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161por Jiang, Wenxi, Jiang, Chengzhi, Yuan, Weiguang, Zhang, Meijun, Fang, Zijie, Li, Yang, Li, Guangrong, Jia, Juqing, Yang, Zujun“…BACKGROUND: The identification of chromosomes among Avena species have been studied by C-banding and in situ hybridization. …”
Publicado 2021
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162por Kutasy, Erika, Buday-Bódi, Erika, Virág, István Csaba, Forgács, Fanni, Melash, Anteneh Agezew, Zsombik, László, Nagy, Attila, Csajbók, József“…A field experiment was carried out in the 2020–2021 growing season, aiming at investigating the abiotic stress tolerance of oat (Avena sativa L.) with silicon and sulphur foliar fertilization treatments and monitoring the effect of treatments on the physiology, production and stress tolerance of winter oat varieties. …”
Publicado 2021
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163“…This work demonstrated differences in virulence of B. graminis f. sp. avenae isolates sampled from different countries. …”
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164por Brzozowski, Lauren J, Hu, Haixiao, Campbell, Malachy T, Broeckling, Corey D, Caffe, Melanie, Gutiérrez, Lucía, Smith, Kevin P, Sorrells, Mark E, Gore, Michael A, Jannink, Jean-Luc“…Plant breeding strategies to optimize metabolite profiles are necessary to develop health-promoting food crops. In oats (Avena sativa L.), seed metabolites are of interest for their antioxidant properties, yet have not been a direct target of selection in breeding. …”
Publicado 2021
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165por Hozlár, Peter, Gregusová, Veronika, Nemeček, Peter, Šliková, Svetlana, Havrlentová, Michaela“…The accumulation of β-D-glucan during the ontogenetic development of oats (Avena sativa L.) was determined in the present work. …”
Publicado 2022
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166por Sowa, Sylwia, Sozoniuk, Magdalena, Toporowska, Joanna, Kowalczyk, Krzysztof, Paczos-Grzęda, Edyta“…We evaluated nine candidate reference genes in A. sativa (oat line Pg4 and the cultivar Kasztan) during compatible and incompatible interactions with different pathotypes of Puccinia graminis f. sp. avenae in six time points post-inoculation. The identification of genes with high expression stability was performed by four algorithms (geNorm, NormFinder, BestKeeper and ΔCt method). …”
Publicado 2022
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167por Park, R. F., Boshoff, W. H. P., Cabral, A. L., Chong, J., Martinelli, J. A., McMullen, M. S., Fetch, J. W. Mitchell, Paczos-Grzęda, E., Prats, E., Roake, J., Sowa, S., Ziems, L., Singh, D.“…Crown rust, caused by Puccinia coronata f. sp. avenae (Pca), is a significant impediment to global oat production. …”
Publicado 2022
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168“…No powdery mildew resistance locus has been identified in this region so far, suggesting that Avena sterilis CN67383 carries a novel locus offering effective resistance in oat breeding. …”
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169por Chaturvedi, Deepti, Pundir, Saksham, Singh, Vikas Kumar, Kumar, Deepak, Sharma, Rajiv, Röder, Marion S., Sharma, Shiveta, Sharma, Shailendra“…In the present study, single-locus and multi-locus models of Genome-Wide Association Study (GWAS) were used to find marker trait associations (MTAs) against CCN (Heterodera avenae) in wheat. In total, 180 wheat accessions (100 spring and 80 winter types) were screened against H. avenae in two independent years (2018/2019 “Environment 1” and 2019/2020 “Environment 2”) under controlled conditions. …”
Publicado 2023
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170“…In order to develop environment friendly microbial inhibitor that can also control disease and promote oat (Avena sativa) growth, the growth rate method and response surface methodology were used to screen wetting agents, preservatives and protective agents at optimal concentrations in this study. …”
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171por Madany, Mahmoud M. Y., AbdElgawad, Hamada, Galilah, Doaa A., Khalil, Ahmed M. A., Saleh, Ahmed M.“…Therefore, a greenhouse pot experiment was conducted to test the hypothesis that eCO(2) can alleviate the phytotoxic impact of Zr upon oat (Avena sativa) plants by enhancing their growth and redox homeostasis. …”
Publicado 2023
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172por Reardon, Wesley, Chakrabortee, Sohini, Pereira, Tiago Campos, Tyson, Trevor, Banton, Matthew C, Dolan, Katharine M, Culleton, Bridget A, Wise, Michael J, Burnell, Ann M, Tunnacliffe, Alan“…The free-living mycophagous nematode Aphelenchus avenae can be induced to enter anhydrobiosis by pre-exposure to moderate reductions in relative humidity (RH) prior to extreme desiccation. …”
Publicado 2010
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175“…D. glomerata is known as a wild host plant for S. avenae and is also commercially planted. We found that high WSCs levels are responsible for the resistance of D. glomerata cultivars to specific S. avenae clones. …”
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176“…Sitobion avenae (F.) can survive on various plants in the Poaceae, which may select for highly plastic genotypes. …”
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177por Gao, Huan-Huan, Zhao, Hui-Yan, Yang, Jie, Zhang, Li, Bai, Xiao-Hui, Hu, Zu-Qing, Hu, Xiang-Shun“…It was concluded that CarE could be the sensitive biomarker for S. avenae response to the presence of Zn2+. In order to adapt to heavy metal Zn2+ stress, S. avenae had particular patterns of gene expression under long-term stress.…”
Publicado 2014
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178“…Multiple introductions are thought to enhance the chance of successful colonization, in part because recombination may generate adaptive variation to a new environment. Avena barbata (slender wild oat) is a successful colonist in California, historically noted for striking genetic divergence into two multilocus genotypes, but is still undergoing adaptive change. …”
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179por Zang, Huadong, Yang, Xuechao, Feng, Xiaomin, Qian, Xin, Hu, Yuegao, Ren, Changzhong, Zeng, ZhaohaiEnlace del recurso
Publicado 2015
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180por Zhang, Fangmei, Li, Xiangrui, Zhang, Yunhui, Coates, Brad, Zhou, Xuguo “Joe”, Cheng, Dengfa“…In this study, we investigated the impact of two nutritional-based biotic factors, symbionts and starvation, on the wing dimorphism in the English grain aphid, Sitobion avenae, a devastating insect pest of cereal crops (e.g., wheat) worldwide. …”
Publicado 2015
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