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81por Chantha, Sier-Ching, Herman, Adam C., Platts, Adrian E., Vekemans, Xavier, Schoen, Daniel J.“…Here we examine the hypothesis that the S locus in the Brassicaceae genus Leavenworthia is paralogous with the S locus previously characterized in other members of the family. …”
Publicado 2013
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82por Seymour, Danelle K., Koenig, Daniel, Hagmann, Jörg, Becker, Claude, Weigel, Detlef“…To dissect the relative contribution of DNA methylation to transposon surveillance and host gene regulation, we leveraged information from three species in the Brassicaceae that vary in genome architecture, Capsella rubella, Arabidopsis lyrata, and Arabidopsis thaliana. …”
Publicado 2014
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83por Dai, Shutao, Hou, Jinna, Long, Yan, Wang, Jing, Li, Cong, Xiao, Qinqin, Jiang, Xiaoxue, Zou, Xiaoxiao, Zou, Jun, Meng, Jinling“…Based on this MITE, the characteristics and potential roles on gene regulation of the MITE family were analyzed in Brassicaceae. RESULTS: The characteristics of the Tourist-like MITE family Monkey King in Brassicaceae, including its distribution, copies and insertion sites in the genomes of major Brassicaceae species were analyzed in this study. …”
Publicado 2015
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85“…Using newly designed specific primers targeting the 18S rDNA gene of Cercozoa, we investigated the species richness of this common protist group on leaves of four Brassicaceae species from two different locations in a cloning‐based approach. …”
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86por Ibeas, Miguel A., Grant-Grant, Susana, Navarro, Nathalia, Perez, M. F., Roschzttardtz, Hannetz“…In this article we used Perls/DAB staining in order to reveal iron localization at the cellular and subcellular levels in different Brassicaceae seed species. In dry seeds of Brassica napus, Nasturtium officinale, Lepidium sativum, Camelina sativa, and Brassica oleracea iron localizes in vacuoles of cells surrounding provasculature in cotyledons and hypocotyl. …”
Publicado 2017
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87“…Here, we report that elevated temperature accelerates fruit dehiscence in members of the Brassicaceae family including the model plant Arabidopsis thaliana and important crop species. …”
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89por Raiola, Assunta, Errico, Angela, Petruk, Ganna, Monti, Daria Maria, Barone, Amalia, Rigano, Maria Manuela“…In this review, the mechanisms of action and the factors regulating the levels of the bioactive compounds in Brassicaceae have been discussed. In addition, the impact of industrial and domestic processing on the amount of these compounds have been considered, in order to identify the best conditions that are able to preserve the functional properties of the Brassicaceae products before consumption. …”
Publicado 2017
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90“…These structures have been reported in various species from the Brassicaceae, including Brassica oleracea, where previous reports using hydroponics indicated that they can be induced by exposure to salt. …”
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91por Rojek, Joanna, Kapusta, Małgorzata, Kozieradzka-Kiszkurno, Małgorzata, Majcher, Daria, Górniak, Marcin, Sliwinska, Elwira, Sharbel, Timothy F, Bohdanowicz, Jerzy“…BACKGROUND AND AIMS: In the Brassicaceae family, apomictic development is characteristic of the genus Boechera. …”
Publicado 2018
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92“…Thus, it remains to be determined whether biosynthesis of sulfur-containing metabolites in Brassicaceae plants requires specific or nonspecific GSTs.…”
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94por Dew-Budd, Kelly, Cheung, Julie, Palos, Kyle, Forsythe, Evan S., Beilstein, Mark A.“…Here we combine a phylogenetic and biochemical approach to understand how the telomerase RNP has evolved in Brassicaceae, the family that includes A. thaliana. Because of the complex phylogenetic pattern of template domain loss and alteration at the previously characterized A. thaliana TER loci, TER1 and TER2, across the plant family Brassicaceae, we bred double mutants from plants with a template deletion at AtTER1 and T-DNA insertion at AtTER2. …”
Publicado 2020
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95por Birkeland, Siri, Gustafsson, A Lovisa S, Brysting, Anne K, Brochmann, Christian, Nowak, Michael D“…Here, we compare patterns of molecular evolution in three Brassicaceae species that have independently colonized the Arctic and present some of the first genetic evidence for plant adaptations to the Arctic environment. …”
Publicado 2020
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96por Rellstab, Christian, Zoller, Stefan, Sailer, Christian, Tedder, Andrew, Gugerli, Felix, Shimizu, Kentaro K., Holderegger, Rolf, Widmer, Alex, Fischer, Martin C.“…We used whole‐genome pooled population sequencing to study genome‐wide SNP variation in 18 natural populations of three Brassicaceae (Arabis alpina, Arabidopsis halleri, and Cardamine resedifolia) from the Swiss Alps. …”
Publicado 2020
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99por Dogan, Mert, Pouch, Milan, Mandáková, Terezie, Hloušková, Petra, Guo, Xinyi, Winter, Pieter, Chumová, Zuzana, Van Niekerk, Adriaan, Mummenhoff, Klaus, Al-Shehbaz, Ihsan A., Mucina, Ladislav, Lysak, Martin A.“…The unigeneric tribe Heliophileae encompassing more than 100 Heliophila species is morphologically the most diverse Brassicaceae lineage. The tribe is endemic to southern Africa, confined chiefly to the southwestern South Africa, home of two biodiversity hotspots (Cape Floristic Region and Succulent Karoo). …”
Publicado 2021
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100“…The role of FLC has also been explored in perennials within the Brassicaceae family, such as Arabis alpina. The flowering pattern in A. alpina differs from the one in A. thaliana. …”
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