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Journal articles on the topic 'Thalictrum'

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1

Nekratova, Anna N., Nadezhda S. Zinner, and Anastasia V. Shchukina. "The genus Thalictrum species as promising medicinal plants of the Tomsk region (Western Siberia)." Acta Biologica Sibirica 7 (April 22, 2021): 87–92. http://dx.doi.org/10.3897/abs.7.e67078.

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The genus Thalictrum species (Ranunculaceae) are of interest for study as medicinal plants that are promising for expanding the gene pool and treating socially significant diseases. The data of the analysis of more than 100 geobotanical descriptions obtained in 2010-2017 were used to study the coenotic complexes of Thalictrum minus and Thalictrum simplex growing in Tomsk region and to determine their ecological-coenotic confinement. The aim of our research was to study the species of the genus Thalictrum growing in Tomsk region, their distribution and use in medicine, to investigate the coenot
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2

Nekratova, Anna N., Nadezhda S. Zinner, and Anastasia V. Shchukina. "The genus Thalictrum species as promising medicinal plants of the Tomsk region (Western Siberia)." Acta Biologica Sibirica 7 (April 22, 2021): 87–92. https://doi.org/10.3897/abs.7.e67078.

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The genus <em>Thalictrum</em> species (Ranunculaceae) are of interest for study as medicinal plants that are promising for expanding the gene pool and treating socially significant diseases. The data of the analysis of more than 100 geobotanical descriptions obtained in 2010-2017 were used to study the coenotic complexes of <em>Thalictrum minus</em> and <em>Thalictrum simplex</em> growing in Tomsk region and to determine their ecological-coenotic confinement. The aim of our research was to study the species of the genus <em>Thalictrum</em> growing in Tomsk region, their distribution and use in
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3

Denchev, Teodor, and Cvetomir Denchev. "Three Species of Entyloma (Entylomatales, Ustilaginomycotina) Newly Recorded from Bulgaria." Proceedings of the Bulgarian Academy of Sciences 75, no. 12 (2022): 1769–74. http://dx.doi.org/10.7546/crabs.2022.12.08.

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Three smut fungi are reported for the first time from Bulgaria: Entyloma fergussonii on Myosotis orbelica, E. pastinacae on Pastinaca sativa subsp. urens, and E. thalictri on Thalictrum minus, extending the known species of Entyloma to 11 in this country. Brief descriptions and illustrations are provided for the newly recorded smut fungi. Myosotis orbelica is a new host plant for Entyloma fergussonii.
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4

Buniak, V., O. Kutsela, V. Gniezdilova, V. Andriiv, and M. Gedzyk. "Introduction of meadow species of the genus Thalictrum L. in the dendrological park “Druzhba” in Precarpathian region." Journal of Native and Alien Plant Studies, no. 1 (December 28, 2021): 27–31. http://dx.doi.org/10.37555/2707-3114.1.2021.247353.

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The article presents a short issue on the distribution of Thalictrum L. in the flora o Precarpathian region. The introductional pecularities of Thalictrum flaum L., Thalictrum aquilegifolium L., Thalictrum minus L., та Thal- ictrum simplex L. on the collection sites of the dendrological park “Druzhba” are revealed. Examples of phenophases of ontogenesis of species in soil and climatic conditions of the dendropark, their adaptation to new growing conditions under the influence of cultivation and care of plants are given. It is shown how it affects the appearance of populations of all species, t
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5

Li, Jin-Yu, Lei Xie, and Liang-Qian Li. "A new species of Thalictrum (Ranunculaceae) from southern Tibet (Xizang), China." Phytotaxa 207, no. 3 (2015): 281. http://dx.doi.org/10.11646/phytotaxa.207.3.6.

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The new species Thalictrum austrotibeticum (Ranunculaceae) from southern Tibet (Xizang), China, is here described and illustrated. It occurs in forest margin and grassy slopes of several valleys of southern Xizang along the central Himalayas. This species is morphologically well differentiated from other Thalictrum species from south-west China, Bhutan, Nepal, and Northern India. From its floral characters, this species shows some relationship with Th. finetii. A key of Thalictrum species distributed in southern Xizang and adjacent areas of Bhutan, Nepal, and India is also provided.
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6

Allaberdiev, Farhod Khamraevich, and Maftuna Farhodovna Khamraeva. "THALICTRUM FLAVUM ALKALOIDS." Theoretical & Applied Science 110, no. 06 (2022): 384–86. http://dx.doi.org/10.15863/tas.2022.06.110.68.

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7

Zhuravel, U., Yu Konechnyi, A. Krvavych, and R. Konechna. "THALICTRUM FOETIDUM. ANALYTICAL REVIEW." Fitoterapia 3, no. 3 (2021): 61–67. http://dx.doi.org/10.33617/2522-9680-2021-3-61.

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Key words: Thalictrum foetidum, distribution, botanical description, biologically active substances, pharmacological action. The article presents the generalized results of the analysis of literature data on botanical description, distribution area, the content of biologically active compounds, pharmacological activity, and aspects of Thalictrum foetidum use in pharmacy and medicine. Prospects for pharmacognostic and pharmacological studies of the plant are established, based on the results of the analysis.
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8

ZENG, YOU-PAI, QIONG YUAN, and QIN-ER YANG. "Thalictrum minshanicum and T. pseudoramosum (Ranunculaceae), two new species from China." Phytotaxa 502, no. 2 (2021): 133–48. http://dx.doi.org/10.11646/phytotaxa.502.2.2.

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Thalictrum minshanicum and T. pseudoramosum (Ranunculaceae), two new species from southern Gansu and northwestern Sichuan, China, are illustrated and described. Thalictrum minshanicum is somewhat similar to T. brevisericeum in habit and in having puberulent stem and leaves, but differs by having conspicuously 3-lobate (vs. slightly 3-lobate) leaflets, glabrous (vs. puberulent abaxially) sepals, longer (ca. 7 mm vs. ca. 4 mm) and clavate (vs. oblanceolate-linear) filaments, conspicuous (vs. inconspicuous) stigmas, and persistent styles slightly recurved (vs. circinate) at apex. Thalictrum pseud
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9

Alhowiriny, Tawfeq, Michael Zemaitis, Fu-Tyan Lin, Jack Beal, and Paul Schiff. "Alkaloids of Thalictrum angustifolium." Journal Of Herbal Pharmacotherapy 2, no. 2 (2002): 1–10. http://dx.doi.org/10.1300/j157v02n02_01.

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10

Gao, Cong-Yuan, Youssef E. Ali, Maged Sharaf, et al. "Alkaloids of Thalictrum delavayi." Phytochemistry 29, no. 6 (1990): 1895–97. http://dx.doi.org/10.1016/0031-9422(90)85036-f.

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11

López, José A., Mei-Chao Lin, and Paul L. Schiff. "Alkaloids of Thalictrum lankesteri." Phytochemistry 27, no. 10 (1988): 3335–36. http://dx.doi.org/10.1016/0031-9422(88)80063-3.

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12

Zhuravel, U., R. Konechna, and І. Jasicka-Misiak. "Total phenolic and flavonoid content, antioxidant activity of thalictrum foetidum." Chemistry, Technology and Application of Substances 6, no. 1 (2023): 88–92. http://dx.doi.org/10.23939/ctas2023.01.088.

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The objective of the present study was to determine the total content of phenolics and flavonoids in extracts of Thalictrum foetidum. The total phenolic content was estimated spectrophotometrically using Folin Ciocalteu method. The total content of flavonoids was determined by spectrophotometric analysis, based on the measurement of the absorption of the complex of aluminum chloride with flavonoids. The antioxidant effects of the extracts Thalictrum foetidum were investigated.
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13

Zhumagalieva, Zh Zh, Sh K. Yeleupaeva, and V. I. Korchyn. "Study the alkaloid composition in the rue (Thalictrum foetidum), occurring in Karkaralinsk region." Bulletin of the Karaganda University “Biology medicine geography Series” 83, no. 3 (2016): 110–15. https://doi.org/10.31489/2016bmg3/110-115.

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The paper studied the plant (Thalictrum foetidum) (vaslistnika) collected Қarkaralinskikom district of Karaganda region in the flowering stage. Aerial parts of the plant rue (Thalictrum foetidum) by chloroform extraction amount received extractives. Identification alkaloids conducted TLC. Structures of isolated alkaloid glaucine identified using modern physical and chemical methods and IR, PMR-spectra. 13C NMR spectra were recorded on spectrometers Vruker AC 200 [working frequency 200.13 (1H) and 50.32 MHz (13C)].
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14

Tuo, Li, and Xiao-Rui Yan. "Paenibacillus thalictri sp. nov., isolated from surface-sterilized tissue of Thalictrum simplex L." International Journal of Systematic and Evolutionary Microbiology 69, no. 12 (2019): 3878–84. http://dx.doi.org/10.1099/ijsem.0.003699.

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15

SINGH, HARSH, ALKA SRIVASTAVA, and TARIQ HUSAIN. "Lectotypification of Thalictrum cultratum(Ranunculaceae)." Phytotaxa 289, no. 1 (2016): 99. http://dx.doi.org/10.11646/phytotaxa.289.1.11.

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The genus Thalictrum Linneaus (1753: 545) (Ranunculaceae), commonly known as ‘meadow-rue’, comprises 150 to 200 species distributed in temperate regions (Tamura 1995, Fu and Zhu 2001). It is represented by 25 taxa in India (Rau 1993, Santapau and Henry 1973) mostly confined to the Himalayan region. For one of these species, Thalictrum cultratum Wallich (1831:26), the protologue includes two localities (Gossain Than and Kumaon), but no reference to a type specimen. Riedl and Nasir (1991) cited Wall. Cat. 3715 as type without further specifications.
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16

Slavík, Jiří, and Leonora Slavíková. "Quaternary Alkaloids from Thalictrum minus subsp. elatum (JACQ.) STOY. et STEFANOV." Collection of Czechoslovak Chemical Communications 57, no. 3 (1992): 573–78. http://dx.doi.org/10.1135/cccc19920573.

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Quaternary alkaloids berberine (chloride, 0.18%) and, after transformation into the iodides, magnoflorine (iodide, 1.06%), jatrorrhizine (iodide, 0.066%), thalphenine (iodide, 0.040%) and thalifendine (iodide, 0.021%) were isolated, after separation of the tertiary bases (0.38%) from the root of Thalictrum minus subsp. elatum (JACQ.) STOJ. et STEFANOV of Czechoslovak origin (1.8% alkaloid content). The aerial parts (0.013% alkaloids) in their quaternary fraction contain only negligible amounts of magnoflorine, berberine, and coptisine (which is the first time coptisine was found in the Thalict
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17

Belykh, Olga. "Trends in the development of the bioresource potential of Thalictrum L. in Baikal Siberia." BIO Web of Conferences 64 (2023): 02009. http://dx.doi.org/10.1051/bioconf/20236402009.

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The article is devoted to the modernization of economic development of the Baikal region. The directions of formation of innovative bioresource potential with the use of local plant raw materials are revealed. The biotechnological potential of promising medicinal plants of the genus Thalictrum L. has been studied. The content of microelements and triterpene saponins with cytotoxic and contraceptive properties in plant raw materials from natural and cultivated populations was determined. The data on productivity of Thalictrum minus in culture are presented. Accumulation of biologically active s
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18

ZENG, YOU-PAI, QIONG YUAN, and QIN-ER YANG. "Lectotypification of Thalictrum chayuense (Ranunculaceae), with its reduction to the synonymy of T. tsawarungense, both described from Zayu in southeastern Xizang (Tibet), China." Phytotaxa 548, no. 2 (2022): 184–98. http://dx.doi.org/10.11646/phytotaxa.548.2.4.

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Based on critical observations on herbarium specimens (including type material) and living plants in the wild, we demonstrate that the holotype itself and the type collection of Thalictrum chayuense, which was described from Zayu county in southeastern Xizang (Tibet), China, are mixed, consisting of two taxa, T. chayuense and T. nepalense. Lectotypification is proposed for T. chayuense herein. Thalictrum chayuense is then determined to be conspecific with T. tsawarungense, a species described also from Zayu in southeastern Xizang. We therefore reduce T. chayuense to the synonymy of T. tsawarun
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19

Zhang, Qing-Wen. "Chemical Constituents from Thalictrum ramosum." Alternative, Complementary & Integrative Medicine 3, no. 4 (2017): 1–4. http://dx.doi.org/10.24966/acim-7562/100043.

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20

Li, Mai, Xin Chen, Qin-Mei Tang, and Jin-Sheng Zhang*. "Isoquinoline Alkaloids from Thalictrum delavayi." Planta Medica 67, no. 2 (2001): 189–90. http://dx.doi.org/10.1055/s-2001-11518.

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21

Gao, Cong-Yuan, Zhi-Cen Lou, Fu-Tyan Lin, Mei-Chao Lin, and Paul L. Schiff Jr. "Quaternary alkaloids of Thalictrum cultratum." Phytochemistry 26, no. 11 (1987): 3003–4. http://dx.doi.org/10.1016/s0031-9422(00)84580-x.

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22

Liu, Minjie, Mingchuan Liu, Huayu Gong, Hongju Zhao, and Song Yang. "Chemical Constituents of Thalictrum ichangense." Chemistry of Natural Compounds 51, no. 1 (2015): 175–77. http://dx.doi.org/10.1007/s10600-015-1235-6.

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23

Sahai, Mahendra, S. C. Sinha, Anil B. Ray, et al. "Additional Alkaloids of Thalictrum javanicum." Journal of Natural Products 48, no. 4 (1985): 669. http://dx.doi.org/10.1021/np50040a033.

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24

Baser, Kemal Hüsnü Can, Muzaffer Ögütveren, and Norman G. Bisset. "Alkaloids of Anatolian Thalictrum sultanabadense." Journal of Natural Products 48, no. 4 (1985): 672. http://dx.doi.org/10.1021/np50040a036.

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25

Al-Khalil, Suleiman, and Paul L. Schiff. "Alkaloids of Jordanian Thalictrum isopyroides." Phytochemistry 25, no. 4 (1986): 935–39. http://dx.doi.org/10.1016/0031-9422(86)80030-9.

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26

Wu, Yang-Chang, Tian-Shung Wu, Masatake Niwa, Sheng-Teh Lu, and Yoshimasa Hirata. "Alkaloids of formosan Thalictrum sessile." Phytochemistry 27, no. 12 (1988): 3949–53. http://dx.doi.org/10.1016/0031-9422(88)83052-8.

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27

Rakhimov, K. D., S. M. Vermenichev, V. I. Lutskii, A. S. Gromova, T. V. Ganenko, and A. A. Semenov. "Triterpene alkaloids of Thalictrum foetidum L. and Thalictrum minus L. and their antitumorigenic activity." Pharmaceutical Chemistry Journal 21, no. 12 (1987): 848–50. http://dx.doi.org/10.1007/bf00757958.

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28

Zhigunova, S. N., N. I. Fedorov, and O. I. Mikhailenko. "Ecocenotic differentiation between Thalictrum minus L. and Thalictrum simplex L. in the Southern Urals." Russian Journal of Ecology 44, no. 5 (2013): 442–44. http://dx.doi.org/10.1134/s1067413613050135.

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29

Khamidullina, E. A., A. S. Gromova, V. I. Lutsky, A. A. Semenov, D. Li, and N. L. Owen. "ChemInform Abstract: Flavonoid Glycosides from Thalictrum squarrosum St. ex Willd. and Thalictrum minus L." ChemInform 30, no. 41 (2010): no. http://dx.doi.org/10.1002/chin.199941187.

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30

Koçer, Oğuzhan. "Biological activity potential of Thalictrum orientale: antioxidant, anticholinesterase, and antiproliferative effects." Artvin Çoruh Üniversitesi Orman Fakültesi Dergisi 26, no. 1 (2025): 222–29. https://doi.org/10.17474/artvinofd.1667174.

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Plants are among the important natural resources in terms of biological activity. In this study, the biological activity of Thalictrum orientale species was evaluated comprehensively. For this purpose, ethanol extract of the plant was obtained by Soxhlet extraction method. To determine the antioxidant capacity, total antioxidant status (TAS) and total oxidant status (TOS) were analyzed using Rel Assay kits. Anticholinesterase activity was determined by measuring acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) enzyme activities. In addition, antiproliferative activity was evaluated
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31

MICHIMOTO, KANAE, MASATSUGU YOKOTA, ATSUSHI ABE, et al. "New Species of Thalictrum (Ranunculaceae) from Okinawa Island in Japan and Its Phylogenetic Implications." Phytotaxa 696, no. 1 (2025): 55–70. https://doi.org/10.11646/phytotaxa.696.1.3.

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This study aims to compare Thalictrum (Ranunculaceae) plant species, tentatively identified as T. minus, from the Yambaru region of Okinawa Island, Japan, with closely related species using morphometric and molecular phylogenetic analyses. Morphological observations revealed that the unique plants from Okinawa Island had clavate filaments and thickened roots. These traits differed significantly from those of typical T. minus, which have filamentous filaments and slender roots. Molecular phylogenetic analyses revealed that the unique plant on Okinawa Island is sister to T. urbaini, endemic to T
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32

Nemkul, Chandra Mohini, Gan Bahadur Bajracharya, and Ila Shrestha. "Assessment of Antimicrobial and Antioxidant Activities of Four Ethnomedicinal Plants Used by Magars in Nawalpur District, Nepal." Journal of Plant Resources 20, no. 2 (2022): 146–55. http://dx.doi.org/10.3126/bdpr.v20i2.57030.

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Ethnobotanical survey in the Magar villages in Nawalpur district, Gandaki province, Nepal revealed that root of Phanera vahlii (Wight &amp; Arn.) Benth, bark of Rhododendron arboreum Sm. and flower of Woodfordia fruticosa (L.) Kurz, have been in use for diarrhea and dysentery. Root of Thalictrum foliolosum DC. has been used for the treatment of rheumatic pain. The study aimed to evaluate antimicrobial and antioxidant effects as well as total phenol content in Phanera vahlii, Rhododendron arboreum, Woodfordia fruticosa and Thalictrum foliolosum. Total phenol content (TPC) was estimated using Fo
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33

Mitchell, Richard S. "The Identity of Thalictrum confine (Ranunculaceae)." Brittonia 40, no. 3 (1988): 298. http://dx.doi.org/10.2307/2807481.

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34

LI, JIN-YU, HUI-JIE LIU, YU-ZHU WANG, and LEI XIE. "A new synonymy in Thalictrum (Ranunculaceae)." Phytotaxa 286, no. 1 (2016): 57. http://dx.doi.org/10.11646/phytotaxa.286.1.8.

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Thalictrum xingshanicum was considered to be different from its close ally T. fargesii by the leaf size and number of carpels. In the present study, it reveals that morphological variation of T. fargesii had been misunderstood by previous authors. Here, we clarify the variations of T. fargesii and propose T. xingshanicum as its new synonym. A lectotype of T. pallidum Franch. is also designated.
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35

Sidjimov, Atanas K., Jeanne N. Tawara, Frank R. Stermitz, and Christopher D. Rithner. "An isopavine alkaloid from Thalictrum minus." Phytochemistry 48, no. 2 (1998): 403–5. http://dx.doi.org/10.1016/s0031-9422(97)00768-1.

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36

Herath, Wasala H. M. W., S. Fazal Hussain, Alan J. Freyer, Hélène Guinaudeau, and Maurice Shamma. "Nine Bisbenzylisoquinoline Alkaloids from Thalictrum cultratum." Journal of Natural Products 50, no. 4 (1987): 721–25. http://dx.doi.org/10.1021/np50052a024.

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37

Jin, Qiong, Dong Yang, Zhi Dai, et al. "Antitumor aporphine alkaloids from Thalictrum wangii." Fitoterapia 128 (July 2018): 204–12. http://dx.doi.org/10.1016/j.fitote.2018.05.012.

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38

Komilov, B. D., M. A. Agzamova, I. M. Isaev, and K. A. Eshbakova. "New Flavonoid Glycoside from Thalictrum minus." Chemistry of Natural Compounds 56, no. 5 (2020): 814–16. http://dx.doi.org/10.1007/s10600-020-03159-z.

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39

Wu, Yang-Chang, Sheng-Teh Lu, Jer-Jang Changi, and Kuo-Hsiung Lee. "Cytotoxic aporphinoid alkaloids from thalictrum sessile." Phytochemistry 27, no. 5 (1988): 1563–64. http://dx.doi.org/10.1016/0031-9422(88)80247-4.

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40

Yuan, Qiong, and Qin-Er Yang. "Neotypification of the name Thalictrum umbricola (Ranunculaceae)." Phytotaxa 323, no. 2 (2017): 199–200. https://doi.org/10.11646/phytotaxa.323.2.10.

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Yuan, Qiong, Yang, Qin-Er (2017): Neotypification of the name Thalictrum umbricola (Ranunculaceae). Phytotaxa 323 (2): 199-200, DOI: 10.11646/phytotaxa.323.2.10, URL: http://dx.doi.org/10.11646/phytotaxa.323.2.10
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41

Yuan, Qiong, Chen Ren, and Qin-Er Yang. "Lectotypification of the name Thalictrum purdomii (Ranunculaceae)." Phytotaxa 340, no. 1 (2018): 98–100. https://doi.org/10.11646/phytotaxa.340.1.9.

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Yuan, Qiong, Ren, Chen, Yang, Qin-Er (2018): Lectotypification of the name Thalictrum purdomii (Ranunculaceae). Phytotaxa 340 (1): 98-100, DOI: 10.11646/phytotaxa.340.1.9, URL: http://dx.doi.org/10.11646/phytotaxa.340.1.9
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42

Yuan, Qiong, and Qin-Er Yang. "Thalictrum callianthum (Ranunculaceae) is merged with T. diffusiflorum." Phytotaxa 307, no. 4 (2017): 285–91. https://doi.org/10.11646/phytotaxa.307.4.6.

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Yuan, Qiong, Yang, Qin-Er (2017): Thalictrum callianthum (Ranunculaceae) is merged with T. diffusiflorum. Phytotaxa 307 (4): 285-291, DOI: 10.11646/phytotaxa.307.4.6, URL: http://dx.doi.org/10.11646/phytotaxa.307.4.6
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43

Ding, Cai-Feng, Rong-Ping Zhang, Hao-Fei Yu, et al. "Hybrid isoquinolines from Thalictrum foetidum: a new type of aporphine inhibiting Staphylococcus aureus by combined mechanisms." Organic Chemistry Frontiers 6, no. 19 (2019): 3428–34. http://dx.doi.org/10.1039/c9qo00737g.

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44

Zeng, You-Pai, Qiong Yuan, and Qin-Er Yang. "Thalictrum spiristylum (Ranunculaceae), described from northwestern Yunnan, China, is merged with T. atriplex." Phytotaxa 538, no. 1 (2022): 1–20. https://doi.org/10.11646/phytotaxa.538.1.1.

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Zeng, You-Pai, Yuan, Qiong, Yang, Qin-Er (2022): Thalictrum spiristylum (Ranunculaceae), described from northwestern Yunnan, China, is merged with T. atriplex. Phytotaxa 538 (1): 1-20, DOI: 10.11646/phytotaxa.538.1.1
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45

Nikolić, T. "Phenotypic variability of fruit and its taxonomic significance in Thalictrum minus complex and species Thalictrum velebiticum Deg." Feddes Repertorium 102, no. 1-2 (2008): 69–74. http://dx.doi.org/10.1002/fedr.19911020108.

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46

Zeng, You-Pai, Qiong Yuan, and Qin-Er Yang. "Thalictrum nanhuaense (Ranunculaceae), a new species from central Yunnan, China." Phytotaxa 479, no. 1 (2021): 121–28. https://doi.org/10.11646/phytotaxa.479.1.10.

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Zeng, You-Pai, Yuan, Qiong, Yang, Qin-Er (2021): Thalictrum nanhuaense (Ranunculaceae), a new species from central Yunnan, China. Phytotaxa 479 (1): 121-128, DOI: 10.11646/phytotaxa.479.1.10, URL: http://dx.doi.org/10.11646/phytotaxa.479.1.10
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Zeng, You-Pai, Qiong Yuan, and Qin-Er Yang. "Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China." Phytotaxa 571, no. 1 (2022): 1–20. https://doi.org/10.11646/phytotaxa.571.1.1.

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Zeng, You-Pai, Yuan, Qiong, Yang, Qin-Er (2022): Thalictrum hengduanshanense and T. longistipitatum (Ranunculaceae), two new species from southeastern Xizang and northwestern Yunnan, China. Phytotaxa 571 (1): 1-20, DOI: 10.11646/phytotaxa.571.1.1
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Yuan, Qiong, Chen Ren, and Qin-Er Yang. "Thalictrum argyi (Ranunculaceae) is conspecific with T. fortunei, not T. javanicum." Phytotaxa 346, no. 2 (2018): 197–200. https://doi.org/10.11646/phytotaxa.346.2.7.

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Yuan, Qiong, Ren, Chen, Yang, Qin-Er (2018): Thalictrum argyi (Ranunculaceae) is conspecific with T. fortunei, not T. javanicum. Phytotaxa 346 (2): 197-200, DOI: 10.11646/phytotaxa.346.2.7, URL: http://dx.doi.org/10.11646/phytotaxa.346.2.7
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Zeng, You-Pai, Qiong Yuan, and Qin-Er Yang. "Thalictrum kangdingense (Ranunculaceae), a new synonym of T. megalostigma from China." Phytotaxa 498, no. 2 (2021): 87–103. https://doi.org/10.11646/phytotaxa.498.2.2.

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Zeng, You-Pai, Yuan, Qiong, Yang, Qin-Er (2021): Thalictrum kangdingense (Ranunculaceae), a new synonym of T. megalostigma from China. Phytotaxa 498 (2): 87-103, DOI: 10.11646/phytotaxa.498.2.2, URL: http://dx.doi.org/10.11646/phytotaxa.498.2.2
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Zeng, You-Pai, Qiong Yuan, and Qin-Er Yang. "Thalictrum minshanicum and T. pseudoramosum (Ranunculaceae), two new species from China." Phytotaxa 502, no. 2 (2021): 133–48. https://doi.org/10.11646/phytotaxa.502.2.2.

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Zeng, You-Pai, Yuan, Qiong, Yang, Qin-Er (2021): Thalictrum minshanicum and T. pseudoramosum (Ranunculaceae), two new species from China. Phytotaxa 502 (2): 133-148, DOI: 10.11646/phytotaxa.502.2.2, URL: http://dx.doi.org/10.11646/phytotaxa.502.2.2
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