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1061“…This review highlights the importance of silks as the direct highways by which globally important fungal pathogens enter maize kernels. First, the most important silk-entering fungal pathogens in maize are reviewed, including Fusarium graminearum, Fusarium verticillioides, and Aspergillus flavus, and their mycotoxins. …”
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1062por F. Abdallah, Mohamed, De Boevre, Marthe, Landschoot, Sofie, De Saeger, Sarah, Haesaert, Geert, Audenaert, Kris“…Fusarium graminearum can cause Giberella Ear Rot (GER) and seedling blight in maize, resulting in major yield losses. Besides GER, the infected grains are consequently contaminated with multiple mycotoxins of F. graminearum. …”
Publicado 2018
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1063por Mazaheri, Mona, Heckwolf, Marlies, Vaillancourt, Brieanne, Gage, Joseph L., Burdo, Brett, Heckwolf, Sven, Barry, Kerrie, Lipzen, Anna, Ribeiro, Camila Bastos, Kono, Thomas J. Y., Kaeppler, Heidi F., Spalding, Edgar P., Hirsch, Candice N., Robin Buell, C., de Leon, Natalia, Kaeppler, Shawn M.“…BACKGROUND: Maize stover is an important source of crop residues and a promising sustainable energy source in the United States. …”
Publicado 2019
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1064“…Furthermore, genetic transformation of maize depends on immature embryos, which greatly increases costs. …”
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1065“…We applied melatonin to the roots of maize (Zea mays) seedlings and examined its accumulation in the leaves. …”
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1066por Zhang, Xiaoling, Wang, Yanli, Yan, Yuanyuan, Peng, Hua, Long, Yun, Zhang, Yinchao, Jiang, Zhou, Liu, Peng, Zou, Chaoying, Peng, Huanwei, Pan, Guangtang, Shen, Yaou“…BACKGROUND: Maize is one of the primary crops of genetic manipulation, which provides an excellent means of promoting stress resistance and increasing yield. …”
Publicado 2019
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1067“…Therefore, in the present work, an attempt was undertaken to study the role of Si nutrition in maize plants exposed to Mg deficiency. Plants were grown either under low (0.02 mM) or normal (0.5 mM) levels of Mg, with or without Si supplement. …”
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1068“…CONCLUSIONS: These models now provide powerful tools to annotate regulatory regions in other maize lines beyond the reference, at low cost and with high accuracy. …”
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1069por Aslam, Muhammad Mudasar, Rehman, Shafiq, Khatoon, Amana, Jamil, Muhammad, Yamaguchi, Hisateru, Hitachi, Keisuke, Tsuchida, Kunihiro, Li, Xinyue, Sunohara, Yukari, Matsumoto, Hiroshi, Komatsu, Setsuko“…To find the molecular mechanism of plant-derived smoke on maize, a gel-free/label-free proteomic technique was used. …”
Publicado 2019
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1070por Chen, Tsu-Wei, Cabrera-Bosquet, Llorenç, Alvarez Prado, Santiago, Perez, Raphaël, Artzet, Simon, Pradal, Christophe, Coupel-Ledru, Aude, Fournier, Christian, Tardieu, François“…This method was used in three experiments in a phenotyping platform with 765 plants of 255 maize hybrids. As expected, the heritability of the environmental term was near zero, whereas that of the competitiveness term increased with phenological stage, resulting in the identification of quantitative trait loci. …”
Publicado 2019
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1071por Loladze, Alexander, Rodrigues, Francelino Augusto, Toledo, Fernando, San Vicente, Felix, Gérard, Bruno, Boddupalli, Maruthi Prasanna“…Tar spot complex (TSC), caused by at least two fungal pathogens, Phyllachora maydis and Monographella maydis, is one of the major foliar diseases of maize in Central and South America. P. maydis was also detected in the United States of America in 2015 and since then the pathogen has spread in the maize growing regions of the country. …”
Publicado 2019
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1072por Rosa Junior, Oelton Ferreira, Dalcin, Mateus Sunti, Nascimento, Vitor L., Haesbaert, Fernando Machado, Ferreira, Talita Pereira de Souza, Fidelis, Rodrigo Ribeiro, Sarmento, Renato de Almeida, Aguiar, Raimundo Wagner de Souza, de Oliveira, Eugenio Eduardo, dos Santos, Gil Rodrigues“…Experiments were conducted in 2015–2016 in maize crops from experimental maize fields located in four distinct states of Brazil. …”
Publicado 2019
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1073por Dechorgnat, Julie, Francis, Karen L., Dhugga, Kanwarpal S., Rafalski, J. Antony, Tyerman, Stephen D., Kaiser, Brent N.“…CONCLUSIONS: These data allowed the mapping of putative nitrogen transporters in maize at both the vegetative and reproductive stages of development. …”
Publicado 2019
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1074“…We explored this issue by analyzing the ribo- and mRNA-seq data sets across six tissue types and stress conditions in Arabidopsis thaliana and maize (Zea mays). We dissected the relative contributions of transcriptional and translational regulation to the divergence in the abundance of ribosome footprint (RF) for different types of duplicate genes. …”
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1075por Li, En, Liu, Han, Huang, Liangliang, Zhang, Xiangbo, Dong, Xiaomei, Song, Weibin, Zhao, Haiming, Lai, Jinsheng“…The high-resolution chromatin interaction maps will help to understand the transcription regulation of genes associated with complex agronomic traits of maize.…”
Publicado 2019
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1076por Peng, Yong, Xiong, Dan, Zhao, Lun, Ouyang, Weizhi, Wang, Shuangqi, Sun, Jun, Zhang, Qing, Guan, Pengpeng, Xie, Liang, Li, Wenqiang, Li, Guoliang, Yan, Jianbing, Li, Xingwang“…Collectively, these maps provide a high-resolution view of 3D maize genome architecture, and its role in gene expression and phenotypic variation.…”
Publicado 2019
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1077por Danilevskaya, Olga N., Yu, GongXin, Meng, Xin, Xu, John, Stephenson, Elizabeth, Estrada, Stacey, Chilakamarri, Sunita, Zastrow‐Hayes, Gina, Thatcher, Shawn“…Drought is a common abiotic stress which significantly limits global crop productivity. Maize is an important staple crop and its yield is determined by successful development of the female inflorescence, the ear. …”
Publicado 2019
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1078por Li, Li, Du, Yicong, He, Cheng, Dietrich, Charles R, Li, Jiankun, Ma, Xiaoli, Wang, Rui, Liu, Qiang, Liu, Sanzhen, Wang, Guoying, Schnable, Patrick S, Zheng, Jun“…The gl6 gene represents a novel maize glossy gene containing a conserved, but uncharacterized, DUF538 domain. …”
Publicado 2019
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1079por Jajić, Igor, Dudaš, Tatjana, Krstović, Saša, Krska, Rudolf, Sulyok, Michael, Bagi, Ferenc, Savić, Zagorka, Guljaš, Darko, Stankov, Aleksandra“…Emerging mycotoxins such as moniliformin (MON), enniatins (ENs), beauvericin (BEA), and fusaproliferin (FUS) may contaminate maize and negatively influence the yield and quality of grain. …”
Publicado 2019
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1080“…Xenobiotic detoxification in plant as well as in animals has mostly been studied in relationship to the deactivation of the toxic residues of the compound that, surely for azoxystrobin, is represented by its β-methoxyacrylate portion. In maize roots treated for 96 h with azoxystrobin, the fungicide accumulated over time and detoxification compounds or conjugates appeared timewise. …”
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