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461“…A novel fruit type in the Brassicaceae known as heteroarthrocarpy enables distinct dispersal methods in a single fruit through segmentation via a lateral joint and variable dehiscence at maturity. …”
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462“…(Tubiflorae: Solanaceae), Raphanus sativus L. (Brassicales: Brassicaceae), and Vicia faba L. (Rosales: Leguminosae). …”
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463por Dong, Yanni, Gupta, Saurabh, Sievers, Rixta, Wargent, Jason J., Wheeler, David, Putterill, Joanna, Macknight, Richard, Gechev, Tsanko, Mueller-Roeber, Bernd, Dijkwel, Paul P.“…Synteny analysis with genomes from other species of the Brassicaceae family found a close phylogenetic relationship of P. cheesemanii with Boechera stricta from Brassicaceae lineage I. …”
Publicado 2019
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464por Both, Eszter Borbála, Stonehouse, Gavin C., Lima, Leonardo Warzea, Fakra, Sirine C., Aguirre, Bernadette, Wangeline, Ami L., Xiang, Jiqian, Yin, Hongqing, Jókai, Zsuzsa, Soós, Áron, Dernovics, Mihály, Pilon-Smits, Elizabeth A.H.“…Cardamine violifolia (family Brassicaceae) is the first discovered selenium hyperaccumulator from the genus Cardamine with unique properties in terms of selenium accumulation, i.e., high abundance of selenolanthionine. …”
Publicado 2019
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465por He, Xin, Liao, Li, Xie, Sai, Yao, Min, Xie, Pan, Liu, Wei, Kang, Yu, Huang, Luyao, Wang, Mei, Qian, Lunwen, Liu, Zhongsong, Guan, Chunyun, Guan, Mei, Hua, Wei“…However, a systematic comprehensive analysis of ANN genes of Brassicaceae species (Brassica rapa, Brassica oleracea, and Brassica napus) has not yet been reported. …”
Publicado 2020
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466por Mateo de Arias, Mayelyn, Gao, Lei, Sherwood, David A., Dwivedi, Krishna K., Price, Bo J., Jamison, Michelle, Kowallis, Becky M., Carman, John G.“…High-frequency apomeiosis was initiated in all sexual species tested: Brassicaceae, Boechera stricta, Boechera exilis, and Arabidopsis thaliana; Fabaceae, Vigna unguiculata; Asteraceae, Antennaria dioica. …”
Publicado 2020
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467por Hendriks, Kasper P., Mandáková, Terezie, Hay, Nikolai M., Ly, Elfy, Hooft van Huysduynen, Alex, Tamrakar, Rubin, Thomas, Shawn K., Toro‐Núñez, Oscar, Pires, J. Chris, Nikolov, Lachezar A., Koch, Marcus A., Windham, Michael D., Lysak, Martin A., Forest, Félix, Mummenhoff, Klaus, Baker, William J., Lens, Frederic, Bailey, C. Donovan“…METHODS AND RESULTS: Using 26 Brassicaceae libraries and standard enrichment protocols, we compare results from three independent data sets. …”
Publicado 2021
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468por Madrid, Eva, Severing, Edouard, de Ansorena, Elisa, Kiefer, Christiane, Brand, Luise, Martinez-Gallegos, Rafael, Woetzel, Stefan, Kemi, Ulla, Jiao, Wen-Biao, Schneeberger, Korbinian, Coupland, George“…These genes are related to the MADS AFFECTING FLOWERING (MAF) cluster of floral repressors of other Brassicaceae species and were named A. montbretiana (Am) MAF-RELATED (MAR) genes. …”
Publicado 2021
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469por Xu, Yuanyuan, Xing, Miaomiao, Song, Lixiao, Yan, Jiyong, Lu, Wenjiang, Zeng, Aisong“…Cabbage (Brassica oleracea L. var. capitata) accounts for a critical vegetable crop belonging to Brassicaceae family, and it has been extensively planted worldwide. …”
Publicado 2021
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470por Nunn, Adam, Rodríguez‐Arévalo, Isaac, Tandukar, Zenith, Frels, Katherine, Contreras‐Garrido, Adrián, Carbonell‐Bejerano, Pablo, Zhang, Panpan, Ramos Cruz, Daniela, Jandrasits, Katharina, Lanz, Christa, Brusa, Anthony, Mirouze, Marie, Dorn, Kevin, Galbraith, David W, Jarvis, Brice A., Sedbrook, John C., Wyse, Donald L., Otto, Christian, Langenberger, David, Stadler, Peter F., Weigel, Detlef, Marks, M. David, Anderson, James A., Becker, Claude, Chopra, Ratan“…Altogether, these data will serve as a tool for pennycress improvement in general and for translational research across the Brassicaceae.…”
Publicado 2022
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471por Salazar‐Duque, Héctor, Alzate, Juan F., Urrea Trujillo, Aura, Ferrándiz, Cristina, Pabón‐Mora, Natalia“…In addition, we present the fruit genetic core regulatory network in selected Rubiaceae species and compare it in terms of copy number and expression patterns to model core eudicots in the Brassicaceae and the Solanaceae. METHODS: We used light microscopy to follow morphoanatomical changes in four selected species with different fruit types. …”
Publicado 2021
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472“…Clubroot disease, caused by Plasmodiophora brassicae, is a devastating disease that results in substantial yield loss in Brassicaceae crops worldwide. In this study, we identified a clubroot disease resistance (CR) Brassica napus, “Kc84R,” which was obtained by mutation breeding. …”
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473por Duarte, Jill M, Wall, P Kerr, Edger, Patrick P, Landherr, Lena L, Ma, Hong, Pires, J Chris, Leebens-Mack, Jim, dePamphilis, Claude W“…Eighteen of the APVO SSC single copy genes were amplified in the Brassicaceae using RT-PCR and directly sequenced. Alignments of these sequences provide improved resolution of Brassicaceae phylogeny compared to recent studies using plastid and ITS sequences. …”
Publicado 2010
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474“…Xanthomonas campestris pv. raphani and X. campestris pv. campestris are the causal agents of bacterial spot and black rot of crucifers (Brassicaceae), respectively. Both pathogens are threats in the cultivation of cruciferous crops such as cabbage. …”
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475“…Finally, the studies conducted on developing resistant transgenics in Brassicaceae have been covered in which chitinase and glucanase genes are mostly used. …”
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476“…These results allow for improved prediction of RPA1 subunit functions in newly sequenced plant genomes, and potentially provide a unique molecular tool to improve classification of Brassicaceae species.…”
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477por Eshel, Gil, Shaked, Ruth, Kazachkova, Yana, Khan, Asif, Eppel, Amir, Cisneros, Aroldo, Acuna, Tania, Gutterman, Yitzhak, Tel-Zur, Noemi, Rachmilevitch, Shimon, Fait, Aaron, Barak, Simon“…One successful strategy has been comparative studies between Arabidopsis thaliana and extremophyte Brassicaceae relatives such as the halophyte Eutrema salsugineum located in areas including cold, salty coastal regions of China. …”
Publicado 2017
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478“…Braya humilis is a member of the Euclidieae tribe within the family Brassicaceae. This species exhibits a broad range of adaptations to different climatic zones and latitudes as it has a distribution that ranges from northern Asia to the arctic-alpine regions of northern North America. …”
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479“…RPL represses the valve margin genetic program and the downstream dehiscence zone formation in the medial tissue of the siliques and RPL orthologs have conserved roles across the Brassicaceae eudicots. A RPL homolog, qSH1, has been studied in rice, a monocot, and plays a role in fruit shedding making it difficult to predict functional evolution of this gene lineage across angiosperms. …”
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480por Lama, Sbatie, Broda, Martyna, Abbas, Zahra, Vaneechoutte, Dries, Belt, Katharina, Säll, Torbjörn, Vandepoele, Klaas, Van Aken, Olivier“…In agreement, several Brassicaceae-specific DUF295 Organellar genes were incorporated in the evolutionary much older ANAC017-dependent mitochondrial retrograde signaling pathway. …”
Publicado 2019
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