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1141“…In order to assess the consequence of whole genome triplication events within Brassicaceae family, we investigated the multiplicity of G-protein subunit genes in mesohexaploid Brassica rapa, a globally important vegetable and oilseed crop. …”
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1142“…In Antirrhinum majus, the TCP transcription factor CYCLOIDEA is the molecular key regulator driving the formation of floral monosymmetry. Although most Brassicaceae form a polysymmetric corolla, six genera develop monosymmetric flowers with two petal pairs of unequal size. …”
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1143por Huang, Chao-Li, Pu, Pei-Hua, Huang, Hao-Jen, Sung, Huang-Mo, Liaw, Hung-Jiun, Chen, Yi-Min, Chen, Chien-Ming, Huang, Ming-Ban, Osada, Naoki, Gojobori, Takashi, Pai, Tun-Wen, Chen, Yu-Tin, Hwang, Chi-Chuan, Chiang, Tzen-Yuh“…RESULTS: Using whole-genome sequences, we examined the genetic divergence in Xanthomonas campestris that infected Brassicaceae, and X. citri, pathogenic to a wider host range. …”
Publicado 2015
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1144por Cao, Huihui, Ke, Tao, Liu, Renhu, Yu, Jingyin, Dong, Caihua, Cheng, Mingxing, Huang, Junyan, Liu, Shengyi“…BnPRP1 isolated from B. napus was the first PR-AMP member that was characterized in plants, and its homology sequences were found in some other Brassicaceae plants by the genome sequences analysis. …”
Publicado 2015
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1145por Roux, Brice, Bolot, Stéphanie, Guy, Endrick, Denancé, Nicolas, Lautier, Martine, Jardinaud, Marie-Françoise, Fischer-Le Saux, Marion, Portier, Perrine, Jacques, Marie-Agnès, Gagnevin, Lionel, Pruvost, Olivier, Lauber, Emmanuelle, Arlat, Matthieu, Carrère, Sébastien, Koebnik, Ralf, Noël, Laurent D.“…BACKGROUND: The bacterial species Xanthomonas campestris infects a wide range of Brassicaceae. Specific pathovars of this species cause black rot (pv. campestris), bacterial blight of stock (pv. incanae) or bacterial leaf spot (pv. raphani). …”
Publicado 2015
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1146por Licata, Mario, Tuttolomondo, Teresa, Leto, Claudio, Virga, Giuseppe, Bonsangue, Giuseppe, Cammalleri, Ignazio, Gennaro, Maria Cristina, La Bella, Salvatore“…RESULTS: Local communities currently use a total number of 119 wild species for food purposes. Asteraceae and Brassicaceae were the most represented botanical families. …”
Publicado 2016
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1147por Jodaa Holm, Helle, Wadsworth, Simon, Bjelland, Anne-Kari, Krasnov, Aleksei, Evensen, Øystein, Skugor, Stanko“…Glucosinolates belong to a diverse group of compounds used as protection against herbivores by plants in the family Brassicaceae, while in vertebrates, ingested glucosinolates exert health-promoting effects due to their antioxidant and detoxifying properties as well as effects on cell proliferation and growth. …”
Publicado 2016
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1148por Soler, Marçal, Plasencia, Anna, Lepikson-Neto, Jorge, Camargo, Eduardo L. O., Dupas, Annabelle, Ladouce, Nathalie, Pesquet, Edouard, Mounet, Fabien, Larbat, Romain, Grima-Pettenati, Jacqueline“…Comparative phylogenetic analyses of the R2R3-MYB transcription factor family revealed that five subgroups were preferentially found in woody species and were totally absent from Brassicaceae and monocots (Soler et al., 2015). Here, we analyzed one of these subgroups (WPS-I) for which no gene had been yet characterized. …”
Publicado 2016
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1149“…To identify genes that confer differences between annuals and perennials we compared the gene content of four pairs of sister lineages (Arabidopsis thaliana/Arabidopsis lyrata, Arabis montbretiana/Arabis alpina, Arabis verna/Aubrieta parviflora and Draba nemorosa/Draba hispanica) in the Brassicaceae in which each pair contains one annual and one perennial, plus one extra annual species (Capsella rubella). …”
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1150“…BACKGROUND: Isatidae L. is a complex and systematically difficult genus in Brassicaceae. The genus displays great morphological polymorphism, which makes the classification of species and subspecies difficult as it is observed in Isatis glauca Aucher ex Boiss. …”
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1151por Koh, Joshua C. O., Barbulescu, Denise M., Norton, Sally, Redden, Bob, Salisbury, Phil A., Kaur, Sukhjiwan, Cogan, Noel, Slater, Anthony T.“…BACKGROUND: Within the Brassicaceae, six species from the genus Brassica are widely cultivated throughout the world as oilseed, condiment, fodder or vegetable crops. …”
Publicado 2017
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1152por Wang, Jinglei, Qiu, Yang, Cheng, Feng, Chen, Xiaohua, Zhang, Xiaohui, Wang, Haiping, Song, Jiangping, Duan, Mengmeng, Yang, Haohui, Li, Xixiang“…BACKGROUND: Radish (Raphanus sativus L.) belongs to the family Brassicaceae, and is an economically important root crop grown worldwide. …”
Publicado 2017
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1153por Gustafsson, Cecilia, Willforss, Jakob, Lopes-Pinto, Fernando, Ortiz, Rodomiro, Geleta, Mulatu“…Field cress (Lepidium campestre) is a species in the Brassicaceae family that has been targeted for domestication not only as an oilseed crop that produces seeds with a desirable industrial oil quality but also as a cover/catch crop that provides valuable ecosystem services. …”
Publicado 2018
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1154por Lay, Chih-Ying, Bell, Terrence H., Hamel, Chantal, Harker, K. Neil, Mohr, Ramona, Greer, Charles W., Yergeau, Étienne, St-Arnaud, Marc“…However, the relative abundance of Olpidium brassicae, a known pathogen of members of the Brassicaceae, was significantly reduced in the roots of canola planted at higher seeding density. …”
Publicado 2018
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1155“…Context:Eruca sativa Mill. (Brassicaceae), commonly known as rocket salad, is a popular leafy-green vegetable with many health benefits. …”
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1156por Ning, Luyun, Lin, Zhiwei, Gu, Jianwei, Gan, Lu, Li, Yonghong, Wang, Hao, Miao, Liyun, Zhang, Libin, Wang, Baoshan, Li, Maoteng“…BACKGROUND: Rapeseed (Brassica napus) is an important oil seed crop in the Brassicaceae family. Chemical induced male sterility (CIMS) is one of the widely used method to produce the hybrids in B. napus. …”
Publicado 2018
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1157por Qian, Chaoju, Yan, Xia, Yin, Hengxia, Fan, Xingke, Yin, Xiaoyue, Sun, Peipei, Li, Zhijun, Nevo, Eviatar, Ma, Xiao-Fei“…Among them, four genes, namely, SPDS1, FCLY, Tic21 and BGLU25, also showed adaptive divergence between R. lunaria and A. thaliana, suggesting that these genes could play an important role in plant speciation, at least in Brassicaceae. Based on results of both the phenotype of flowering time and comparative transcriptome, we hypothesize that, after long-time local adaptations to their interslope microclimatic environments, the molecular functions of these nine genes could have been diverged between the two ecotypes. …”
Publicado 2018
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1158por Soh, Bernard Steve Baleba, Kekeunou, Sevilor, Nanga Nanga, Samuel, Dongmo, Michel, Rachid, Hannah“…The cabbage aphid, Brevicoryne brassicae, is a pest of many plants of the Brassicaceae family including cabbage, Brassica oleracea Linnaeus, 1753. …”
Publicado 2018
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1159“…Further analyses of multiple species in the Brassicaceae family indicated that family-specific duplicates experienced differential selective pressures in coding regions, with some paralogs showing signs of positive selection. …”
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1160por Zuluaga, Diana L., Graham, Neil S., Klinder, Annett, van Ommen Kloeke, A. E. Elaine, Marcotrigiano, Angelo R., Wagstaff, Carol, Verkerk, Ruud, Sonnante, Gabriella, Aarts, Mark G. M.“…ABSTRACT: Isothiocyanates, the bio-active hydrolysis products of glucosinolates, naturally produced by several Brassicaceae species, play an important role in human health and agriculture. …”
Publicado 2019
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