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1101por Nguyen, Tan-Trung, Planchard, Noelya, Dahan, Jennifer, Arnal, Nadège, Balzergue, Sandrine, Benamar, Abdelilah, Bertin, Pierre, Brunaud, Véronique, Dargel-Graffin, Céline, Macherel, David, Martin-Magniette, Marie-Laure, Quadrado, Martine, Namy, Olivier, Mireau, Hakim“…A complete ensemble of molecular and genetic analyses allowed us to demonstrate that the RFL8 gene has been selected to permit the translation of the mitochondrial ccmF(N2) gene encoding a heme–lyase complex subunit which derives from the split of the ccmF(N) gene, specifically in Brassicaceae plants. This study represents thus a clear case of nuclear compensation to a lineage-specific mitochondrial genomic rearrangement in plants and demonstrates that RFL genes can be selected in response to other mitochondrial deviancies than CMS suppression.…”
Publicado 2021
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1102por Pokhrel, Suresh, Huang, Kun, Bélanger, Sébastien, Zhan, Junpeng, Caplan, Jeffrey L., Kramer, Elena M., Meyers, Blake C.“…Although this pathway is apparently absent in well-studied eudicot families including the Brassicaceae, Solanaceae and Fabaceae, our work in eudicots supports an earlier singular finding in spruce, a gymnosperm, indicating that the pathway of 21-nt reproductive phasiRNAs emerged in seed plants and was lost in some lineages.…”
Publicado 2021
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1103por Abdelaziz, Mohamed, Muñoz-Pajares, A. Jesús, Berbel, Modesto, García-Muñoz, Ana, Gómez, José M., Perfectti, Francisco“…We have studied a total of 720 plants belonging to five populations from two Erysimum (Brassicaceae) species presenting a contact zone in the Sierra Nevada mountains (SE Spain). …”
Publicado 2021
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1104por Hu, Dandan, Jing, Jinjie, Snowdon, Rod J., Mason, Annaliese S., Shen, Jinxiong, Meng, Jinling, Zou, Jun“…Here, we review the genetic diversity, genome structure, and population‐level differentiation of the B. napus gene pool in relation to known exotic introgressions from various species of the Brassicaceae, especially those elucidated by recent genome‐sequencing projects. …”
Publicado 2021
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1105por Hou, Shuguo, Liu, Derui, Huang, Shijia, Luo, Dexian, Liu, Zunyong, Xiang, Qingyuan, Wang, Ping, Mu, Ruimin, Han, Zhifu, Chen, Sixue, Chai, Jijie, Shan, Libo, He, Ping“…Here, we report that the Arabidopsis receptor kinase MALE DISCOVERER 1-INTERACTING RECEPTOR-LIKE KINASE 2 (MIK2) recognizes the conserved signature motif of SERINE-RICH ENDOGENOUS PEPTIDEs (SCOOPs) from Brassicaceae plants as well as proteins present in fungal Fusarium spp. and bacterial Comamonadaceae, and elicits various immune responses. …”
Publicado 2021
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1106“…Red cabbage belongs to the economically important group of vegetable crops of the Brassicaceae family. A unique feature of this vegetable crop that distinguishes it from other members of the family is its unique biochemical composition characterized by high anthocyanin content, which gives it antioxidant properties. …”
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1107por Wahman, Rofida, Moser, Stefan, Bieber, Stefan, Cruzeiro, Catarina, Schröder, Peter, Gilg, August, Lesske, Frank, Letzel, Thomas“…This compound database is filled with relevant compounds of the Lemnaceae, Poaceae, Brassicaceae, and Nymphaceae families according to analytical criteria such as retention time (polarity and LogD (pH 7)) and accurate mass (empirical formula). …”
Publicado 2021
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1108por Sohn, Soo-In, Pandian, Subramani, Zaukuu, John-Lewis Zinia, Oh, Young-Ju, Park, Soo-Yun, Na, Chae-Sun, Shin, Eun-Kyoung, Kang, Hyeon-Jung, Ryu, Tae-Hun, Cho, Woo-Suk, Cho, Youn-Sung“…Gene flow from GM crops to other crops, especially in the Brassicaceae family, might pose a threat to the environment due to their weediness. …”
Publicado 2021
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1109“…The paper discusses in detail the most promising species of introduced vegetable crops from five families (Brassicaceae, Amaranthaceae, Solanaceae, Leguminosae, Cucurbitaceae). …”
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1110por Zhou, Dongyang, Zhang, Hao, Xue, Xu, Tao, Yali, Wang, Sicheng, Ren, Xiaoxiang, Su, Jiacan“…F [Celastraceae][TwHF] polyglycosides and quercetin (Capsella bursa-pastoris (L.) Medik [Brassicaceae]). The present review aimed to summarize the CSE results of natural drugs in CSDs and could provide evidence-based information for clinicians.…”
Publicado 2022
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1111New Insights Into the Evolution of C(4) Photosynthesis Offered by the Tarenaya Cluster of Cleomaceaepor Parma, Daniele F., Vaz, Marcelo G. M. V., Falquetto, Priscilla, Silva, Jéssica C., Clarindo, Wellington R., Westhoff, Philipp, van Velzen, Robin, Schlüter, Urte, Araújo, Wagner L., Schranz, M. Eric, Weber, Andreas P. M., Nunes-Nesi, Adriano“…Cleomaceae is closely related to Brassicaceae and includes C(3), C(3)–C(4), and C(4) species. …”
Publicado 2022
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1112por Tang, Weiling, Zhao, Yijiao, Zeng, Jiajing, Li, Zunwen, Fu, Zhenlin, Yang, Mengyu, Zeng, Donglin, Chen, Xiaodong, Lai, Zhongxiong, Wang-Pruski, Gefu, Guo, Rongfang“…Chinese kale, as a Brassicaceae vegetable, mainly depends on seed for proper reproduction. …”
Publicado 2022
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1113por Fan, Li, Fröhlich, Katja, Melzer, Eric, Pruitt, Rory N., Albert, Isabell, Zhang, Lisha, Joe, Anna, Hua, Chenlei, Song, Yanyue, Albert, Markus, Kim, Sang-Tae, Weigel, Detlef, Zipfel, Cyril, Chae, Eunyoung, Gust, Andrea A., Nürnberger, Thorsten“…We show that proteobacterial translation initiation factor 1 (IF1) triggers PTI in Arabidopsis thaliana and related Brassicaceae species. Unlike for most other immunogenic patterns, IF1 elicitor activity cannot be assigned to a small peptide epitope, suggesting that tertiary fold features are required for IF1 receptor activation. …”
Publicado 2022
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1114por Galieni, Angelica, Nicastro, Nicola, Pentangelo, Alfonso, Platani, Cristiano, Cardi, Teodoro, Pane, Catello“…Wild rocket (Diplotaxis tenuifolia, Brassicaceae) is a baby-leaf vegetable crop of high economic interest, used in ready-to-eat minimally processed salads, with an appreciated taste and nutraceutical features. …”
Publicado 2022
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1115por Li, Xiaoman, Wang, Peng, Wang, Jinglei, Wang, Haiping, Liu, Tongjin, Zhang, Xiaohui, Song, Jiangping, Yang, Wenlong, Wu, Chunhui, Yang, Haohui, Liu, Liwang, Li, Xixiang“…Although the basic GSLs metabolic pathway in Brassicaceae plants is clear, the regulating mechanism for specific glucosinolates content in radish fleshy taproots is not well understood. …”
Publicado 2022
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1116“…The bacterial phytopathogen Pseudomonas syringae causes disease on a wide array of plants, including the model plant Arabidopsis thaliana and its agronomically important relatives in the Brassicaceae family. To cause disease, P. syringae delivers effector proteins into plant cells through a type III secretion system. …”
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1117por Nicosia, Noemi, Kwiecień, Inga, Mazurek, Justyna, Mika, Kamil, Bednarski, Marek, Miceli, Natalizia, Ragusa, Salvatore, Ekiert, Halina, Maes, Michael, Kotańska, Magdalena“…Isatis tinctoria L. is a herbaceous species in the Brassicaceae family. Due to its potential antioxidant, nitric oxide- (NO-) inhibiting, anti-inflammatory, and neuroprotective properties, I. tinctoria could be used to treat depression, anxiety, and stress resistance. …”
Publicado 2022
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1118por Taviano, Maria Fernanda, Núñez, Sonia, Millán-Laleona, Adrián, Condurso, Concetta, Verzera, Antonella, Merlino, Maria, Ragusa, Monica, Miceli, Natalizia, López, Víctor“…CONTEXT: Brassica incana Ten. (Brassicaceae) is an edible plant with very limited available information. …”
Publicado 2022
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1119“…However, the evolutionary process and functional importance of CLEs are unclear in Brassicaceae. In this study, a total of 70 BnCLEs were identified in Brassica napus (2n = 4x = 38, A(n)C(n)): 32 from the A(n) subgenome, 36 from the C(n) subgenome, and 2 from the unanchored subgenome. …”
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1120por Qin, Hongtao, Li, Hang, Abhinandan, Kumar, Xun, Baoru, Yao, Kun, Shi, Jiayuan, Zhao, Ruoxi, Li, Mugeng, Wu, Ying, Lan, Xingguo“…In Brassicaceae, the papillary cells of the stigma are the primary site of the self-incompatibility (SI) responses. …”
Publicado 2022
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