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61“…The fruits of 20 plant species were evaluated using standard protocols, whereas information on medicinal uses was gathered through semistructured interviews. Comparatively, Prunus domestica and Rubus ellipticus fruits exhibited highest levels of phenolics and flavonols contents (113.55 ± 0.61 mg GAE/100 g and 200.06 ± 1.57 mg RtE/100 g FW, respectively) in acetone extract. …”
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62por Alsolmei, Faten A., Li, Haiwen, Pereira, Suzette L., Krishnan, Padmavathy, Johns, Paul W., Siddiqui, Rafat A.“…We hypothesized that polyphenols derived from plums (Prunus domestica) could have anabolic and anti-catabolic benefits on skeletal muscle. …”
Publicado 2019
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63por Beltrán, Roberto, Valls, Aina, Cebrián, Nuria, Zornoza, Carlos, García Breijo, Francisco, Reig Armiñana, José, Garmendia, Alfonso, Merle, Hugo“…Cydonia oblonga, Malus sylvestris, Prunus avium, Prunus domestica, Prunus dulcis, Prunus persica and Pyrus communis obtained 30–52% pollen germination between 15 °C and 20 °C. …”
Publicado 2019
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64por Galimba, Kelsey, Tosetti, Roberta, Loerich, Karen, Michael, Leann, Pabhakar, Savita, Dove, Cynthia, Dardick, Chris, Callahan, Ann“…An RNAseq study of early fruit development and stone development in plum, Prunus domestica, was mined to identify sets of genes that could be used to normalize expression studies in early fruit development. …”
Publicado 2020
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65por Chamnansilpa, Netima, Aksornchu, Pattamaporn, Adisakwattana, Sirichai, Thilavech, Thavaree, Mäkynen, Kittana, Dahlan, Winai, Ngamukote, Sathaporn“…The content of total phenolics, flavonoid and anthocyanin in Prunus domestica L. (TPE), Antidesma bunius (L.) Spreng, Syzygium cumini (L.) …”
Publicado 2020
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66“…F) (71.27%), black seed (Nigella sativa) (66.55%), mustard oil (Brassica Juncea Mane Kancor) (65.45%), and prune (Prunus domestica) (41.45%) were the most widely utilized herbs. …”
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67por Wang, Xinhua, Kohalmi, Susanne E., Svircev, Antonet, Wang, Aiming, Sanfaçon, Hélène, Tian, Lining“…The eIF4E and eIF(iso)4E genes were cloned from plum (Prunus domestica L.). The sequence identity between plum eIF4E and eIF(iso)4E coding sequences is 60.4% at the nucleotide level and 52.1% at the amino acid level. …”
Publicado 2013
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68por Hollender, Courtney A., Waite, Jessica M., Tabb, Amy, Raines, Doug, Chinnithambi, Srinivasan, Dardick, Chris“…Here we found that some of the native TAC1 alleles in the hexaploid plum species Prunus domestica, which has a naturally more upright stature, contained a variable length trinucleotide repeat within the same exon 3 region previously found to be disrupted in pillar peach trees. …”
Publicado 2018
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69por Jeger, Michael, Bragard, Claude, Caffier, David, Candresse, Thierry, Chatzivassiliou, Elisavet, Dehnen‐Schmutz, Katharina, Gilioli, Gianni, Grégoire, Jean‐Claude, Jaques Miret, Josep Anton, MacLeod, Alan, Navajas Navarro, Maria, Niere, Björn, Parnell, Stephen, Potting, Roel, Rafoss, Trond, Urek, Gregor, Van Bruggen, Ariena, Van der Werf, Wopke, West, Jonathan, Winter, Stephan, Gonzalez‐Dominguez, Elisa, Vloutoglou, Irene, Bottex, Bernard, Rossi, Vittorio“…The major hosts of A. morbosa are Prunus domestica and Prunus cerasus; the host status of other Prunus species and hybrids is uncertain because of contradictory reports or lack of information. …”
Publicado 2018
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70“…RESEARCH BACKGROUND: Low temperature storage causes chilling injury in plum (Prunus domestica L.) fruits. Consequently, any treatments with beneficial effects against these symptoms would achieve attention. …”
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71por Sabouri, Atefeh, Bakhshipour, Adel, Poornoori, MohammadHossein, Abouzari, Abouzar“…Machine learning methods were used in this study to estimate the LA of four plum genotypes, including three greengage genotypes (Prunus domestica [subsp. italica var. claudiana.]) and a single myrobalan plum (prunus ceracifera), using leaf length (L) and width (W) values. …”
Publicado 2022
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72por Kleszken, Eva, Purcarea, Cornelia, Pallag, Annamaria, Ranga, Floricuta, Memete, Adriana Ramona, Miere (Groza), Florina, Vicas, Simona Ioana“…Our main aim was to evidence the influence of mistletoe on the content of chlorophylls, proline, total phenols, flavonoids, and antioxidant capacity of leaves from tree host trees (Malus domestica, Prunus domestica, and Populus alba) that grow on the northwest of Romania. …”
Publicado 2022
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73por Lloret, Alba, Quesada-Traver, Carles, Conejero, Ana, Arbona, Vicent, Gómez-Mena, Concepción, Petri, César, Sánchez-Navarro, Jesús A., Zuriaga, Elena, Leida, Carmen, Badenes, María Luisa, Ríos, Gabino“…On the other hand, the heterologous overexpression of PpeDAM6 in European plum (Prunus domestica) alters plant vegetative growth, resulting in dwarf plants tending toward shoot meristem collapse. …”
Publicado 2021
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74Publicado 2012Tabla de Contenidos: “….) -- Selection of transgenic rice plants using a herbicide tolerant form of the acetolactate synthase gene -- Visual selection in rice: A strategy for the efficient identification of transgenic calli accumulating transgene products -- Characterization of rice genes using a heterologous full-length cCDNA expression system -- Bioactive bead-mediated transformation of plants with large DNA fragments -- Agrobacterium-mediated transformation of sorghum bicolor using immature embryos -- Split-transgene expression in wheat -- Agrobacterium-mediated transformation of brachypodium distachyon -- Transformation of barley (Hordeum vulgare L.) by agrobacterium tumefaciens infection of in vitro cultured ovules -- Biolistic-mediated production of transgenic oil palm -- Transformation of oil palm using agrobacterium tumefaciens -- Highly efficient transformation protocol for plum (Prunus domestica L.) -- Co-transformation of grapevine somatic embryos to produce transgenic plants free of marker genes -- Initiation and transformation of grapevine embryogenic cultures -- Development of highly efficient genetic transformation protocols for table grape sugraone and crimson seedless -- Cotton pistil drip transformation method -- Enhanced agrobacterium-mediated transformation of embryogenic calli of upland cotton -- Targeted biolistics for improved transformation of impatiens balsamina -- A protocol for transformation of torenia -- Efficient modification of floral traits by heavy-ion beam irradiation on transgenic torenia -- Expression of artificial micrornas in physcomitrella patens -- High frequency of single-copy t-DNA transformants produced after floral dip in CRE-expressing arabidopsis plants -- A developmentally regulated cre-lox system to generate marker-free transgenic Brassica napus plants -- Exploiting multisite gateway and pENFRUIT plasmid collection for fruit genetic engineering -- A one-time inducible transposon to create knockout mutants in rice -- Marker-free gene targeting by recombinase-mediated cassette exchange -- Targeting DNA to a previously integrated transgenic locus using zinc finger nucleases -- Double-strand break-induced targeted mutagenesis in plants -- Combinatorial genetic transformation of cereals and the creation of metabolic libraries for the carotenoid pathway -- Production of a his-tagged canecystatin in transgenic sugarcane -- Plastid transformation as an expression tool for plant-derived biopharmaceuticals -- Use of a callus-specific selection system to develop transgenic rice seed accumulating a high level of recombinant protein -- How to grow transgenic arabidopsis in the field.…”
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75“…Plums (Prunus domestica); red currants (Ribes rubrum); black currants (Ribes nigrum); gooseberries (Ribes uva-crispa); sour cherries (Prunus cerasus); pumpkins (Cuccurbita spp.) are sources for valuable fruit- and berry-juice and cider production. …”
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76por Janakiev, Tamara, Dimkić, Ivica, Unković, Nikola, Ljaljević Grbić, Milica, Opsenica, Dejan, Gašić, Uroš, Stanković, Slaviša, Berić, Tanja“…European plum (Prunus domestica L.) is a significant commercial crop in Serbia in terms of total fruit production, and is traditionally processed into slivovitz brandy. …”
Publicado 2019
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77por Sidorova, Tatiana, Miroshnichenko, Dmitry, Kirov, Ilya, Pushin, Alexander, Dolgov, Sergey“….) × (P. cerasifera Ehrh.)] was combined with cv. “Startovaya” (Prunus domestica L.) as a scion. Transgenic plum lines of both cultivars were transformed with a PPV-coat protein (CP)-derived intron-separate hairpin-RNA construct and displayed substantial viral resistance. …”
Publicado 2021
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78por Hong, Yili, Wang, Zening, Barrow, Colin J., Dunshea, Frank R., Suleria, Hafiz A. R.“…Stone fruits, including peach (Prunus persica L.), nectarine (Prunus nucipersica L.), plum (Prunus domestica L.) and apricot (Prunus armeniaca L.) are common commercial fruits in the market. …”
Publicado 2021
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79“…Atherosclerosis is recognized as a primary underlying cause of CVD resulting from oxidative stress, chronic inflammation, and excess low-density lipoprotein cholesterol (LDL). Prunes (Prunus domestica L.) are a nutritious food with components associated with improved cardiovascular health, including soluble fiber and polyphenolic compounds. …”
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80por Mahmoudi, Roghayeh, Razavi, Farhang, Rabiei, Vali, Palou, Lluís, Gohari, Gholamreza“…BACKGROUND: Plum (Prunus domestica L.) has a short shelf-life period due to its high respiration rate and is sensitive to low storage temperatures, which can lead to the appearance of chilling injury symptoms. …”
Publicado 2022
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