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Soya
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161por Li, Qi, Zhang, Meixiang, Shen, Danyu, Liu, Tingli, Chen, Yanyu, Zhou, Jian-Min, Dou, Daolong“…Here we show that a Phytophthora sojae effector, PsCRN63, suppresses flg22-induced expression of FRK1 gene, a molecular marker in pathogen-associated molecular patterns (PAMP)-triggered immunity (PTI). …”
Publicado 2016
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162por Zhang, Da-yong, Kumar, Manoj, Xu, Ling, Wan, Qun, Huang, Yi-hong, Xu, Zhao-Long, He, Xiao-Lan, Ma, Jin-Biao, Pandey, Girdhar K., Shao, Hong-Bo“…To improve survival and yield of crop plants, a detailed understanding of stress responses is imperative and required. We used Glycine soja genome as a tool to study AQPs, considering it shows abundant genetic diversity and higher salt environment tolerance features and identified 62 GsAQP genes. …”
Publicado 2017
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163por Wu, Shengyang, Zhu, Pinhui, Jia, Bowei, Yang, Junkai, Shen, Yang, Cai, Xiaoxi, Sun, Xiaoli, Zhu, Yanming, Sun, Mingzhe“…In this study, we functionally characterized a bZIP gene from Glycine soja GsbZIP67 in bicarbonate alkaline stress responses. …”
Publicado 2018
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164por Cui, Xiaoxia, Yan, Qiang, Gan, Shuping, Xue, Dong, Wang, Haitang, Xing, Han, Zhao, Jinming, Guo, Na“…Furthermore, soybean hairy roots silencing GmWRKY40 enhanced susceptibility to P. sojae infection compared with empty vector transgenic roots. …”
Publicado 2019
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165por Lin, Yachun, Hu, Qinli, Zhou, Jia, Yin, Weixiao, Yao, Deqiang, Shao, Yuanyuan, Zhao, Yao, Guo, Baodian, Xia, Yeqiang, Chen, Qian, Wang, Yan, Ye, Wenwu, Xie, Qi, Tyler, Brett M., Xing, Weiman, Wang, Yuanchao“…Silencing of GmPUB13 in soybean hairy roots decreased P. sojae infection, suggesting that GmPUB13 acts as a susceptibility factor. …”
Publicado 2021
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166por Chen, Qianru, Wang, Xianxian, Yuan, Xiaolong, Shi, John, Zhang, Chengsheng, Yan, Ning, Jing, Changliang“…Wild soybean (Glycine soja Sieb.et Zucc; WS) has been used as a traditional food in China for many years and contains significantly higher levels of isoflavones than cultivated soybean (Glycine max; CS), but the secondary metabolites, including flavonoids and the phenolic composition differences between them, remain unclear. …”
Publicado 2021
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167por Guo, Jinzhou, Ma, Jingxin, Cai, Kun, Chen, Haining, Xie, Ke, Xu, Binren, Quan, Desen, Du, Jingyan“…This study aimed to determine the effectiveness of Isoflavones from semen sojae preparatum (ISSP) in inhibiting oxidative stress and its important molecular mechanisms through in vivo and in vitro experiments. …”
Publicado 2022
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168por Abdel-Haq, Nahed, Asmar, Basim I., Ang, Jocelyn Y., Natarajan, Girija, Fairfax, Marilynn, Salimnia, Hossein“…We report what we believe the first case of candidemia in an infant with short bowel syndrome caused by the environmental yeast Candida sojae that was initially misidentified as Candida tropicalis. …”
Publicado 2022
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169por Mallano, Ali Inayat, Nisa, Zaib-un, Khaliq, Binish, Ali, Naila, Ali, Qurban, Chao, Chen, Yanming, Zhu“…The core objective of the current study was to isolate and functionally characterize the GsPUB8 protein gene from wild soybean (Glycine soja) by using a homologous cloning method to investigate its abiotic stress responses. …”
Publicado 2022
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170“…In this study, a novel WRKY gene called GsWRKY23 that is specifically upregulated in salt-tolerant Glycine soja accession BB52 seedlings was identified by transcriptomic analysis under salt stress. …”
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171por Jiang, Liangyu, Wu, Junjiang, Fan, Sujie, Li, Wenbin, Dong, Lidong, Cheng, Qun, Xu, Pengfei, Zhang, Shuzhen“…A novel PRP gene was isolated from highly resistant soybean infected with Phytophthora sojae (P. sojae) and was named GmPRP (GenBank accession number: KM506762). …”
Publicado 2015
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172por Xin, Dawei, Qi, Zhaoming, Jiang, Hongwei, Hu, Zhenbang, Zhu, Rongsheng, Hu, Jiahui, Han, Heyu, Hu, Guohua, Liu, Chunyan, Chen, Qingshan“…In these lines, different chromosomal segments of the Chinese cultivar Suinong 14 were substituted into the genetic background of wild soybean (Glycine soja Sieb. & Zucc.) ZYD00006. Based on these CSSLs, a genetic map covering the full genome was generated using 121 simple sequence repeat (SSR) markers. …”
Publicado 2016
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173por Zhang, Hengyou, Li, Chunying, Davis, Eric L., Wang, Jinshe, Griffin, Joshua D., Kofsky, Janice, Song, Bao-Hua“…In this study, we screened 235 wild soybean (Glycine soja Sieb. & Zucc.) accessions to identify genotypes resistant to SCN HG Type 2.5.7 (race 5), a less investigated type but is prevalent in the southeastern US. …”
Publicado 2016
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174por Wang, Qinhu, Li, Tingting, Xu, Ke, Zhang, Wei, Wang, Xiaolong, Quan, Junli, Jin, Weibo, Zhang, Meixiang, Fan, Guangjin, Wang, Ming-Bo, Shan, Weixing“…Here we report the identification and functional characterization of tsRNAs in the oomycete pathogen Phytophthora sojae. We show that multiple tRNAs are processed into abundant tsRNAs, which accumulate in a similar developmental stage-specific manner and are negatively correlated with the expression of predicted target genes. …”
Publicado 2016
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175“…Merr.] is caused by the oomycete Phytophthora sojae (Kaufm. & Gerd.). P. sojae has a narrow host range, consisting primarily of soybean, and it is a serious pathogen worldwide. …”
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176por Wu, Shengyang, Zhu, Pinghui, Jia, Bowei, Yang, Junkai, Shen, Yang, Cai, Xiaoxi, Sun, Xiaoli, Zhu, Yanming, Sun, MingzheEnlace del recurso
Publicado 2019
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177“…We applied this approach on Phytophthora sojae, a soybean pathogen, and identified 157 high-quality, informative microsatellite markers in this oomycete. …”
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178por de Ronne, Maxime, Labbé, Caroline, Lebreton, Amandine, Sonah, Humira, Deshmukh, Rupesh, Jean, Martine, Belzile, François, O’Donoughue, Louise, Bélanger, RichardEnlace del recurso
Publicado 2019
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179por Ha, Jungmin, Abernathy, Brian, Nelson, William, Grant, David, Wu, Xiaolei, Nguyen, Henry T., Stacey, Gary, Yu, Yeisoo, Wing, Rod A., Shoemaker, Randy C., Jackson, Scott A.“…A physical map was also constructed for the undomesticated ancestor (G. soja) of soybean to explore genome variation between G. max and G. soja. 66,028 G. soja clones were assembled into 1053 FPC contigs covering approximately 547 Mbp of the G. max genome sequence. …”
Publicado 2012
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180“…Phytophthora sojae, an oomycete pathogen of soybean, causes stem and root rot, resulting in annual economic loss up to $2 billion worldwide. …”
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