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42por Huang, Jiabao, Yang, Lin, Yang, Liu, Wu, Xiaoyu, Cui, Xiaoshuang, Zhang, Lili, Hui, Jiyun, Zhao, Yumei, Yang, Hongmin, Liu, Shangjia, Xu, Quanling, Pang, Maoxuan, Guo, Xinping, Cao, Yunyun, Chen, Yu, Ren, Xinru, Lv, Jinzhi, Yu, Jianqiang, Ding, Junyi, Xu, Gang, Wang, Nian, Wei, Xiaochun, Lin, Qinghui, Yuan, Yuxiang, Zhang, Xiaowei, Ma, Chaozhi, Dai, Cheng, Wang, Pengwei, Wang, Yongchao, Cheng, Fei, Zeng, Weiqing, Palanivelu, Ravishankar, Wu, Hen-Ming, Zhang, Xiansheng, Cheung, Alice Y., Duan, Qiaohong“…Our results show that SRK and FER integrate mechanisms underlying intraspecific and interspecific barriers and offer paths to achieve distant breeding in Brassicaceae crops.…”
Publicado 2023
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43“…Here, we describe the mechanism of establishment of at least four allopolyploid species in Brassicaceae (Arabidopsis suecica, Arabidopsis kamchatica, Capsella bursa-pastoris, and Brassica napus), in a manner dependent on the prior loss of the self-incompatibility mechanism in one of the ancestors. …”
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44Synteny Identifies Reliable Orthologs for Phylogenomics and Comparative Genomics of the Brassicaceae“…Finally, we present the first ancestral genome reconstruction for the Core Brassicaceae which predating the Brassicaceae lineage diversification ∼25 million years ago.…”
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45por Ienașcu, Ioana Maria Carmen, Căta, Adina, Chis, Adriana Aurelia, Ştefănuț, Mariana Nela, Sfîrloagă, Paula, Rusu, Gerlinde, Frum, Adina, Arseniu, Anca Maria, Morgovan, Claudiu, Rus, Luca Liviu, Dobrea, Carmen Maximiliana“…Glucosinolates-rich extracts of some Brassicaceae sources, such as broccoli, cabbage, black radish, rapeseed, and cauliflower, were obtained using an eco-friendly extraction method, in a microwave field, with 70% ethanol, and evaluated in order to establish their in vitro antioxidant activities and anticorrosion effects on steel material. …”
Publicado 2023
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46“…Here, we make use of the latest genomic data of Brassicaceae to study this remarkable feature of the FLC-like genes in a phylogenetic context. …”
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47por Schlüter, Urte, Bouvier, Jacques W, Guerreiro, Ricardo, Malisic, Milena, Kontny, Carina, Westhoff, Philipp, Stich, Benjamin, Weber, Andreas P M“…Our phylogenetic analysis suggested that C(3)–C(4) metabolism evolved up to five times independently in the Brassicaceae. The efficiency of the pathway showed considerable variation. …”
Publicado 2023
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49por Opitz, Sebastian E. W., Boevé, Jean-Luc, Nagy, Zoltán Tamás, Sonet, Gontran, Koch, Frank, Müller, Caroline“…Several species in the sawfly genus Athalia are important economic pests on Brassicaceae, whereas other Athalia species are specialized on Lamiales. …”
Publicado 2012
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50por Wang, Jing, Hopkins, Clare J., Hou, Jinna, Zou, Xiaoxiao, Wang, Chongnan, Long, Yan, Kurup, Smita, King, Graham J., Meng, Jinling“…Phylogenetic analysis of upstream block A indicated the conserved evolutionary relationships of distinct FT genes within Brassicaceae. We conclude that the ancient At-α whole genome duplication contributed to distinct ancestral lineages for this key adaptive gene, which co-exist within the same genus. …”
Publicado 2012
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52por Stockenhuber, Reinhold, Zoller, Stefan, Shimizu-Inatsugi, Rie, Gugerli, Felix, Shimizu, Kentaro K., Widmer, Alex, Fischer, Martin C.“…We present a flexible and inexpensive method to identify large numbers of nuclear primer pairs that amplify in most Brassicaceae species. We first obtained and mapped NGS transcriptome sequencing reads from two of the distantly related Brassicaceae species, Cardamine hirsuta and Arabis alpina, onto the Arabidopsis thaliana reference genome, and then identified short conserved sequence motifs among the three species bioinformatically. …”
Publicado 2015
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53“…Here, using two rare and two widespread Boechera (Brassicaceae) species, we conduct a simultaneous comparison of quantitative trait diversity, genetic diversity, and population structure among species with highly divergent range sizes. …”
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54por Murat, Florent, Louis, Alexandra, Maumus, Florian, Armero, Alex, Cook, Richard, Quesneville, Hadi, Crollius, Hugues Roest, Salse, JeromeEnlace del recurso
Publicado 2016
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55por Eldridge, Tilly, Łangowski, Łukasz, Stacey, Nicola, Jantzen, Friederike, Moubayidin, Laila, Sicard, Adrien, Southam, Paul, Kennaway, Richard, Lenhard, Michael, Coen, Enrico S., Østergaard, Lars“…Here, we compare the growth patterns and orientations for two very different fruit shapes in the Brassicaceae: the heart-shaped Capsella rubella silicle and the near-cylindrical Arabidopsis thaliana silique. …”
Publicado 2016
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56“…This study investigated the usefulness of floral characters as a potential indicator of breeding system in the Brassicaceae. Initially, pod set, seed set and pollen tube growth experiments were carried out to confirm the breeding systems of 53 lines representing 25 different cultivated and weedy species from the Brassicaceae. …”
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57“…In this study, we combined experimental and computational modeling approaches to examine the morphological and genetic divergence and reproductive isolation of two tentative species of Sinalliaria (Brassicaceae) endemic to eastern China, S. limprichtiana and S. grandifolia. …”
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58“…This review provides an overview of the current knowledge of traditional and agronomic uses of Brassicaceae oilseeds and mustards with a focus on their importance in Australia and New Zealand.…”
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59por Cuenot, Yves, Gómez, José M., González‐Megias, Adela, Pannell, John R., Torices, Rubén“…PREMISE OF THE STUDY: Polymorphic microsatellite markers were developed to study population structure and mating patterns of the monocarpic herb Moricandia moricandioides (Brassicaceae). METHODS AND RESULTS: Illumina MiSeq sequencing was used to develop a panel of 15 polymorphic microsatellite markers that were tested across 77 individuals from three populations on the Iberian Peninsula. …”
Publicado 2018
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60“…Glucosinolates (GSLs) are widely known secondary metabolites that have anticarcinogenic and antioxidative activities in humans and defense roles in plants of the Brassicaceae family. Some R2R3-type MYB (myeloblastosis) transcription factors (TFs) control GSL biosynthesis in Arabidopsis. …”
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