Singh, Rakesh, Dubey, Sunil C., Akthar, Jameel, Tripathi, Kuldeep, Kamil, DeebaEnlace del recurso
Publicado 2023
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36por Liu, Lijuan, Sun, Chengliang, Liu, Shuangri, Chai, Rushan, Huang, Weiqing, Liu, Xingxing, Tang, Caixian, Zhang, Yongsong“…Many strategies have been taken to improve soil suppressiveness against this destructive disease, but limited success has been achieved. In this study, a novel bioorganic fertilizer revealed a higher suppressive ability against bacterial wilt compared with several soil management methods in the field over four growing seasons from March 2011 to July 2013. …”
Publicado 2015
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37“…Finally, 27 annotated genes were further selected as candidate genes of Fusarium wilt resistance in mung bean. This study identifies novel potential resistance-related genes against Fusarium wilt and provides a theoretical basis for further investigation of Fusarium wilt resistance in mung bean breeding.…”
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38“…This article reports on a simple yet key aspect of peanut screening for tolerance to low soil moisture stress and uses novel, fast, cost-effective, and accurate RGB-derived models to estimate leaf wilting.…”
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39por Wen, Tao, Xie, Penghao, Liu, Hongwei, Liu, Ting, Zhao, Mengli, Yang, Shengdie, Niu, Guoqing, Hale, Lauren, Singh, Brajesh K., Kowalchuk, George A., Shen, Qirong, Yuan, Jun“…Collectively, we propose a novel pathway for mining metabolites from the rhizosphere soil and their use as prebiotics to help control soil-borne bacterial wilt diseases.…”
Publicado 2023
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40por Klosterman, Steven J., Subbarao, Krishna V., Kang, Seogchan, Veronese, Paola, Gold, Scott E., Thomma, Bart P. H. J., Chen, Zehua, Henrissat, Bernard, Lee, Yong-Hwan, Park, Jongsun, Garcia-Pedrajas, Maria D., Barbara, Dez J., Anchieta, Amy, de Jonge, Ronnie, Santhanam, Parthasarathy, Maruthachalam, Karunakaran, Atallah, Zahi, Amyotte, Stefan G., Paz, Zahi, Inderbitzin, Patrik, Hayes, Ryan J., Heiman, David I., Young, Sarah, Zeng, Qiandong, Engels, Reinhard, Galagan, James, Cuomo, Christina A., Dobinson, Katherine F., Ma, Li-Jun“…Coupled with an enhanced capacity to degrade plant materials, these genomic islands may contribute to the expanded genetic diversity and virulence of V. dahliae, the primary causal agent of Verticillium wilts. Significantly, our study reveals insights into the genetic mechanisms of niche adaptation of fungal wilt pathogens, advances our understanding of the evolution and development of their pathogenesis, and sheds light on potential avenues for the development of novel disease management strategies to combat destructive wilt diseases.…”
Publicado 2011
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