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381por Doucet, Jennifer, Lee, Hyun Kyung, Udugama, Nethangi, Xu, Jianfeng, Qi, Baoxiu, Goring, Daphne R.“…BACKGROUND: In the Brassicaceae, the early stages of compatible pollen-stigma interactions are tightly controlled with early checkpoints regulating pollen adhesion, hydration and germination, and pollen tube entry into the stigmatic surface. …”
Publicado 2019
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382por Narusaka, Mari, Kubo, Yasuyuki, Hatakeyama, Katsunori, Imamura, Jun, Ezura, Hiroshi, Nanasato, Yoshihiko, Tabei, Yutaka, Takano, Yoshitaka, Shirasu, Ken, Narusaka, Yoshihiro“…Here we demonstrate that a pair of Arabidopsis (Brassicaceae) NB-LRR-type R genes, RPS4 and RRS1, properly function in two other Brassicaceae, Brassica rapa and Brassica napus, but also in two Solanaceae, Nicotiana benthamiana and tomato (Solanum lycopersicum). …”
Publicado 2013
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383por Hammoudi, Valentin, Vlachakis, Georgios, Schranz, M. Eric, van den Burg, Harrold A.“…A tandem duplication of SUMO2 subsequently yielded SUMO3 in the Brassicaceae crown group. SUMO3 potentially neofunctionalized in Arabidopsis, but it is lost in many Brassicaceae. …”
Publicado 2016
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384por Thomas, Jason B., Hampton, Marshall E., Dorn, Kevin M., David Marks, M., Carter, Clay J.“…BACKGROUND: Pennycress [Thlaspi arvense L (Brassicaceae)] is being domesticated as a renewable biodiesel feedstock that also provides crucial ecosystems services, including as a nutritional resource for pollinators. …”
Publicado 2017
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385“…Functional analyses of homologous genes suggest that this network is fairly conserved in Brassicaceae and less conserved in other core eudicots. …”
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386“…Unexpectedly, we discovered that the genomic regions encoding the two A. thaliana TERs occur as a single locus in other Brassicaceae. Moreover, we find striking sequence divergence within the telomere template domain of putative TERs from Brassicaceae, including some orthologous loci that completely lack a template domain. …”
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387por Mabry, Makenzie E., Brose, Julia M., Blischak, Paul D., Sutherland, Brittany, Dismukes, Wade T., Bottoms, Christopher A., Edger, Patrick P., Washburn, Jacob D., An, Hong, Hall, Jocelyn C., McKain, Michael R., Al‐Shehbaz, Ihsan, Barker, Michael S., Schranz, M. Eric, Conant, Gavin C., Pires, J. Chris“…For example, dozens of WGDs have been phylogenetically localized across the order Brassicales, specifically, within the family Brassicaceae. A WGD event has also been identified in the Cleomaceae, the sister family to Brassicaceae, yet its placement, as well as that of WGDs in other families in the order, remains unclear. …”
Publicado 2020
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388por Lin, Haining, Moghe, Gaurav, Ouyang, Shu, Iezzoni, Amy, Shiu, Shin-Han, Gu, Xun, Buell, C Robin“…One of the A. thaliana lineage-specific gene sets share sequence similarity only to sequences from species within the Brassicaceae family and are termed Conserved Brassicaceae-Specific Genes (914, 3.4%, CBSG). …”
Publicado 2010
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389“…Camelina sativa is genetically very close to Arabidopsis thaliana, and both are members of the Brassicaceae. Although public databases are currently available for some members of the Brassicaceae, such as A. thaliana, A. lyrata, Brassica napus, B. juncea and B. rapa, there are no public Expressed Sequence Tags (EST) or genomic data for Camelina sativa. …”
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390“…The ephemerous occurrence of Hirschfeldia incana (Brassicaceae) in Central Asia is recorded for the first time from Fergana Range. …”
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391por Tanaka, Yoshiyuki, Tsuda, Mizue, Yasumoto, Keita, Yamagishi, Hiroshi, Terachi, Toru“…The Ogura-type male-sterile cytoplasm is one of the most extensively studied cytoplasms in Brassicaceae. Although the gene orf138 has been isolated as a determinant of Ogura-type CMS, no homologous sequence to orf138 has been found in public databases. …”
Publicado 2012
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392por Wang, Yilin, Liang, Qiannan, Zhang, Chenlu, Huang, Huanhuan, He, Hao, Wang, Mengyu, Li, Mengyao, Huang, Zhi, Tang, Yi, Chen, Qing, Miao, Huiying, Li, Huanxiu, Zhang, Fen, Wang, Qiaomei, Sun, Bo“…Chinese kale is a widely cultivated plant in the genus Brassica in the family Brassicaceae. The origin of Brassica has been studied extensively, but the origin of Chinese kale remains unclear. …”
Publicado 2023
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393por O'Connor, Devin L., Runions, Adam, Sluis, Aaron, Bragg, Jennifer, Vogel, John P., Prusinkiewicz, Przemyslaw, Hake, Sarah“…Our results suggest that examination and modeling of PIN dynamics in plants outside of Brassicaceae will offer insights into auxin-driven patterning obscured by the loss of the SoPIN1 clade in Brassicaceae.…”
Publicado 2014
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394por Maylin, George, Fenger, Clara, Machin, Jacob, Kudrimoti, Sucheta, Eisenberg, Rodney, Green, Jonathan, Tobin, Thomas“…Analysis of the urine samples suggested a botanical source, directing attention to the Brassicaceae plant family, with their contained GlucoBarbarin and Barbarin as possible sources of Aminorex. …”
Publicado 2019
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395por Wang, Gang, Zhang, Xiangxiang, Huang, Wei, Xu, Ping, Lv, Zewen, Zhao, Lun, Wen, Jing, Yi, Bin, Ma, Chaozhi, Tu, Jinxing, Fu, Tingdong, Shen, Jinxiong“…These results offer a reliable approach for fine‐tuning the traits of seed yield in Brassicaceae crops.…”
Publicado 2021
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396“…The glucosinolates in the Brassicaceae and some allies are the core molecules of one of the most researched such pathways. …”
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397por Kozar, Elena Victorovna, Domblides, Elena Alekseevna, Soldatenko, Alexsey Vasilevich“…The European radish is one of the most unresponsive crops in the Brassicaceae family to embryogenesis in in vitro microspore culture. …”
Publicado 2021
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398“…A high consumption of vegetables belonging to the Brassicaceae family has been related to a lower incidence of chronic diseases including different kinds of cancer. …”
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399“…The results showed that carmine radish (Raphanus sativus L.) is related to MS_Gensuke (Raphanus sativus L.) and Black radish (Raphanus sativus L.), as well as related to Brassica nigra and Brassica carinata, comparing with other Brassicaceae species. This study will provide important genetic tools for other Brassicaceae species research and improve yields of economically important plants.…”
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400“…Kohlrabi (Brassica oleracea var. gongylodes L.) is an important dietary rhizome vegetable in the Brassicaceae family. However, to date, few mitochondrial genomic resources have been reported for kohlrabi. …”
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