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Journal articles on the topic 'Z. macrophylum'

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1

E., Kosh-Komba, Aba Toumnou L., Zinga I., and Touckia I. "Phytochemical Screening, Antifungal and Antibacterial Effect of Zanthoxylum zanthoxyloides and Zanthoxylum macrophylum Used in Traditional Medicine in Yamboro (Central African Republic)." European Journal of Medicinal Plants 19, no. 3 (2017): 1–11. https://doi.org/10.9734/EJMP/2017/33304.

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The knowledge of traditional medicine has always guided the search for new cures. <em>Zanthoxylum zanthoxyloides</em> and <em>Zanthoxylum macrophylum</em>, (Rutaceae) are used as medicinal plants in Central African Republic for bacteria and fungi treatment<strong>. </strong>The aim of this study is to investigate <em>in vitro</em> antibacterial and antifungal activities of water-alcohol extract of leave, bark and root of <em>Z. zanthoxyloides</em> and <em>Z. macrophylum </em>and the phytochemistry group of some secondary metabolic<em>.</em> The results of analysis of variance on the antibacter
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2

RASINGAM, LADAN, and K. KARTHIGEYAN. "Ziziphus ridleyana, a new name for Ziziphus macrophylla Ridl. (Rhamnaceae)." Phytotaxa 454, no. 1 (2020): 71–72. http://dx.doi.org/10.11646/phytotaxa.454.1.7.

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The genus Ziziphus Miller (1754: 1547) is one of the economically important genera in the family Rhamnaceae distributed in the tropical and subtropical regions (Mabberley 2008). About 135 species are reported from the world, and most of the species are confined to Asia and America. A few of them extend to the Pacific Islands and Australia (Bhandari &amp; Bhansali 2000; Ara et al. 2008). The genus is characterized by its 3 or 5-nerved leaves, often with stipular spines and drupaceous fruits with a solitary pyrene (Ara et al. 2008). Ziziphus macrophylla Ridley (1931: 494) was described by H.N. R
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3

Radulović, Niko S., Polina D. Blagojević, Danielle Skropeta, Aleksandra R. Zarubica, Bojan K. Zlatković, and Radosav M. Palić. "Misidentification of Tansy, Tanacetum Macrophyllum, as Yarrow, Achillea Grandifolia: A Health Risk or Benefit?" Natural Product Communications 5, no. 1 (2010): 1934578X1000500. http://dx.doi.org/10.1177/1934578x1000500129.

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Tansy, Tanacetum macrophyllum (Waldst. &amp; Kit.) Sch. Bip., is often misidentified by herb collectors as yarrow, Achillea grandifolia Friv. With the former, cases of poisoning induced by its ingestion are well documented, but the latter is widely used for ethnopharmacological purposes. The aim of this study was to estimate, based on the volatile metabolite profiles of the two species, the potential health risk connected with their misidentification. GC and GC-MS analysis of the essential oils hydrodistilled using a Clevenger-type apparatus from A. grandifolia, T. macrophyllum, and two plant
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4

Alphonse, Ngandjui, Ngaha Njila Marie, Kenmogne Hubert, et al. "Evaluation of the fertility activity of the aqueous leaves extract of Zanthoxylum macrophylla (Rutaceae) on male rats." Journal of Phytopharmacology 6, no. 5 (2017): 277–81. http://dx.doi.org/10.31254/phyto.2017.6504.

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Zanthoxylum macrophylla, one of the useful medicinal plants in Cameroon, was scientifically conducted to find its aqueous extract leaves effect in some fertility parameters of male rats. 24 rats were randomly divided into 4 groups: Control, A, B and C group of six animals each. They received respectively 0, 100, 200 and 400 mg/kg body weight of aqueous extract of Z. macrophylla leaves on daily basis for 14 days. There were no significant changes on the body weight of treated animals. However, the weight of testis and the Daily Sperm Production respectively increased at dose of 200 mg/kg (P&lt;
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5

Contreras, Ryan N., and John M. Ruter. "Genome Size Estimates and Chromosome Numbers of Callicarpa L. (Lamiaceae)." HortScience 46, no. 4 (2011): 567–70. http://dx.doi.org/10.21273/hortsci.46.4.567.

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Genome size estimates and chromosome number information can be useful for studying the evolution or taxonomy of a group and also can be useful for plant breeders in predicting cross-compatibility. Callicarpa L. is a group of ≈140 species with nearly worldwide distribution. There are no estimates of genome size in the literature and the information on chromosome numbers is limited. Genome size estimates based on flow cytometry are reported here for 16 accessions of Callicarpa comprising 14 species in addition to chromosome counts on six species. Chromosome counts were conducted by staining meri
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6

Chiu, Jun-Ming, Lu-Yin Lin, Chao-Chi Tu, and Sheng-Sian Yang. "Synthesis of the cobalt sulfide hydrangea macrophylla for the energy storage electrode." Journal of Applied Electrochemistry 47, no. 3 (2017): 393–404. http://dx.doi.org/10.1007/s10800-016-1036-z.

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7

Hu, Xuemin, Yao Yin, and Tao He. "Plant regeneration from protoplasts of Gentiana macrophylla Pall. using agar-pool culture." Plant Cell, Tissue and Organ Culture (PCTOC) 121, no. 2 (2015): 345–51. http://dx.doi.org/10.1007/s11240-014-0705-z.

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8

Deiró, Ericlicia, Vera Vale, Heiter Boness, and Edson Marques. "Biological and phytochemical study of the leaves of Verbesina macrophylla (Cass.) S.F. Blake (Asteraceae)." Concilium 23, no. 23 (2023): 712–35. http://dx.doi.org/10.53660/clm-2666-23u61.

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Verbesina macrophylla is used in folk medicine to treat infections, inflammation and fever. This work aimed to evaluate the biological activity and phytochemistry of the species. Extracts in hexane, ethyl acetate and ethanol from the leaves of V. macrophylla revealed, using the microdilution method, activity against Gram positive bacteria (B. cereus, S. aureus, B. subtilis and M. luteus), with Inhibitory Concentration Minimum (MIC) between 500 µg/mL and 7.81 µg/mL. Fractionation of the extract in ethyl acetate resulted in 51 samples, all inactive for Gram-negatives. Four fractions showed activ
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9

Jiménez, Ares, Barbara Weigelt, Arnoldo Santos-Guerra, Juli Caujapé-Castells, José María Fernández-Palacios, and Elena Conti. "Surviving in isolation: genetic variation, bottlenecks and reproductive strategies in the Canarian endemic Limonium macrophyllum (Plumbaginaceae)." Genetica 145, no. 1 (2017): 91–104. http://dx.doi.org/10.1007/s10709-017-9948-z.

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10

Njoku, H. O., J. N. Ogbulie, and C. Nnubia. "Microbiological study of the traditional processing of African oil bean (Pentaclethra macrophylla Bentham) for ugba production." Food Microbiology 7, no. 1 (1990): 13–26. http://dx.doi.org/10.1016/0740-0020(90)90003-z.

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11

Nur Illiyin, M. R., J. M. N. Marikkar, M. Shuhaimi, B. Mahiran, and M. S. Miskandar. "A Comparison of the Thermo-Physical Behavior of Engkabang (Shorea macrophylla) Seed Fat–Canola Oil Blends and Lard." Journal of the American Oil Chemists' Society 90, no. 10 (2013): 1485–93. http://dx.doi.org/10.1007/s11746-013-2307-z.

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12

Hauser, S. "Effect of Acioa barteri, Cassia siamea, Flemingia macrophylla and Gmelina arborea leaves on germination and early development of maize and cassava." Agriculture, Ecosystems & Environment 45, no. 3-4 (1993): 263–73. http://dx.doi.org/10.1016/0167-8809(93)90075-z.

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13

Ghogue, Jean-Paul, Bonaventure Sonké, and Thomas L.P. Couvreur. "Taxonomic revision of the African genera Brieya and Piptostigma (Annonaceae)." Plant Ecology and Evolution 150, no. (2) (2017): 173–216. https://doi.org/10.5091/plecevo.2017.1137.

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<b>Background and aims</b> &ndash; Annonaceae are an important family in tropical rain forests of Africa. Here, we present a revision of the west-central African genus <i>Piptostigma</i> of the tribe Piptostigmateae. Previous molecular phylogenetic analyses of Piptostigmateae have revealed that the genus as currently circumscribed is paraphyletic. The aims of the article are: (1) to clarify the generic delimitation of the genus <i>Piptostigma</i>, especially in relation to its current polyphyletic delimitation; (2) to provide a new updated key to the genera of tribe Piptostigmateae; and (3) to
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14

Bak, SeongHwa, and Tae-Ho Han. "Evaluation of genetic diversity using simple sequence repeat markers and analysis of cross compatibility in hydrangeas." Horticulture, Environment, and Biotechnology, August 5, 2024. http://dx.doi.org/10.1007/s13580-024-00629-z.

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AbstractHydrangeas with large inflorescences are widely used as cut flowers and in floral arrangements. However, the genetic diversity of commercially grown hydrangeas has been limited owing to the breeding focus on popular species. Therefore, this study was conducted to suggest interspecific breeding strategies for expanding the genetic diversity in Hydrangea L. by evaluating genetic diversity in the seven main species collected in Korea and analyzing cross compatibility via intra- and interspecific hybridization. Interspecific diversity evaluation using simple sequence repeat markers resulte
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15

Xiang, Niyan, Tao Yuan, Shuo Liu, et al. "Chromosomal level genome assembly of medicinal plant Chrysosplenium macrophyllum." Scientific Data 12, no. 1 (2025). https://doi.org/10.1038/s41597-025-05546-z.

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Abstract Chrysosplenium macrophyllum Oliv., a perennial herb native to China, is widely used in traditional medicine for its notable therapeutic properties. However, the absence of a reference genome has constrained its full potential for research and application. This study presents the first chromosome-level de novo genome assembly of C. macrophyllum, constructed by integrating long reads from Oxford Nanopore Technologies (ONT), short reads from BGI, and Hi-C data. The final assembly spans 2.55 Gb, with a scaffold N50 of 93.38 Mb, and 83.70% of the genome has been assigned to 22 chromosomes.
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16

Yin, Yangyang, Huanhuan Fu, Fakai Mi, et al. "Genomic characterization of WRKY transcription factors related to secoiridoid biosynthesis in Gentiana macrophylla." BMC Plant Biology 24, no. 1 (2024). http://dx.doi.org/10.1186/s12870-024-04727-z.

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AbstractGentiana macrophylla is one of Chinese herbal medicines in which 4 kinds of iridoids or secoiridoids, such as loganic acid, sweroside, swertiamarin, and gentiopicroside, are identified as the dominant medicinal secondary metabolites. WRKY, as a large family of transcription factors (TFs), plays an important role in the synthesis of secondary metabolites in plants. Therefore, WRKY genes involved in the biosynthesis of secoiridoids in G. macrophylla were systematically studied. First, a comprehensive genome-wide analysis was performed, and 42 GmWRKY genes were identified, which were unev
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17

Nguyen, Huu-Hung, Kim-Ngoc Ha, Dinh-Long Huynh, et al. "Secondary Metabolites from Leaves of Bouea macrophylla." Chemistry of Natural Compounds, June 7, 2023. http://dx.doi.org/10.1007/s10600-023-04046-z.

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18

Tränkner, Conny, Kristina Günther, Peter Sahr, Frauke Engel, and Annette Hohe. "Targeted generation of polyploids in Hydrangea macrophylla through cross-based breeding." BMC Genetics 21, no. 1 (2020). http://dx.doi.org/10.1186/s12863-020-00954-z.

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Abstract Background Up to now, diploid and triploid cultivars were reported for the ornamental crop Hydrangea macrophylla. Especially, the origin of triploids and their crossing behaviors are unknown, but the underlying mechanisms are highly relevant for breeding polyploids. Results By screening a cultivar collection, we identified diploid, triploid, tetraploid and even aneuploid H. macrophylla varieties. The pollen viability of triploids and tetraploids was comparable to that of diploids. Systematic crosses with these cultivars resulted in viable diploid, triploid, tetraploid and aneuploid of
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19

Li, Renshan, Jianming Han, Liqiong Zhu, et al. "Does nitrogen fertilization impact nonstructural carbohydrate storage in evergreen Podocarpus macrophyllus saplings?" Journal of Forestry Research, July 6, 2020. http://dx.doi.org/10.1007/s11676-020-01181-z.

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20

Gu, Xiaohui, Lipan Zhou, Yang Pu, et al. "Genome-wide identification and transcriptional expression profiles of the transcription factor WRKY in Gentiana macrophylla." Molecular Biology Reports 52, no. 1 (2025). https://doi.org/10.1007/s11033-025-10452-z.

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21

Villa-Galaviz, Edith, Luis Abdala-Roberts, Javier Quinto, María José Campos-Navarrete, and Víctor Parra-Tabla. "Neighboring plants and core herbivores determine the importance of Swietenia macrophylla in the plant–herbivore network." Arthropod-Plant Interactions, August 16, 2022. http://dx.doi.org/10.1007/s11829-022-09906-z.

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22

Wang, Panpan, Lu Zou, Han Han, and Tong Zhang. "A simple and sensitive LC–MS/MS method for the determination of loganic acid in rat plasma and its pharmacokinetic analysis." Biomedical Chromatography, July 2, 2024. http://dx.doi.org/10.1002/bmc.5951.

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AbstractLoganic acid is an iridoid compound extracted from Gentianaceae plant Gentiana macrophylla Pall. It can effectively inhibit inflammation and tumor migration and has antioxidant activity. In this paper, we establish a simple, fast, sensitive and validated LC–MS method with the purpose of quantification of loganic acid in rat plasma with gliclazide as an internal standard (IS). Methanol was used to precipitate the protein in the plasma sample, and a C18 column (2.1 × 50 mm, 1.7 μm) was used for the separation of the target compound. Meanwhile, 0.1% formic acid water–methanol was employed
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23

Deghima, Amirouche, Nadjat Righi, Noelia Rosales-Conrado, et al. "Valorisation of the Green Waste Parts from Large-Leaved Buttercup (Ranunculus macrophyllus Desf.): Phenolic Profile and Health Promoting Effects Study." Waste and Biomass Valorization, November 20, 2020. http://dx.doi.org/10.1007/s12649-020-01310-z.

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24

Rodríguez-Morelos, Víctor H., Alejandra Soto-Estrada, Jesús Pérez-Moreno, Alicia Franco-Ramírez, and Pablo Díaz-Rivera. "Arbuscular mycorrhizal fungi associated with the rhizosphere of seedlings and mature trees of Swietenia macrophylla (Magnoliophyta: Meliaceae) in Los Tuxtlas, Veracruz, Mexico." Revista Chilena de Historia Natural 87, no. 1 (2014). http://dx.doi.org/10.1186/s40693-014-0009-z.

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25

Hegde, Manjunath, S. P. Nayak, and Narasimha Raghavendra. "Microwave-assisted extraction of Swietenia macrophylla fruit shell and its application in corrosion inhibition for mild steel in 0.5 M HCl pickling environment." Sādhanā 48, no. 1 (2023). http://dx.doi.org/10.1007/s12046-022-02066-z.

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