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441por Lucarini, Elena, Micheli, Laura, Pagnotta, Eleonora, Matteo, Roberto, Parisio, Carmen, Toti, Alessandra, Ferrara, Valentina, Ciampi, Clara, Martelli, Alma, Testai, Lara, Calderone, Vincenzo, Savino, Michele, Russo, Mario, Pecchioni, Nicola, Ghelardini, Carla, Di Cesare Mannelli, Lorenzo“…Glucosinolates, secondary metabolites mainly of Brassicaceae with anti-inflammatory and neuroprotective properties, are effective in treating both neuropathic and arthritis pain through H(2)S release and Kv7 potassium channel activation. …”
Publicado 2022
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442por Kim, Jungeun, Lee, Jeongyeo, Choi, Jae-Pil, Park, Inkyu, Yang, Kyungbong, Kim, Min Keun, Lee, Young Han, Nou, Ill-Sup, Kim, Dae-Soo, Min, Sung Ran, Park, Sang Un, Kim, HyeRan“…BACKGROUND: The Brassicaceae family is an exemplary model for studying plant polyploidy. …”
Publicado 2014
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443por Auger, Bathilde, Baron, Cécile, Lucas, Marie-Odile, Vautrin, Sonia, Bergès, Hélène, Chalhoub, Boulos, Fautrel, Alain, Renard, Michel, Nesi, Nathalie“…Amino acid sequences were highly conserved between the Brassicaceae including B. napus, B. rapa, B. oleracea as well as the model plant Arabidopsis thaliana. …”
Publicado 2009
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444“…In addition, CWINV4 is probably responsible for the hexose-rich composition observed for many Brassicaceae nectars.…”
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445por Ó Lochlainn, Seosamh, Bowen, Helen C., Fray, Rupert G., Hammond, John P., King, Graham J., White, Philip J., Graham, Neil S., Broadley, Martin R.“…Zinc (Zn) and cadmium (Cd) hyperaccumulation may have evolved twice in the Brassicaceae, in Arabidopsis halleri and in the Noccaea genus. …”
Publicado 2011
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446por Gladbach, David J., Holzschuh, Andrea, Scherber, Christoph, Thies, Carsten, Dormann, Carsten F., Tscharntke, Teja“…We investigated how oilseed rape (OSR; Brassica napus, Brassicaceae) affects noncrop plants in managed systems and semi-natural habitat, using trophic interactions among wild mustard (Sinapis arvensis, Brassicaceae), rape pollen beetles (Meligethes aeneus, Nitidulidae) and their parasitoids (Tersilochus heterocerus, Ichneumonidae). …”
Publicado 2010
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447por Abe, Hiroshi, Narusaka, Yoshihiro, Sasaki, Issei, Hatakeyama, Katsunori, Shin-I, Sadasu, Narusaka, Mari, Fukami-Kobayashi, Kaoru, Matsumoto, Satoru, Kobayashi, Masatomo“…Arabidopsis belongs to the Brassicaceae family and plays an important role as a model plant for which researchers have developed fine-tuned genome resources. …”
Publicado 2011
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448“…Promoter sequences of other Brassicaceae species were able to partially complement the A. thaliana bb-1 mutant, suggesting that at least within the Brassicaceae family the regulatory pathways are conserved. …”
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449por Tsuchimatsu, Takashi, Kaiser, Pascal, Yew, Chow-Lih, Bachelier, Julien B., Shimizu, Kentaro K.“…Recent extensive studies in multiple Brassicaceae species demonstrate that the loss of SI is often derived from mutations in the male component in wild populations, in contrast to cultivated populations. …”
Publicado 2012
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450por Vogt, Sebastian H., Weyens, Guy, Lefèbvre, Marc, Bork, Bettina, Schechert, Axel, Müller, Andreas E.“…The data demonstrate for the first time that an FLC homolog does not play a major role in the control of vernalization response in a dicot species outside the Brassicaceae.…”
Publicado 2014
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451A comprehensive set of transcript sequences of the heavy metal hyperaccumulator Noccaea caerulescenspor Lin, Ya-Fen, Severing, Edouard I., te Lintel Hekkert, Bas, Schijlen, Elio, Aarts, Mark G. M.“…Noccaea caerulescens is an extremophile plant species belonging to the Brassicaceae family. It has adapted to grow on soils containing high, normally toxic, concentrations of metals such as nickel, zinc, and cadmium. …”
Publicado 2014
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452“…KAT2 and KAT5 are present throughout angiosperms whereas KAT1 is a Brassicaceae-specific duplication of KAT2 expressed at low levels in Arabidopsis. …”
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453“…We also review GATA23, a regulator of lateral root initiation from Arabidopsis that is closely related to GNC and GNL but has a degenerate LLM-domain that is seemingly specific for the Brassicaceae family. The Brassicaceae-specific GATA23 and the monocot-specific HAN-domain GATAs provide evidence that neofunctionalization of B-GATAs was used during plant evolution to expand the functional repertoire of these transcription factors.…”
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454“…Furthermore, phylogeny based on domain structure and comparison map showed the relationship and the evolution of ACBPs within Brassicaceae family: ACBPs evolved into four separate classes with different structure. …”
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455por Lori, Martina, van Verk, Marcel C., Hander, Tim, Schatowitz, Hendrik, Klauser, Dominik, Flury, Pascale, Gehring, Christoph A., Boller, Thomas, Bartels, Sebastian“…The conservation and compatibility of the Pep-PEPR-system was analysed by using plants of two distantly related dicot families, Brassicaceae and Solanaceae, and a representative family of monocot plants, the Poaceae. …”
Publicado 2015
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456por Seo, Mi-Suk, Jin, Mina, Chun, Jin-Hyuk, Kim, Sun-Ju, Park, Beom-Seok, Shon, Seong-Han, Kim, Jung Sun“…Brassicaceae plants have three orthologous copies of AtMYB28 derived from recent genome triplication. …”
Publicado 2016
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457por Brukhin, Vladimir, Osadtchiy, Jaroslaw V., Florez-Rueda, Ana Marcela, Smetanin, Dmitry, Bakin, Evgeny, Nobre, Margarida Sofia, Grossniklaus, Ueli“…Löve) and Arabidopsis, the latter containing the model plant Arabidopsis thaliana, belong to the same clade within the Brassicaceae family. Boechera is the only among the more than 370 genera in the Brassicaceae where apomixis is well documented. …”
Publicado 2019
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458por Okamura, Yu, Tsuzuki, Natsumi, Kuroda, Shiori, Sato, Ai, Sawada, Yuji, Hirai, Masami Yokota, Murakami, Masashi“…We conducted feeding assays using larvae of three Pieris species and 10 species of the Brassicaceae family possessing different leaf physical traits and glucosinolate profile measurements. …”
Publicado 2019
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459por Dorn, Kevin M., Johnson, Evan B., Daniels, Erin C., Wyse, Donald L., Marks, Michael D.“…In natural populations, pennycress, like many Brassicaceae relatives, can exhibit either a winter or spring annual phenotype. …”
Publicado 2018
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460por Mérai, Zsuzsanna, Graeber, Kai, Wilhelmsson, Per, Ullrich, Kristian K, Arshad, Waheed, Grosche, Christopher, Tarkowská, Danuše, Turečková, Veronika, Strnad, Miroslav, Rensing, Stefan A, Leubner-Metzger, Gerhard, Mittelsten Scheid, Ortrun“…We describe Aethionema arabicum (Brassicaceae) as a suitable model plant to investigate the mechanism of germination inhibition by light, as this species has accessions with natural variation between light-sensitive and light-neutral responses. …”
Publicado 2019
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