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1121por Bragard, Claude, Baptista, Paula, Chatzivassiliou, Elisavet, Di Serio, Francesco, Gonthier, Paolo, Jaques Miret, Josep Anton, Justesen, Annemarie Fejer, MacLeod, Alan, Magnusson, Christer Sven, Milonas, Panagiotis, Navas‐Cortes, Juan A, Parnell, Stephen, Potting, Roel, Stefani, Emilio, Thulke, Hans‐Hermann, Van der Werf, Wopke, Vicent Civera, Antonio, Yuen, Jonathan, Zappalà, Lucia, Migheli, Quirico, Vloutoglou, Irene, Czwienczek, Ewelina, Streissl, Franz, Carluccio, Anna Vittoria, Chiumenti, Michela, Di Serio, Francesco, Rubino, Luisa, Reignault, Philippe Lucien“…CpCDV infects plant species in the family Fabaceae and several species of other families (Amaranthaceae, Brassicaceae, Caricaceae, Cucurbitaceae, Malvaceae and Solanaceae), including weeds. …”
Publicado 2022
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1122por Xiao, Meng, Hao, Guoqian, Guo, Xinyi, Feng, Landi, Lin, Hao, Yang, Wenjie, Chen, Yanyu, Zhao, Kexin, Xiang, Ling, Jiang, Xinyao, Mei, Dong, Hu, Quanjun“…BACKGROUND: Eutrema salsugineum (2n = 14), a halophyte in the family Brassicaceae, is an attractive model to study abiotic stress tolerance in plants. …”
Publicado 2023
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1123por Mainardi, Chiara Elvira, Peccerillo, Chiara, Paolini, Alessandra, Cemmi, Alessia, Sforza, René F. H., Musmeci, Sergio, Porretta, Daniele, Cristofaro, Massimo“…ABSTRACT: The stink bug, Bagrada hilaris, is a pest of mainly Brassicaceae crops. It is native to Africa and Asia and was recently reported as invasive in the southwestern part of the USA and in South America. …”
Publicado 2023
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1124por Bell, Luke, Chadwick, Martin, Puranik, Manik, Tudor, Richard, Methven, Lisa, Wagstaff, Carol“…Eruca vesicaria subsp. sativa is a leafy vegetable of the Brassicaceae family known for its pungency. Variation in growing conditions, leaf age, agronomic practices, and variety choice lead to inconsistent quality, especially in content of isothiocyanates (ITCs) and their precursor glucosinolates (GSLs). …”
Publicado 2022
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1125por Zhang, Zaibao, Ye, Fan, Xiong, Tao, Chen, Jiahui, Cao, Jiajia, Chen, Yurui, Liu, Sushuang“…MSL proteins were distributed unevenly into each of plant species, and four parallel expansion was identified in angiosperms. In Brassicaceae, most MSL duplicates were derived by whole-genome duplication (WGD)/segmental duplications. …”
Publicado 2023
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1126A Flow Cytometry-Based Assessment of the Genomic Size and Ploidy Level of Wild Musa Species in Indiapor Natarajan, Rithesh B., Pathania, Pooja, Singh, Hardeep, Agrawal, Anuradha, Subramani, Rajkumar“…Methods: In this paper, chromosome spreading was performed via protoplast isolation and a fast air-dry dropping method and flow cytometry were used with Raphanus sativus L. (Brassicaceae) as a standard for ploidy and genome size estimation. …”
Publicado 2023
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1127por Acuña, Jacquelinne J., Hu, Jingming, Inostroza, Nitza G., Valenzuela, Tamara, Perez, Pablo, Epstein, Slava, Sessitsch, Angela, Zhang, Qian, Jorquera, Milko A.“…Here, we employed DNA metabarcoding analysis to investigate the composition and putative functions of endophytic bacterial communities in ungerminated and germinated seeds of the commercial vegetables Apiaceae (parsley and carrot), Asteraceae (lettuce), Brassicaceae (cabbage and broccoli), and Solanaceae (tomato). …”
Publicado 2023
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1128Cold stress induces differential gene expression of retained homeologs in Camelina sativa cv Sunesonpor Fang, Chao, Hamilton, John P., Vaillancourt, Brieanne, Wang, Yi-Wen, Wood, Joshua C., Deans, Natalie C., Scroggs, Taylor, Carlton, Lemor, Mailloux, Kathrine, Douches, David S., Nadakuduti, Satya Swathi, Jiang, Jiming, Buell, C. Robin“…Crantz, a member of the Brassicaceae, has potential as a biofuel feedstock which is attributable to the production of fatty acids in its seeds, its fast growth cycle, and low input requirements. …”
Publicado 2023
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1129“…We explored the possibilities of evolutionary analysis of phylogenetic footprints in 5'-noncoding sequences (NCS) from 27 ribulose-1,5-bisphosphate carboxylase small subunit (rbcS) genes, from three dicot families (Brassicaceae, Fabaceae and Solanaceae). RESULTS: Sequences of up to 400 bp encompassing proximal promoter and 5'-untranslated regions were analyzed. …”
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1130por Deveaux, Yves, Toffano-Nioche, Claire, Claisse, Gaelle, Thareau, Vincent, Morin, Halima, Laufs, Patrick, Moreau, Hervé, Kreis, Martin, Lecharny, Alain“…An intriguing clade, represented by the functional AtWOX14 gene inside the WOX13 OG, was only found in the Brassicaceae. Compared to AtWOX13, the gene expression profile of AtWOX14 was restricted to the early stages of lateral root formation and specific to developing anthers. …”
Publicado 2008
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1131por Thines, M., Choi, Y.-J., Kemen, E., Ploch, S., Holub, E.B., Shin, H.-D., Jones, J.D.G.“…While Albugo candida is a generalist species, consisting of several physiological varieties, which is able to parasitize a great variety of Brassicaceae, Albugo laibachii has not been found on any host other than Arabidopsis thaliana. …”
Publicado 2009
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1132por Hutcheon, Carolyn, Ditt, Renata F, Beilstein, Mark, Comai, Luca, Schroeder, Jesara, Goldstein, Elianna, Shewmaker, Christine K, Nguyen, Thu, De Rocher, Jay, Kiser, Jack“…BACKGROUND: Camelina sativa, an oilseed crop in the Brassicaceae family, has inspired renewed interest due to its potential for biofuels applications. …”
Publicado 2010
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1133“…Moreover, it accumulates significantly higher levels of arsenic as compared to other species of the Brassicaceae family. Thus, C. abyssinica has great potential to be utilized as an ideal inedible crop for phytoremediation of heavy metals and metalloids. …”
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1134por Irwin, Judith A, Lister, Clare, Soumpourou, Eleni, Zhang, Yanwen, Howell, Elaine C, Teakle, Graham, Dean, Caroline“…These show extensive amino acid conservation in the central and C-terminal regions to FRI from other Brassicaceae, including A. thaliana, but have a diverged N-terminus. …”
Publicado 2012
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1135“…In this study, we investigate the co-evolution of four PPR genes (CRR4, CRR21, CLB19, and OTP82) and their six editing targets in Brassicaceae species. PPR genes are composed of approximately 10 to 20 tandem repeats and each repeat has two α-helical regions, helix A and helix B, that are separated by short coil regions. …”
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1136por Wei, Xiaochun, Zhang, Xiaohui, Shen, Di, Wang, Haiping, Wu, Qingjun, Lu, Peng, Qiu, Yang, Song, Jiangping, Zhang, Youjun, Li, Xixiang“…Barbarea vulgaris (Brassicaceae) can resist DBM and other herbivorous insects by producing feeding-deterrent triterpenoid saponins. …”
Publicado 2013
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1137por Staats, Martijn, Erkens, Roy H. J., van de Vossenberg, Bart, Wieringa, Jan J., Kraaijeveld, Ken, Stielow, Benjamin, Geml, József, Richardson, James E., Bakker, Freek T.“…Using a reference-based assembly approach, we were able to produce the entire nuclear genome of a 43-year-old Arabidopsis thaliana (Brassicaceae) herbarium specimen with high and uniform sequence coverage. …”
Publicado 2013
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1138por Shen, Di, Sun, Honghe, Huang, Mingyun, Zheng, Yi, Qiu, Yang, Li, Xixiang, Fei, Zhangjun“…Comparative analysis identified 5,595 gene families unique to radish that were significantly enriched with genes related to small molecule metabolism, as well as 12,899 specific to the Brassicaceae that were enriched with genes related to seed oil body biogenesis and responses to phytohormones. …”
Publicado 2013
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1139por Iglesias-Fernández, Raquel, Wozny, Dorothee, Iriondo-de Hond, Maite, Oñate-Sánchez, Luis, Carbonero, Pilar, Barrero-Sicilia, Cristina“…We identified a conserved CathB3-element in the promoters of orthologous CathB3 genes within the Brassicaceae species analysed, and, as its DNA-interacting protein, the G-Box Binding Factor1 (GBF1). …”
Publicado 2014
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1140por Motamayor, Juan C, Mockaitis, Keithanne, Schmutz, Jeremy, Haiminen, Niina, III, Donald Livingstone, Cornejo, Omar, Findley, Seth D, Zheng, Ping, Utro, Filippo, Royaert, Stefan, Saski, Christopher, Jenkins, Jerry, Podicheti, Ram, Zhao, Meixia, Scheffler, Brian E, Stack, Joseph C, Feltus, Frank A, Mustiga, Guiliana M, Amores, Freddy, Phillips, Wilbert, Marelli, Jean Philippe, May, Gregory D, Shapiro, Howard, Ma, Jianxin, Bustamante, Carlos D, Schnell, Raymond J, Main, Dorrie, Gilbert, Don, Parida, Laxmi, Kuhn, David N“…We demonstrate that green/red pod color in cacao is likely regulated by the R2R3 MYB transcription factor TcMYB113, homologs of which determine pigmentation in Rosaceae, Solanaceae, and Brassicaceae. One SNP within the target site for a highly conserved trans-acting siRNA in dicots, found within TcMYB113, seems to affect transcript levels of this gene and therefore pod color variation. …”
Publicado 2013
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