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401por Sura-de Jong, Martina, Reynolds, Ray J. B., Richterova, Klara, Musilova, Lucie, Staicu, Lucian C., Chocholata, Iva, Cappa, Jennifer J., Taghavi, Safiyh, van der Lelie, Daniel, Frantik, Tomas, Dolinova, Iva, Strejcek, Michal, Cochran, Alyssa T., Lovecka, Petra, Pilon-Smits, Elizabeth A. H.“…Terminal restriction fragment length polymorphism (T-RFLP) analysis was used to compare the diversity of endophytic bacteria of hyperaccumulators Stanleya pinnata (Brassicaceae) and Astragalus bisulcatus (Fabaceae) with those from related non-accumulators Physaria bellii (Brassicaceae) and Medicago sativa (Fabaceae) collected on the same, seleniferous site. …”
Publicado 2015
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402por Zhang, Zhikang, Meng, Fanbo, Sun, Pengchuan, Yuan, Jiaqing, Gong, Ke, Liu, Chao, Wang, Weijie, Wang, Xiyin“…BACKGROUND: Belonging to lineage I of Brassicaceae, Camelina sativa is formed by two hybridizations of three species (three sub-genomes). …”
Publicado 2020
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403por Sinjushin, Andrey“…Compared with Arabidopsis (Brassicaceae), very little is known about regulation of floral nectaries development in legumes. …”
Publicado 2022
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404por Niemann, Janetta, Szwarc, Justyna, Bocianowski, Jan, Weigt, Dorota, Mrówczyński, Marek“…Wild genotypes of Brassicaceae and rapeseed cultivars can be used as a source of resistance. …”
Publicado 2020
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405“…We report the complete chloroplast DNA (cpDNA) of Arabidopsis lyrata (Brassicaceae), a less studied relative of A. thaliana, by employing next-generation sequencing reads and de novo assembly. …”
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406“…Self-incompatibility (SI) is conserved among members of the Brassicaceae plant family. This trait is controlled epigenetically by the dominance hierarchy of the male determinant alleles. …”
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407“…A field experiment was conducted to investigate the effect of incorporation of Brassicaceae cover crops on Fusarium graminearum in a wheat-maize rotation. …”
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408“…There are three hosts from each family: Brassicaceae, Apiaceae and Solanaceae and one host from Fabaceae. …”
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409por Ghidoli, Martina, Ponzoni, Elena, Araniti, Fabrizio, Miglio, Daniela, Pilu, Roberto“…Crantz, belonging to the Brassicaceae family, is attracting the scientific community’s interest for several desirable features. …”
Publicado 2023
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410por Bulasag, Abriel Salaria, Camagna, Maurizio, Kuroyanagi, Teruhiko, Ashida, Akira, Ito, Kento, Tanaka, Aiko, Sato, Ikuo, Chiba, Sotaro, Ojika, Makoto, Takemoto, Daigo“…Surveying 26 plant species across 13 families revealed that the BcatrB promoter is mainly activated during the infection of B. cinerea in plants belonging to the Solanaceae, Fabaceae and Brassicaceae. The BcatrB promoter was also activated by in vitro treatments of phytoalexins produced by members of these plant families, namely rishitin (Solanaceae), medicarpin and glyceollin (Fabaceae), as well as camalexin and brassinin (Brassicaceae). …”
Publicado 2023
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411“…We compared the fungus Botrytis cinerea, which infects a variety of hosts, with the Brassicaceae-specific fungus Alternaria brassicicola. …”
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412por Fan, Yonghai, Yu, Mengna, Liu, Miao, Zhang, Rui, Sun, Wei, Qian, Mingchao, Duan, Huichun, Chang, Wei, Ma, Jinqi, Qu, Cunmin, Zhang, Kai, Lei, Bo, Lu, Kun“…Our study provides a comprehensive evolutionary analysis of GolS genes among the Brassicaceae and Solanaceae as well as an insight into the biological function of GolS genes in hormone response in plants.…”
Publicado 2017
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413por Kirschner, Sandra, Woodfield, Helen, Prusko, Katharina, Koczor, Maria, Gowik, Udo, Hibberd, Julian M, Westhoff, Peter“…It is highly conserved in SULTR2;2 genes of the Brassicaceae and is functional in the distantly related C(4) species Flaveria bidentis that belongs to the Asteraceae. …”
Publicado 2018
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414por Sakata, Nanami, Haraguchi, Takumi, Masuo, Shunsuke, Ishiga, Takako, Ishiga, Yasuhiro“…We also found that the RND transporter contributes to Pcal virulence on Brassicaceae and tomato, but not on oat. These results suggest that the RND transporter contributes to Pcal virulence differentially depending on the host-plant species. …”
Publicado 2022
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415por Wötzel, Stefan, Andrello, Marco, Albani, Maria C., Koch, Marcus A., Coupland, George, Gugerli, Felix“…From this published knowledge, we derive open questions that might inspire future research in A. alpina, other Brassicaceae species or more distantly related plant families.…”
Publicado 2021
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416“…3-3′-Diindolylmethane (DIM) is a biologically active dimer derived from the endogenous conversion of indole-3-carbinol (I3C), a naturally occurring glucosinolate found in many cruciferous vegetables (i.e., Brassicaceae). DIM was the first pure androgen receptor antagonist isolated from the Brassicaceae family and has been recently investigated for its potential pharmacological use in prostate cancer prevention and treatment. …”
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417por Flor-Weiler, Lina B., Behle, Robert W., Berhow, Mark A., McCormick, Susan P., Vaughn, Steven F., Muturi, Ephantus J., Hay, William T.“…This is the first report evaluating the efficacy of five Brassicaceae seed meals and their major chemical constituent against mosquito larvae and demonstrates how natural compounds from Brassicaceae seed meals can serve as a promising ecofriendly larvicides to control mosquitoes.…”
Publicado 2023
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418“…In this study, the PCO gene family of Brassicaceae was analyzed for the first time, which contributes to a comprehensive understanding of the origin and evolution of PCO genes in Brassicaceae and the function of BnaPCO in abiotic stress responses.…”
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419por Brazel, Ailbhe J., Fattorini, Róisín, McCarthy, Jesse, Franzen, Rainer, Rümpler, Florian, Coupland, George, Ó’Maoiléidigh, Diarmuid S.“…Although leaves are the primary photosynthetic organs of flowering plants, floral organs are also photosynthetically active. In the Brassicaceae, evidence suggests that silique photosynthesis is important for optimal seed oil content. …”
Publicado 2023
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420“…Brassicaceae plants have the glucosinolate–myrosinase defense system, jointly active against herbivory. …”
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