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Journal articles on the topic 'Eupatorina'

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1

Sanchez E, Garcia, CB Ramirez Lopez, REN del Rio Torres, and MM Martinez Pacheco. "A revision of Eupatorium (Compositae: Eupatorieae) from Michoacan." Phyton 80, no. 1 (2011): 139–46. http://dx.doi.org/10.32604/phyton.2011.80.139.

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2

Wollenweber, Eckhard, Marion Dörr, Matthias Beyer, and Edward Schilling. "External Flavonoids of 12 Species of North American Eupatorieae (Asteraceae)." Zeitschrift für Naturforschung C 51, no. 11-12 (1996): 893–96. http://dx.doi.org/10.1515/znc-1996-11-1219.

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Abstract The flavonoid aglycones excreted by and deposited on aerial parts of 12 species of tribe Eupatorieae, including 10 species of Eupatorium (narrowly defined), Conoclinium coelestinum, and Brickellia eupatorioides, have been analyzed. The flavonoid pattern of Eupatorium is dominated by 6-O-methylated flavones, and there are relatively few differences between species including those of section Verticillata. In contrast, both Conoclinium and Brickellia were found to have significantly different flavonoid patterns. In Conoclinium, this included more highly O-methylated flavones, including t
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3

Turner, B. L. "Two new species of Eupatorium (Asteraceae: Eupatorieae) from Chiapas, México." Phytologia. 69 (1990): 122–24. http://dx.doi.org/10.5962/bhl.part.5178.

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4

Torres-Colin, Leticia, and Jose Luis Villaseñor. "Eupatorium guiengolense (Asteraceae: Eupatorieae), una nueva especie de Oaxaca, México." Acta Botanica Mexicana, no. 23 (June 1, 1993): 47. http://dx.doi.org/10.21829/abm23.1993.672.

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Colectas intensivas en el Distrito de Tehuantepec, Oaxaca, llevadas a cabo por el Herbario Nacional, dieron como resultado el descubrimiento de una especie nueva de Eupatorium. Esta especie nueva es descrita e ilustrada; se discuten sus afinidades con E. ovaliflorum y se proporciona una clave para su diferenciación.
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5

CHRIST, ANDERSON LUIZ, and MARA REJANE RITTER. "TYPIFICATIONS IN CHROMOLAENA AND PRAXELIS (ASTERACEAE: EUPATORIEAE)." Phytotaxa 362, no. 1 (2018): 112. http://dx.doi.org/10.11646/phytotaxa.362.1.10.

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The genera Chromolaena Candolle (1836: 133) and Praxelis Cassini (1826: 261) (Asteraceae: Eupatorieae) were both segregated from Eupatorium Linnaeus (1753: 836) in 1970 (King & Robinson 1970a, 1970b). Despite several taxonomic studies (including new combinations and typifications) since then, there are still countless names that need to be typified. As a result of our ongoing taxonomic treatment of both genera in the state of Rio Grande do Sul, Brazil, we propose here five lectotypes and one neotype in Chromolaena and one lectotype in Praxelis.
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6

Amatya, Sajan, and Sarbajna M. Tuladhar. "Eupatoric Acid: A Novel Triterpene from Eupatorium odoratum L. (Asteraceae)." Zeitschrift für Naturforschung B 60, no. 9 (2005): 1006–11. http://dx.doi.org/10.1515/znb-2005-0916.

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Phytochemical studies on the petroleum ether extract of the roots of Eupatorium odoratum have resulted in the isolation of a novel triterpene, 3β -hydroxy-28-carboxyolean-12-ene (1) along with seven known compounds - poriferasterol (2), octadecane (3), butyrospermol acetate (4), bis(2- ethylhexyl)phthalate (5), chrysophanol (6), physcion (7) and palmitic acid (8). Novel compound 1 is designated as eupatoric acid. Compounds 2 - 7 were reported here for the first time from this plant. Palmitic acid (8) was also isolated for the first time from this root. The structure of the novel compound was e
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7

OH, Sang-Hun. "A taxonomic note of Ageratina altissima and Eupatorium rugosum (Asteraceae: Eupatorieae)." Korean Journal of Plant Taxonomy 49, no. 3 (2019): 261–64. http://dx.doi.org/10.11110/kjpt.2019.49.3.261.

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8

Skvarla, J. J., J. R. Rowley, W. F. Chissoe, and P. Folley. "The common occurrence of incompletely developed pollen of Eupatorium (Compositae: Eupatorieae)." Plant Systematics and Evolution 243, no. 1-2 (2003): 1–11. http://dx.doi.org/10.1007/s00606-003-0035-9.

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9

Grossi, Mariana A., Diego G. Gutiérrez, Gonzalo J. Marquéz, and María Luján Luna. "Caracteres florales y palinológicos en Acanthostyles (Asteraceae, Eupatorieae) y su relación con la polinización." Boletín de la Sociedad Argentina de Botánica 52, no. 1 (2017): 107–19. http://dx.doi.org/10.31055/1851.2372.v52.n1.16913.

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La polinización por el viento en la familia Asteraceae se encuentra documentada en unas pocas tribus. Particularmente en Eupatorieae, sólo se ha reportado aparente anemofilia en 10 especies pertenecientes a los géneros Critonia, Decachaeta, Eupatorium, Koanophyllon y Neohintonia, la mayoría de las cuales crece en América del Norte y Central, con sólo dos especies que alcanzan América del sur. El género Acanthostyles incluye una única especie, Acanthostyles buniifolius, la cual se encuentra ampliamente distribuida en el sur de América del Sur. Esta especie presenta características que sugieren
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10

Parvez, Masood, Muhammad Riaz, and Abdul Malik. "Eupatorin." Acta Crystallographica Section E Structure Reports Online 57, no. 3 (2001): o289—o291. http://dx.doi.org/10.1107/s1600536801003609.

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11

Шукюрова, А. С., Т. А. Сулейманов, and Ариель Мопия Фуби Мириам. "SPECTROPHOTOMETRIC QUANTITATIVE DETERMINATION OF FLAVONOIDS AGRIMONIA EUPATORIA L. FROM FLORA OF AZERBAIJAN." Farmaciâ Kazahstana, no. 2 (July 7, 2021): 60–62. http://dx.doi.org/10.53511/pharmkaz.2021.81.78.015.

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Целью настоящей работы явилось спектрофото метрическое количественное определение флавоноидов A. eupatoria L. из флоры Азербайджана.В результате было выявлено, что трава A. eupatoria L., обладающая большими запасами сырья, произрастающая на территории Азербайджана, содержит 0,41% флавоноидов. The purpose of work was spectrophotometric quantitative determination of fiavonoids A. eupatoria L. from fiora of Azerbaijan.As a result, it was revealed that the herb A. eupatoria L., having large stocks of raw materials, growing in the territory of Azerbaijan, contains 0.41% fiavonoids.
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12

IAMONICO, DUILIO. "Agrimonia eupatoria subsp. major stat. nov. (Rosaceae) and notes on the Agrimonia eupatoria aggregate." Phytotaxa 298, no. 2 (2017): 165. http://dx.doi.org/10.11646/phytotaxa.298.2.6.

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The name Agrimonia eupatoria subsp. major stat. nov. (Rosaceae) is proposed. A lectoptype and isolectotype are proposed for the Boissier’s basionym on the basis of the examination of type materials and other specimens. For the nomenclatural purposes the names A. graeca (nom. inval. according to the Art. 36.1c of the ICN), A. eupatoria sensu stricto (lectotype at LINN), A. eupatoria subsp. grandis (neotype at FI, designated in this paper), “A. eupatoria var. grandis” by Vollmann (isonym, Art. 6.3 Notes2 of the ICN) and “A. grandis” by Dobroczajeva (isonym, Art. 6.3 Notes2 of the ICN) are also d
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13

Abd Razak, Nursyamirah, Swee Keong Yeap, Noorjahan Banu Alitheen, et al. "Eupatorin Suppressed Tumor Progression and Enhanced Immunity in a 4T1 Murine Breast Cancer Model." Integrative Cancer Therapies 19 (January 2020): 153473542093562. http://dx.doi.org/10.1177/1534735420935625.

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Eupatorin is a polymethoxy flavone extracted from Orthosiphon stamineus and was reported to exhibit cytotoxic effects on several cancer cell lines. However, its effect as an anti–breast cancer agent in vivo has yet to be determined. This study aims to elucidate the potential of eupatorin as an anti–breast cancer agent in vivo using 4T1 challenged BALB/c mice model. In this article, BALB/c mice (20-22 g) challenged with 4T1 cells were treated with 5 mg/kg or 20 mg/kg eupatorin, while the untreated and healthy mice were fed with olive oil (vehicle) via oral gavage. After 28 days of experiment, t
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14

Miller, Yuliya, Olga Golub, and Karina Zakharova. "Application of the Agrimonia eupatoria L. Extract for the Kvases Production." Food Industry 5, no. 3 (2020): 35–43. http://dx.doi.org/10.29141/2500-1922-2020-5-3-4.

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The article concerns the research of the herb Common Agrimony (Agrimonia eupatoria L.) use in the kvass manufacture, because the plant has a high content of flavoring and biologically active substances (flavonoids, tannins, arbutin, etc.). Researchers used standard, adopted in the brewing and soft drinks industry test methods and methods of processing obtained results. To produce kvass with the best quality characteristics, a man has to use Agrimonia eupatoria L. extract. In order to obtain this extract with the maximum amount of flavoring and biologically active substances (polyphenolic subst
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15

Li, Luya, Yuting Chen, Xue Feng, et al. "Identification of Metabolites of Eupatorin in Vivo and in Vitro Based on UHPLC-Q-TOF-MS/MS." Molecules 24, no. 14 (2019): 2658. http://dx.doi.org/10.3390/molecules24142658.

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Eupatorin is the major bioactive component of Java tea (Orthosiphon stamineus), exhibiting strong anticancer and anti-inflammatory activities. However, no research on the metabolism of eupatorin has been reported to date. In the present study, ultra-high-performance liquid chromatography coupled with hybrid triple quadrupole time-of-flight mass spectrometry (UHPLC-Q-TOF-MS) combined with an efficient online data acquisition and a multiple data processing method were developed for metabolite identification in vivo (rat plasma, bile, urine and feces) and in vitro (rat liver microsomes and intest
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16

Ito, Motomi, Kuniaki Watanabe, Yoko Kita, Takayuki Kawahara, DJ Crawford, and Tetsukazu Yahara. "Phylogeny and Phytogeography of Eupatorium (Eupatorieae, Asteraceae): Insights from Sequence Data of the nrDNA ITS Regions and cpDNA RFLP." Journal of Plant Research 113, no. 1 (2000): 79–89. http://dx.doi.org/10.1007/pl00013913.

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17

Juchniewicz, Ludmiła, and Konstanty Pilecki. "„Jest takie miasto – Eupatoria...”." Awazymyz. Pismo historyczno-społeczno-kulturalne Karaimów, no. 3 (36) (September 30, 2012): 18–19. http://dx.doi.org/10.33229/az.603.

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18

Vaidya, Geeta Shrestha, and Nabin Bhattarai. "EFFICACY OF INVASIVE GREEN MANURES AND MYCORRHIZA ON GROWTH AND YIELD OF DIFFERENT LEGUMES CROPS AND STUDY THEIR ANTIMICROBIAL PROPERTIES." Scientific World 12, no. 12 (2015): 65–69. http://dx.doi.org/10.3126/sw.v12i12.13600.

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Application of the invasive green manure (locally available Lantana camara, Eupatorium adenophorum) is an essential means to maintain soil fertility, soil structure and stimulate biological activities extensively. In this present study field trial of Lentil and Rajma were conducted in Kosebali Divison of Rampur, Chitwan district. Mycorrhiza was isolated from agricultural soil by sugar decantation method and mass production with the help of onion plant. Leaves of Lantana camara and Eupatorium adenophorum were collected and shed dried and grinded on powdered form. The treatments with green manur
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19

Ghobadi Pour, Mozhgan, Naser Mirazi, Shirin Moradkhani, Mahmoud Rafieian-kopaei, and Mohammad Rahimi-Madiseh. "A comprehensive review on phytochemical, pharmacological and therapeutic properties of Agrimonia eupatoria L." Journal of Herbmed Pharmacology 10, no. 1 (2020): 14–30. http://dx.doi.org/10.34172/jhp.2021.02.

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Agrimonia eupatoria is a perennial herb belonging to the Rosaceae family that all its parts are used to treat various diseases. In this article, we aimed to present a comprehensive review on the phytochemical, pharmacological, and therapeutic effects of this plant. We searched various databases and summarized the data documented in literature from 1976 to 2020. Agrimonia eupatoria has effects on various kinds of cancer, oxidative stress, diabetes mellitus, hepatitis B, and liver damage. It also has anti-adhesive, antibacterial, antimicrobial, and wound healing properties. It induces nitric oxi
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20

Edgar, J. A., H. J. Lin, C. R. Kumana, and M. M. T. Ng. "Pyrrolizidine Alkaloid Composition of Three Chinese Medicinal Herbs, Eupatorium cannabinum, E. japonicum and Crotalaria assamica." American Journal of Chinese Medicine 20, no. 03n04 (1992): 281–88. http://dx.doi.org/10.1142/s0192415x92000291.

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The pyrrolizidine alkaloid composition of three Chinese herbs, "pei lan", "cheng gan cao" and "zi xiao rong" identified respectively as Eupatorium cannabinum, Eupatorium japonicum (Compositae) and Crotalaria assamica (Leguminosae), were studied by fast atom bombardment mass spectrometry and gas chromatography-electron impact mass spectrometry. Viridiflorine, cynaustraline, amabiline, supinine, echinatine, rinderine and isomers of these alkaloids were found in the Eupatorium species. Monocrotaline was the only pyrrolizidine alkaloid detected in the Crotalaria species.
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21

Nan, Guanjun, Lina Zhang, Zhengzheng Liu та ін. "Quantitative Determination of p-Cymene, Thymol, Neryl Acetate, and β-Caryophyllene in Different Growth Periods and Parts of Eupatorium fortunei Turcz. by GC-MS/MS". Journal of Analytical Methods in Chemistry 2021 (2 серпня 2021): 1–7. http://dx.doi.org/10.1155/2021/2174667.

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Eupatorium fortunei Turcz. is a widely used Chinese herbal medicine in China. In this study, a gas chromatography-triple quadrupole mass spectrometry (GC-MS/MS) method was developed and validated to simultaneously determine the contents of p-cymene, thymol, neryl acetate, and β-caryophyllene in roots, stems, and leaves of Eupatorium fortunei Turcz. harvested at different growth periods. All four constituents could be detected in leaves, three could be detected in stems except β-caryophyllene, and only thymol could be detected in roots. The order of the total contents of four constituents in di
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22

Vollmar, Angelika, Wolfram Schäfer, and Hildebert Wagner. "Immunologically active polysaccharides of eupatorium cannabinum and eupatorium perfoliatum." Phytochemistry 25, no. 2 (1986): 377–81. http://dx.doi.org/10.1016/s0031-9422(00)85484-9.

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23

Gurita (Ciobotaru), Valentina Gabriela, Ioana Zinuca Pavel, Marioara Poenaru, et al. "Assessment of the Antioxidant Effect of Ethanolic Extracts Obtained from Agrimonia eupatoria L., Filipendula ulmaria (L.) Maxim. and Filipendula vulgaris Moench Collected from the Estern Part of Romania." Revista de Chimie 69, no. 9 (2018): 2385–90. http://dx.doi.org/10.37358/rc.18.9.6539.

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Numerous plants are currently used for both their curative and preventive effects in a wide range of pathologies. They possess multiple beneficial effects, including the well-known antioxidant capacity. Agrimonia eupatoria L. and Filipendula spp., from the Rosaceae family have emerged as a potential source of phenolic constituents, showing antioxidant activities. The aim of this study was to obtain ethanolic extracts from Agrimonia eupatoria L., Filipendula ulmaria (L.) Maxim. and Filipendula vulgaris Moench. collected from the West part of Romania and to determine their antioxidant capacity.
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24

Zhao, Xiang-Lan, Mo-Yin Chan, C. R. Kumana, and C. W. Ogle. "A Comparative Study on the Pyrrolizidine Alkaloid Content and the Pattern of Hepatic Pyrrolic Metabolite Accumulation in Mice Given Extracts of Eupatorium Plant Species, Crotalaria Assamica and an Indian Herbal Mixture." American Journal of Chinese Medicine 15, no. 01n02 (1987): 59–67. http://dx.doi.org/10.1142/s0192415x87000084.

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Plants belonging to the Eupatorium species, E. japonicum Thunb, E. fortunei and E. chinense, were found to contain very low concentrations of pyrrolizidine alkaloid compared with a known hepatotoxic Indian herbal mixture and Crotalaria assamica. High concentrations of pyrrolic metabolite were detected in lievres of mice given a single oral dose of extracts of Indian herbal mixture or C. assamica but not in the case of the Eupatorium species. Also, accumulation of pyrrole metabolites was not demonstrated with chronic administration of decoctions prepared from herbs of the Eupatorium species.
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25

Ghedira, K., and P. Goetz. "Agrimonia eupatoria L. (Rosaceae) : Aigremoine." Phytothérapie 13, no. 4 (2015): 250–54. http://dx.doi.org/10.1007/s10298-015-0967-6.

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26

Chan, Mo-Yin, Xiang-Lan Zhao, and C. W. Ogle. "A Comparative Study on the Hepatic Toxicity and Metabolism of Crotalaria Assamica and Eupatorium Species." American Journal of Chinese Medicine 17, no. 03n04 (1989): 165–70. http://dx.doi.org/10.1142/s0192415x89000255.

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The oral LD50 of Crotalaria assamica, which contains mainly monocrotaline, was found to be 154 mg/kg in mice. Neither liver necrosis nor morbidity was demonstrated with Eupatorium extract at a dose level of 144 mg/kg, which was equivalent to the LD20 of Crotalaria. Pretreatment with phenobarbitone enhanced the toxicity of both plant extracts in mice. In in vitro studies, "metabolic pyrrole" was formed by incubating Eupatorium japonicum extracts with liver microsomes. The rate of "pyrrole" formation was similar to that of Crotalaria extract and pure monocrotaline alkaloid, but was much slower t
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27

Feng, Rui, Luya Li, Xiaowei Zhang, et al. "Assessment of a developed HPLC-MS/MS approach for determining plasma eupatorin in rats and its application in pharmacokinetics analysis." RSC Advances 10, no. 53 (2020): 32020–26. http://dx.doi.org/10.1039/d0ra03350b.

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28

Maas, Mareike, and Andreas Hensel. "Eupatorium perfoliatum L." Zeitschrift für Phytotherapie 29, no. 05 (2008): 249–54. http://dx.doi.org/10.1055/s-0028-1102730.

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29

Woerdenbag, H. J. "Eupatorium cannabinum L." Pharmaceutisch Weekblad Scientific Edition 8, no. 5 (1986): 245–51. http://dx.doi.org/10.1007/bf01960068.

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30

Firkowicz, Nina. "Dostłar w Eupatorii." Awazymyz. Pismo historyczno-społeczno-kulturalne Karaimów 30, no. 3-4 (64-5) (2019): 52–55. http://dx.doi.org/10.33229/az.864.

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31

Macdonald, Gregory E., Barry J. Brecke, and Donn G. Shilling. "Factors Affecting Germination of Dogfennel (Eupatorium capillifolium) and Yankeeweed (Eupatorium compositifolium)." Weed Science 40, no. 3 (1992): 424–28. http://dx.doi.org/10.1017/s0043174500051857.

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Laboratory studies were conducted to determine the effect of various factors on germination of dogfennel and yankeeweed. Dogfennel seed were found to be strongly photoblastic with no germination in the dark. Yankeeweed seed were moderately photoblastic, with 12% germination occurring in the absence of light Germination for both species increased in response to red light (650 nm), indicating phytochrome regulation. At the soil surface, dogfennel and yankeeweed emergence was 40 and 48%, respectively, but declined rapidly with increasing soil depths where dogfennel germination was lower than that
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32

Ortega, A., F. J. Morales, and M. Salmón. "Kaurenic acid derivatives from Stevia eupatoria." Phytochemistry 24, no. 8 (1985): 1850–52. http://dx.doi.org/10.1016/s0031-9422(00)82570-4.

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33

Bilia, A. R., E. Palme, A. Marsili, L. Pistelli, and I. Morelli. "A flavonol glycoside from Agrimonia eupatoria." Phytochemistry 32, no. 4 (1993): 1078–79. http://dx.doi.org/10.1016/0031-9422(93)85262-p.

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34

Gaire, R., KR Dahal, and LP Amgain. "Effect of different mulching materials on weed dynamics and yield of direct seeded rice in Chitwan, Nepal." Agronomy Journal of Nepal 3 (October 24, 2013): 73–81. http://dx.doi.org/10.3126/ajn.v3i0.9008.

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An experiment was carried out at farmers' field to compare the effects of live mulches and herbicide on weed growth and dynamics, yield, and economic performance of direct seeded rice under humid sub-tropical condition at Phulbari, Chitwan in 2009. The experiment was conducted in Randomized Complete Block Design with eight treatments and three replications. The treatments consisted of i) control, ii) three hand weeding, iii) herbicide application (bispyribac sodium @ 80 ml/ha) + one hand weeding, iv) wheat straw mulch @ 5t/ha + one hand weeding, v) Eupatorium mulch @ 5t/ha + one hand weeding,
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35

A. Clement, Jason, and Timothy J. Willis. "Sesquiterpenoids from Eupatorium Serotinum." Natural Products Journal 6, no. 2 (2016): 103–7. http://dx.doi.org/10.2174/2210315506666160218221456.

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36

Jakupovic, J., E. Ellmauerer, F. Bohlmann, A. Whittemori, and D. Gage. "Diterpenes from eupatorium turbinatum." Phytochemistry 25, no. 11 (1986): 2677–78. http://dx.doi.org/10.1016/s0031-9422(00)84541-0.

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37

Herz, Werner. "Chemistry of the eupatoriinae." Biochemical Systematics and Ecology 29, no. 11 (2001): 1115–37. http://dx.doi.org/10.1016/s0305-1978(01)00056-4.

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38

Turner, Billie L. "Taxonomy ofCarminatia (Asteraceae, Eupatorieae)." Plant Systematics and Evolution 160, no. 3-4 (1988): 169–79. http://dx.doi.org/10.1007/bf00936044.

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39

Hirschmann, Guillermo Schmeda, and Esteban Ferro B. "Indigo from Eupatorium laeve." Journal of Ethnopharmacology 26, no. 1 (1989): 93–94. http://dx.doi.org/10.1016/0378-8741(89)90115-3.

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40

Bhattarai, Nabin, Geeta Shrestha Vaidya, and Bikash Baral. "Effect of mycorrhizal soil and green manures on growth of Ipil Ipil (Leucaena diversifolia L.)." Scientific World 10, no. 10 (2012): 66–69. http://dx.doi.org/10.3126/sw.v10i10.6864.

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A pot trial research work of powder of Lantana camara L., Eupatorium adenophorum Spreng. and mycorrhizal soil on growth of Ipil Ipil (Leucaena diversifolia L.) fodder plant was conducted. Fifty gram of each green manure in powder form and mycorrhizal soil were used in each pot. Including control, altogether four treatments were made and each has fifty replicates. The treatment with green manure from Lantana camara showed maximum growth, survival and germination of the plants with maximum average length of 21.25 cm and 37.96 cm respectively, followed by Eupatorium adenophorum (16.51 cm and 23.4
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41

Grossi, Mariana Andrea, LILIANA KATINAS, and JIMI N. NAKAJIMA. "Criscianthus, a new genus of Eupatorieae (Asteraceae) with a key to members of the tribe in Africa." Phytotaxa 141, no. 1 (2013): 25. http://dx.doi.org/10.11646/phytotaxa.141.1.2.

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Stomatanthes zambiensis is segregated from the African genus Stomatanthes and raised as the only species of the new genus Criscianthus (Eupatorieae, Asteraceae). Criscianthus zambiensis is characterized by its verticillate phyllotaxy with three leaves per node, phyllaries with caudate apex, and an exclusive type of hair in its cypsela. A full description of the genus and its species, a morphological analysis, photographs, illustrations, and a distribution map are provided. A key to native and alien species of the tribe Eupatorieae in Africa is included.
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42

Juchniewicz, Ludmiła, and Mariola Abkowicz. "Anna Bałdży – słowik Eupatorii." Awazymyz. Pismo historyczno-społeczno-kulturalne Karaimów, no. 1 (38) (March 30, 2013): 14–15. http://dx.doi.org/10.33229/az.634.

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43

Prevete, Kelly J., R. Thomas Fernandez, and William B. Miller. "598 Drought Stress Affects Carbohydrate Partitioning in Three Species of Herbaceous Perennials." HortScience 34, no. 3 (1999): 550B—550. http://dx.doi.org/10.21273/hortsci.34.3.550b.

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Drought stress durations of 2, 4, and 6 days were imposed on Boltonia asteroides `Snowbank', Eupatorium rugosum, and Rudbeckia triloba to determine the effects on carbohydrate partitioning in the plant. Drought stress was imposed on 19 Sept. 1997 on 1.9-L containerized plants. Plants were planted in the field the day following release from stress. Crown and leaf samples of the three species were collected 21, 23, 25 Sept. 1997 and 30 Jan. and 4 May 1998 and were analyzed for low molecular weight sugars and fructans. The species differed in the time it took for longer chain fructans to break do
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Epp, Gary A. "The seed bank of Eupatorium odoratum along a successional gradient in a tropical rain forest in Ghana." Journal of Tropical Ecology 3, no. 2 (1987): 139–49. http://dx.doi.org/10.1017/s0266467400001887.

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ABSTRACTThe germinable seed bank of the colonizing weed Eupatorium odoratum was studied at the University of Ghana's Agricultural Research Station, near Kade. Five sites representing different successional stages were selected: a closed-canopy forest; intermittent-canopy forest; secondary forest; agricultural land; and a burnt forest. Twenty-five soil samples (each 500 cm3; 10×10×5 cm) were taken at random in each site, to be used for germination experiments. The secondary forest site had significantly more seeds of Eupatorium odoratum (8428 seeds per m2) than any of the other four sites. In t
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45

Iamonico, Duilio. "Alien taxa of the tribe Senecioneae (Asteraceae) in Italy: a nomenclatural synopsis." Hacquetia 16, no. 2 (2017): 281–92. http://dx.doi.org/10.1515/hacq-2017-0005.

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AbstractA nomenclatural synopsis of the alien species belonging to the tribe Senecioneae currently recorded in Italy (8 species) is presented. The occurrence at the regional level, as well as the level of naturalization and ecological notes for each taxon are provided. A diagnostic key of the non-native Italian species is also given. The names Cineraria petasitis (now Senecio petasitis), Delairea odorata, Eupatorium auriculatum (now Senecio deltoideus), E. fulvum, Mikania ternifolia var. senecioides, Senecio andryaloides, S. angulatus, and S. leucanthemifolius subsp. vernalis are typified on s
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Turner, B. L. "Taxonomy of Carphochaete (Asteraceae-Eupatorieae)." Phytologia. 64 (1987): 145–62. http://dx.doi.org/10.5962/bhl.part.17461.

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Robinson, Harold. "Additions to Neocuatrecasia (Eupatorieae: Asteraceae)." Novon 12, no. 3 (2002): 388. http://dx.doi.org/10.2307/3393086.

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Phan, Minh Giang, Vu Minh Trang, Do Thi Viet Huong, Susumu Kawakami, and Hideaki Otsuka. "Thymol Derivatives from Eupatorium fortunei." Records of Natural Products 13, no. 5 (2019): 434–39. http://dx.doi.org/10.25135/rnp.122.18.11.1032.

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Wang, Wen-Jing, Lei Wang, Zhong Liu, et al. "Antiviral benzofurans from Eupatorium chinense." Phytochemistry 122 (February 2016): 238–45. http://dx.doi.org/10.1016/j.phytochem.2015.11.013.

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González, Antonio G., Jaime Bermejo Barrera, Angel C. Yanes Hernández, Francisco Estévez Rosas, and Xorge A. Dominguez. "Eudesmane sesquiterpenes from Eupatorium Quadrangulare." Phytochemistry 24, no. 8 (1985): 1847–48. http://dx.doi.org/10.1016/s0031-9422(00)82568-6.

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