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441por Shi, Jinxia, Zhu, Yuanhong, Li, Ming, Ma, Yuqing, Liu, Huarong, Zhang, Peng, Fang, Di, Guo, Yushuang, Xu, Ping, Qiao, Yongli“…Analysis of P. sojae Avh148 deletion mutants and soybean hairy roots overexpressing Avh148 revealed that Avh148 is required for full pathogen virulence. …”
Publicado 2020
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442por Chandra, Subhash, Choudhary, Mukesh, Bagaria, Pravin K., Nataraj, Vennampally, Kumawat, Giriraj, Choudhary, Jeet Ram, Sonah, Humira, Gupta, Sanjay, Wani, Shabir Hussain, Ratnaparkhe, Milind B.“…Phytophthora root and stem rot (PRSR) caused by Phytophthora sojae is one of the most prevalent diseases adversely affecting soybean production globally. …”
Publicado 2022
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443“…The P. infestans genome experienced a repeat-driven expansion relative to the genomes of Phytophthora sojae and Phytophthora ramorum and shows a discontinuous distribution of gene density. …”
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444por Zhang, Jiqing, Xia, Changjian, Duan, Canxing, Sun, Suli, Wang, Xiaoming, Wu, Xiaofei, Zhu, Zhendong“…Resistance to Phytophthora sojae isolate PsMC1 was evaluated in 102 F(2∶3) families derived from a cross between the resistant soybean cultivar Wandou 15 and the susceptible cultivar Williams and genotyped using simple sequence repeat (SSR) markers. …”
Publicado 2013
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445por Vetukuri, Ramesh R, Åsman, Anna KM, Jahan, Sultana N, Avrova, Anna O, Whisson, Stephen C, Dixelius, Christina“…Similar findings have also recently been made for the distantly related species, P. sojae. Small RNA “hotspots” originating from arrays of amplified gene sequences, or from genes displaying overlapping antisense transcription, were also identified in P. infestans. …”
Publicado 2013
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446por Wagner, Andrew, Norris, Stephen, Chatterjee, Payel, Morris, Paul F., Wildschutte, Hans“…Seedling root rot of soybeans caused by the host-specific pathogen Phytophthora sojae, and a large number of Pythium species, is an economically important disease across the Midwest United States that negatively impacts soybean yields. …”
Publicado 2018
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447“…PsAvr3c is an effector identified from oomycete plant pathogen Phytophthora sojae that causes soybean root and stem rot disease. …”
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448“…Four species of cyst nematodes, H. schachtii, H. glycines, H. trifolii, and H. sojae, all belong to schachtii group are coexist in field soil in Korea. …”
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449“…In this study, C. fructicola, C. cigarro, C. plurivorum, C. siamense, and C. sojae were reported from A. ovata for the first time, as the causal agent of ovate-leaf atractylodes anthracnose. …”
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450por Lan, Xingjie, Wang, Xiaoxia, Tao, Quandan, Zhang, Haotian, Li, Jinyang, Meng, Yuling, Shan, Weixing“…Stable transgenic A. thaliana plants constitutively overexpressing VQ28 compromised nonhost resistance (NHR) against P. sojae and P. infestans, and supported increased infection of P. parasitica. …”
Publicado 2022
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451por Lin, Jie, Monsalvo, Ivan, Ly, Melissa, Jahan, Md Asraful, Wi, Dasol, Martirosyan, Izabella, Kovinich, Nik“…They play essential roles in providing resistance to the soil-borne pathogen Phytophthora sojae and have unconventional anticancer and neuroprotective activities that render them desirable for pharmaceutical development. …”
Publicado 2023
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452por Bollmann, Stephanie R., Fang, Yufeng, Press, Caroline M., Tyler, Brett M., Grünwald, Niklaus J.“…The genomes of several oomycetes including Phytophthora species such as the soybean pathogen P. sojae, have been sequenced, allowing evolutionary analysis of small RNA-processing enzymes. …”
Publicado 2016
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453por Frisvad, J.C., Hubka, V., Ezekiel, C.N., Hong, S.-B., Nováková, A., Chen, A.J., Arzanlou, M., Larsen, T.O., Sklenář, F., Mahakarnchanakul, W., Samson, R.A., Houbraken, J.“…One strain of A. bertholletius can produce the immediate aflatoxin precursor 3-O-methylsterigmatocystin, and one strain of Aspergillus sojae and two strains of Aspergillus alliaceus produced versicolorins. …”
Publicado 2018
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454por Zhong, Chao, Sun, Suli, Yao, Liangliang, Ding, Junjie, Duan, Canxing, Zhu, Zhendong“…Phytophthora root rot (PRR) caused by Phytophthora sojae is a major soybean disease that causes severe economic losses worldwide. …”
Publicado 2018
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455por Ma, Jingjing, Yang, Suxin, Wang, Dongmei, Tang, Kuanqiang, Feng, Xing Xing, Feng, Xian Zhong“…The GmLMM2 defect decreased the chlorophyll content by disrupting tetrapyrrole biosynthesis and enhanced resistance to Phytophthora sojae. These results suggested that GmLMM2 gene played an important role in the biosynthesis of tetrapyrrole and light-dependent defense in soybeans.…”
Publicado 2020
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456por Kong, Guanghui, Zhao, Yao, Jing, Maofeng, Huang, Jie, Yang, Jin, Xia, Yeqiang, Kong, Liang, Ye, Wenwu, Xiong, Qin, Qiao, Yongli, Dong, Suomeng, Ma, Wenbo, Wang, Yuanchao“…Previously, we demonstrated that a Phytophthora sojae RXLR effector Avr3b acts as a Nudix hydrolase when expressed in planta; and this enzymatic activity is required for full virulence of P. sojae strain P6497 in soybean (Glycine max). …”
Publicado 2015
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457“…BACKGROUND: A series of Rps (resistance to Pytophthora sojae) genes have been protecting soybean from the root and stem rot disease caused by the Oomycete pathogen, Phytophthora sojae. …”
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458“…RESULTS: Pathogenesis-related gene GmPR1 is induced following treatment of soybean plants with the SAR inducer, 2,6-dichloroisonicotinic acid (INA) or infection with the oomycete pathogen, Phytophthora sojae. In P. sojae-infected plants, SAR was induced against the bacterial pathogen, Pseudomonas syringae pv. glycinea. …”
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459por Kong, Ping, Tyler, Brett M, Richardson, Patricia A, Lee, Bobby WK, Zhou, Zhaohui S, Hong, Chuanxue“…Similar cross activities were observed in infection of Lupinus polyphyllus and Glycine max by P. sojae. Only ZFFnic and ZFFsoj cross induced zoospore aggregation at a density of 2 × 10(3 )ml(-1). …”
Publicado 2010
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460“…These two novel strains were most closely related to Oceanobacillus oncorhynchi subsp. incaldanensis DSM 16557(T) (99.1 and 99.5 %), followed by O. oncorhynchi subsp. oncorhynchi JCM 12661(T) (99.1 and 99.4 %), Oceanobacillus neutriphilus CGMCC 1.7693(T) (97.0 and 97.5 %), Oceanobacillus sojae JCM 15792(T) (97.6 and 98.0 %) and Oceanobacillus locisalsi KCTC 13253(T) (96.5 and 96.9 %). …”
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