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161por Milarska, Sylwia E., Androsiuk, Piotr, Paukszto, Łukasz, Jastrzębski, Jan P., Maździarz, Mateusz, Larson, Keith W., Giełwanowska, Irena“…The phylogenetic relationships within the genus Cerastium and family Caryophyllaceae were reconstructed based on the sequences of 71 protein-coding genes. …”
Publicado 2023
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162por Rautenberg, Anja, Filatov, Dmitry, Svennblad, Bodil, Heidari, Nahid, Oxelman, Bengt“…Here we investigate a spectacular case where two parts of the same gene (SlX1/Y1) show conflicting phylogenies within Silene (Caryophyllaceae). SlX1 and SlY1 are sex-linked genes on the sex chromosomes of dioecious members of Silene sect. …”
Publicado 2008
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163“…BACKGROUND: Recent phylogenetic studies have revealed that the mitochondrial genome of the angiosperm Silene noctiflora (Caryophyllaceae) has experienced a massive mutation-driven acceleration in substitution rate, placing it among the fastest evolving eukaryotic genomes ever identified. …”
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164por Sloan, Daniel B, Alverson, Andrew J, Štorchová, Helena, Palmer, Jeffrey D, Taylor, Douglas R“…BACKGROUND: Mitochondrial gene loss and functional transfer to the nucleus is an ongoing process in many lineages of plants, resulting in substantial variation across species in mitochondrial gene content. The Caryophyllaceae represents one lineage that has experienced a particularly high rate of mitochondrial gene loss relative to other angiosperms. …”
Publicado 2010
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165por Dvorský, Miroslav, Doležal, Jiří, Kopecký, Martin, Chlumská, Zuzana, Janatková, Kateřina, Altman, Jan, de Bello, Francesco, Řeháková, Klára“…We tested this prediction by exploring the association pattern of vascular plants with the dominant cushion plant Thylacospermum caespitosum (Caryophyllaceae) in the arid Trans-Himalaya, where vascular plants occur at one of the highest worldwide elevational limits. …”
Publicado 2013
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166“…Recent phylogenetic studies suggested that it should be placed in various alternative families including Caryophyllaceae, asteraceae, Saxifragaceae, Dilleniaceae, or with the rest of the rosid families. …”
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167“…We detected adulteration by carnation in four of eight tea products and, after adapting our objectives, could trace the taxonomic origin of the adulterant to Dianthus chinensis (Caryophyllaceae), a well known traditional Chinese medicine with counter indications for pregnant women.…”
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168por Wong, Ka H., Tan, Wei Liang, Kini, Shruthi G., Xiao, Tianshu, Serra, Aida, Sze, Sui Kwan, Tam, James P.“…Here, we report the discovery and characterization of two novel glutamine-rich and protein cargo-free 8C-hevein-like peptides, vaccatides vH1 and vH2, from Vaccaria hispanica of the Caryophyllaceae family. Proteomic analyses showed that the vaccatides are 40–41 amino acids in length and contain a chitin-binding domain. …”
Publicado 2017
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169por Wang, Lingyan, Bao, Yu, Wang, Hanxi, He, Chunguang, Wang, Ping, Sheng, Lianxi, Tang, Zhanhui“…Using slow stamen movement in Lychnis cognata (Caryophyllaceae), this study presents new evidence that this phenomenon can reduce both male–male and male–female sexual interference. …”
Publicado 2017
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170por Qin, Xianjin, Wu, Hongmiao, Chen, Jun, Wu, Linkun, Lin, Sheng, Khan, Muhammad Umar, Boorboori, Mohammad Reza, Lin, Wenxiong“…BACKGROUND: Pseudostellaria heterophylla (P. heterophylla), a herbaceous perennial, belongs to Caryophyllaceae family and is one of the Chinese herbal medicine with high pharmacodynamic value. …”
Publicado 2017
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171“…In this study, we developed a size‐dependent integral projection model (IPM) to evaluate how interannual precipitation and mollusk herbivory influence the dynamics of a Hawaii endemic short‐lived shrub, Schiedea obovata (Caryophyllaceae). Assessing how wet season precipitation effects population dynamics it critical, as it is the timeframe when most of the foliar growth occurs, plants flower and fruit, and seedlings establish. …”
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172por Hartmann, Fanny E, Rodríguez de la Vega, Ricardo C, Gladieux, Pierre, Ma, Wen-Juan, Hood, Michael E, Giraud, Tatiana“…Anther-smut fungi from the Microbotryum genus are castrating pathogens of Caryophyllaceae plants with largely nonrecombining mating-type chromosomes. …”
Publicado 2020
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173por Villa, María, Rodrigues, Isabel, Baptista, Paula, Fereres, Alberto, Pereira, José Alberto“…Some abundant plants, such as Bromus diandrus, Astragalus pelecinus, Chrysanthemum segetum, Trifolium spp., Caryophyllaceae, and Brassicaceae, were barely colonized by Aphrophoridae nymphs. …”
Publicado 2020
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174por Bencheikh, Noureddine, Elbouzidi, Amine, Kharchoufa, Loubna, Ouassou, Hayat, Alami Merrouni, Ilyass, Mechchate, Hamza, Es-safi, Imane, Hano, Christophe, Addi, Mohamed, Bouhrim, Mohamed, Eto, Bruno, Elachouri, Mostafa“…(UV = 0.16), and the highest family use value (FUV) was assigned to Caryophyllaceae with (FUV = 0.163). Regarding the informant consensus factor (ICF), this index’s highest values were recorded for kidney stones (ICF = 0.72). …”
Publicado 2021
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175por Poveda, Jorge, Díaz-González, Sandra, Díaz-Urbano, María, Velasco, Pablo, Sacristán, Soledad“…Brassicaceae plants are among the 30% of plant species that cannot establish optimal associations with mycorrhizal hosts (together with other plant families such as Proteaceae, Chenopodiaceae, and Caryophyllaceae), and GSLs could be involved in this evolutionary process of non-interaction. …”
Publicado 2022
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176por Carnicero, Pau, Wessely, Johannes, Moser, Dietmar, Font, Xavier, Dullinger, Stefan, Schönswetter, Peter“…TAXON: Cirsium glabrum (Asteraceae), Salix pyrenaica (Salicaceae) and Silene borderei (Caryophyllaceae). METHODS: Phylogenetic, genetic structure and demographic modelling analyses based on restriction‐site‐associated DNA sequencing (RADseq) data from a range‐wide populational sampling were conducted. …”
Publicado 2022
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177por Pelaez, Julianne N., Gloss, Andrew D., Goldman-Huertas, Benjamin, Kim, Bernard, Lapoint, Richard T., Pimentel-Solorio, Giovani, Verster, Kirsten I., Aguilar, Jessica M., Dittrich, Anna C. Nelson, Singhal, Malvika, Suzuki, Hiromu C., Matsunaga, Teruyuki, Armstrong, Ellie E., Charboneau, Joseph L.M., Groen, Simon C., Hembry, David H., Ochoa, Christopher J., O’Connor, Timothy K., Prost, Stefan, Zaaijer, Sophie, Nabity, Paul D., Wang, Jiarui, Rodas, Esteban, Liang, Irene, Whiteman, Noah K.“…Here, we characterized chemosensory and detoxification gene family evolution across Scaptomyza, a genus nested within Drosophila that includes a recently derived (<15 mya) herbivore lineage of mustard (Brassicales) specialists and carnation (Caryophyllaceae) specialists, and several non-herbivorous species. …”
Publicado 2023
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178por Peláez, Julianne N, Gloss, Andrew D, Goldman-Huertas, Benjamin, Kim, Bernard, Lapoint, Richard T, Pimentel-Solorio, Giovani, Verster, Kirsten I, Aguilar, Jessica M, Nelson Dittrich, Anna C, Singhal, Malvika, Suzuki, Hiromu C, Matsunaga, Teruyuki, Armstrong, Ellie E, Charboneau, Joseph L M, Groen, Simon C, Hembry, David H, Ochoa, Christopher J, O’Connor, Timothy K, Prost, Stefan, Zaaijer, Sophie, Nabity, Paul D, Wang, Jiarui, Rodas, Esteban, Liang, Irene, Whiteman, Noah K“…Here, we characterized chemosensory and detoxification gene family evolution across Scaptomyza, a genus nested within Drosophila that includes a recently derived (<15 mya) herbivore lineage of mustard (Brassicales) specialists and carnation (Caryophyllaceae) specialists, and several nonherbivorous species. …”
Publicado 2023
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179“…METHODOLOGY/PRINCIPLE FINDINGS: We found high substitution rates in the exons of the plastid clpP1 gene in Oenothera (the Evening Primrose family) and three separate lineages in the tribe Sileneae (Caryophyllaceae, the Carnation family). Introns have been lost in some of the lineages, but where present, the intron sequences have substitution rates similar to those found in other introns of their genomes. …”
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180por Chung, Hsiao-Hang, Schwinn, Kathy E., Ngo, Hanh M., Lewis, David H., Massey, Baxter, Calcott, Kate E., Crowhurst, Ross, Joyce, Daryl C., Gould, Kevin S., Davies, Kevin M., Harrison, Dion K.“…A Class I LigB sequence from the anthocyanin-producing Caryophyllaceae species Dianthus superbus and two DOD-like sequences from the Amaranthaceae species Beta vulgaris and Ptilotus spp. did not show DOD activity in the transient assay. …”
Publicado 2015
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