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Search Results for Senecio jacobea
556 articles found.
The first 100 results are shown.
1.
Acaricidal activity of the essential oil from Senecio cannabifolius and its constituents eucalyptol and camphor on engorged females and larvae of Rhipicephalus microplus (Acari: Ixodidae).
Yang P, Jia M, Zhu L.
Experimental & applied acarology. 2021; 83(3): 411-426
2.
Fatal pyrrolizidine alkaloid poisoning of infants caused by adulterated Senecio coronatus.
Van Schalkwyk FJ, Stander MA, Nsizwane M, Mathee A, Van Wyk BE.
Forensic science international. 2021; 320(): 110680
3.
Biodegradation and utilization of crop residues contaminated with poisonous pyrrolizidine alkaloids.
Chmit MS, Müller J, Wiedow D, Horn G, Beuerle T.
Journal of environmental management. 2021; 290(): 112629
4.
Pyrrolizidine alkaloids and unusual millingtojanine A-B from Jacobaea vulgaris (syn. Senecio jacobaea L.).
Jumai A, Rouzimaimaiti R, Zou GA, Aisa HA.
Phytochemistry. 2021; 190(): 112862
5.
Histopathological evaluation of Rusby in 7,12-dimethylbenz(α) anthracene-induced breast cancer in female rats.
Arroyo-Acevedo JL, Herrera-Calderon O, Rojas-Armas JP, Chávez-Asmat R, Calva J, Behl T.
Veterinary world. 2021; 14(3): 569-577
6.
Isolation and Functional Analysis of Genes Involved in Polyacylated Anthocyanin Biosynthesis in Blue .
Lu C, Li Y, Cui Y, Ren J, Qi F, Qu J, Huang H, Dai S.
Frontiers in plant science. 2021; 12(): 640746
7.
Extraction of bioactive compounds from using emergent technologies.
Confortin TC, Todero I, Luft L, Schmaltz S, Ferreira DF, Barin JS, Mazutti MA, Zabot GL, Tres MV.
3 Biotech. 2021; 11(6): 284
8.
Direct formation of the sesquiterpeonid ether liguloxide by a terpene synthase in Senecio scandens.
Wang L, Liang J, Xie X, Liu J, Shen Q, Li L, Wang Q.
Plant molecular biology. 2021; 105(1-2): 55-64
9.
Mycorrhizal Stress Alleviation in Senecio Bonariensis Hook & Arn Growing in Urban Polluted Soils.
Bompadre MJ, Benavidez M, Colombo RP, Silvani VA, Godeas AM, Scotti A, Pardo AG, Fernández Bidondo L.
Journal of environmental quality. 2021; ():
10.
Effect of Senecio scandens ethanol extract on gut microbiota composition in mice.
Yao G, Zhang H, Luo G, Wang Z, Zhao H, Zhang J, Dong Y, Gao Y, Wu S.
Archives of microbiology. 2021; ():
11.
LC-ESI/MS-phytochemical profiling with antioxidant and antiacetylcholinesterase activities of Algerian L.f. extracts.
Bousetla A, Keskinkaya HB, Bensouici C, Lefahal M, Atalar MN, Akkal S.
Natural product research. 2021; (): 1-7
12.
Effects of dietary Senecio scandens buch-ham extracts on growth performance, plasma biochemical, histology and the expression of immune-related genes in hybrid grouper (Epinephelus lanceolatus♂ × Epinephelus fuscoguttatus♀).
Sun Z, Chen L, Liu Q, Mai K, Xu M, Zhou Y, Su N, Ye C.
Fish & shellfish immunology. 2020; 98(): 681-690
13.
Revisiting the absolute chirality and polymorphism of (-)-Istanbulin A.
Arancibia L, Naspi M, Pucci G, Rodriguez M, Di Salvo F.
Acta crystallographica. Section C, Structural chemistry. 2020; 76(Pt 9): 914-920
14.
Qualitative and quantitative analysis of pyrrolizidine alkaloids for the entire process quality control from Senecio scandens to Senecio scandens-containing preparations by high performance liquid chromatography-tandem mass spectrometry.
Wang Y, Li Y, Cang S, Cai Q, Xu H, Wang Y, Liu R, Xu H, Li Q.
Journal of mass spectrometry : JMS. 2020; 55(10): e4532
15.
[Cloning and functional characterization of farnesyl diphosphate synthase in Senecio scandens].
Wang LP, Shen QQ, Liang J, Fu JY, Wang Q.
Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica. 2020; 45(23): 5677-5685
16.
Rapid homoploid hybrid speciation in British gardens: The origin of Oxford ragwort (Senecio squalidus).
Nevado B, Harris SA, Beaumont MA, Hiscock SJ.
Molecular ecology. 2020; 29(21): 4221-4233
17.
Effect of different extracts and fractions of Senecio biafrae (Oliv. &Hiern) J. Moore on in vivo and in vitro parameters of folliculogenesis in experimental animals.
Lienou LL, Telefo PB, Rodrigues GQ, Donfack JN, Araújo RA, Bruno JB, Njimou JR, Mbemya TG, Santos RR, Souza JF, Figueiredo JR, Rodrigues APR.
Journal of ethnopharmacology. 2020; 251(): 112571
18.
Senecio as a model system for integrating studies of genotype, phenotype and fitness.
Walter GM, Abbott RJ, Brennan AC, Bridle JR, Chapman M, Clark J, Filatov D, Nevado B, Ortiz-Barrientos D, Hiscock SJ.
The New phytologist. 2020; 226(2): 326-344
19.
Senecio spp. transboundary introduction and expansion affecting cattle in Uruguay: Clinico-pathological, epidemiological and genetic survey, and experimental intoxication with Senecio oxyphyllus.
García JA, Rosas JE, García Y Santos C, Streitenberger N, Feijoo M, Dutra F.
Toxicon : official journal of the International Society on Toxinology. 2020; 173(): 68-74
20.
Genetic and chemical diversity of the toxic herb Jacobaea vulgaris Gaertn. (syn. Senecio jacobaea L.) in Northern Germany.
Jung S, Lauter J, Hartung NM, These A, Hamscher G, Wissemann V.
Phytochemistry. 2020; 172(): 112235
21.
Lipophilic 9,10-Dehydrofukinone Action on Pathogenic and Non-Pathogenic Bacterial Biofilms. Why Is This Main Volatile Metabolite in Senecio?
Verni MC, Garay JA, Mendoza L, Bardón A, Borkosky S, Arena ME, Cartagena E.
Chemistry & biodiversity. 2020; 17(6): e1900507
22.
Senecio serratuloides extract prevents the development of hypertension, oxidative stress and dyslipidemia in nitric oxide-deficient rats.
Tata CM, Sewani-Rusike CR, Oyedeji OO, Mahlakata F, Shauli M, Nkeh-Chungag BN.
Journal of complementary & integrative medicine. 2020; 17(2):
23.
Establishment of virus-induced gene silencing system and functional analysis of ScbHLH17 in Senecio cruentus.
Li Y, Liu Y, Qi F, Deng C, Lu C, Huang H, Dai S.
Plant physiology and biochemistry : PPB. 2020; 147(): 272-279
24.
Spread of and Occurrence of Pyrrolizidine Alkaloids in Regionally Produced Honeys from Northern Germany: Inter- and Intra-Site Variations and Risk Assessment for Special Consumer Groups.
Gottschalk C, Kaltner F, Zimmermann M, Korten R, Morris O, Schwaiger K, Gareis M.
Toxins. 2020; 12(7):
25.
Extracting and Analyzing Pyrrolizidine Alkaloids in Medicinal Plants: A Review.
Kopp T, Abdel-Tawab M, Mizaikoff B.
Toxins. 2020; 12(5):
26.
Morphological differentiation across the invasive range in Senecio madagascariensis populations.
Dematteis B, Ferrucci MS, Coulleri JP.
Scientific reports. 2020; 10(1): 20045
27.
New antimicrobial and cytotoxic benzofuran glucoside from L.
Zaher AM, Sultan R, Ramadan T, Amro A.
Natural product research. 2020; (): 1-6
28.
Stability of pyrrolizidine alkaloids from Senecio vernalis in grass silage under different ensilage conditions.
Klevenhusen F, Pieper R, Winter J, Ronczka S, Speer K.
Journal of the science of food and agriculture. 2019; 99(14): 6649-6654
29.
Natural selection drives leaf divergence in experimental populations of under natural conditions.
Richards TJ, Ortiz-Barrientos D, McGuigan K.
Ecology and evolution. 2019; 9(12): 6959-6967
30.
Insect Antifeedant Components of var. -Hualtata.
Ruiz-Vásquez L, Reina M, Fajardo V, López M, González-Coloma A.
Plants (Basel, Switzerland). 2019; 8(6):
31.
Occurrence of Nine Pyrrolizidine Alkaloids in L. Depending on Developmental Stage and Season.
Flade J, Beschow H, Wensch-Dorendorf M, Plescher A, Wätjen W.
Plants (Basel, Switzerland). 2019; 8(3):
32.
Comparative genomics of 11 complete chloroplast genomes of Senecioneae (Asteraceae) species: DNA barcodes and phylogenetics.
Gichira AW, Avoga S, Li Z, Hu G, Wang Q, Chen J.
Botanical studies. 2019; 60(1): 17
33.
[Functional characterization of SsNES responsible for nerolidol biosynthesis in Senecio scandens].
Shen QQ, Wang LP, Liang J, Liu LJ, Wang Q.
Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica. 2019; 44(7): 1334-1340
34.
[Identification of stable reference gene by qRT-PCR in Senecio scandens].
Wang LP, Liang J, Shen QQ, Wang Q.
Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica. 2019; 44(3): 465-471
35.
Transfer of pyrrolizidine alkaloids between living plants: A disregarded source of contaminations.
Selmar D, Wittke C, Beck-von Wolffersdorff I, Klier B, Lewerenz L, Kleinwächter M, Nowak M.
Environmental pollution (Barking, Essex : 1987). 2019; 248(): 456-461
36.
Heavy Metals Bioindication Potential of the Common Weeds L., L. and L.
Salinitro M, Tassoni A, Casolari S, de Laurentiis F, Zappi A, Melucci D.
Molecules (Basel, Switzerland). 2019; 24(15):
37.
The exotic species Senecio inaequidens pays the price for arriving late in temperate European grassland communities.
Delory BM, Weidlich EWA, Kunz M, Neitzel J, Temperton VM.
Oecologia. 2019; 191(3): 657-671
38.
Antihypertensive effects of the hydro-ethanol extract of Senecio serratuloides DC in rats.
Tata CM, Sewani-Rusike CR, Oyedeji OO, Gwebu ET, Mahlakata F, Nkeh-Chungag BN.
BMC complementary and alternative medicine. 2019; 19(1): 52
39.
In vitro ovicidal effect of a Senecio brasiliensis extract and its fractions on Haemonchus contortus.
Mendonça Soares S, Domingues R, Baldo Gaspar E, Azevedo Dos Santos P, Marques Canuto K, Pelegrine Minho A, Botelho Vieira MI.
BMC veterinary research. 2019; 15(1): 99
40.
Comparative RNA-seq analysis of nickel hyperaccumulating and non-accumulating populations of Senecio coronatus (Asteraceae).
Meier SK, Adams N, Wolf M, Balkwill K, Muasya AM, Gehring CA, Bishop JM, Ingle RA.
The Plant journal : for cell and molecular biology. 2018; 95(6): 1023-1038
41.
Phytochemical Study of Senecio volckmannii Assisted by CASE-3D with Residual Dipolar Couplings and Isotropic H/C NMR Chemical Shifts.
Castro SJ, García ME, Padrón JM, Navarro-Vázquez A, Gil RR, Nicotra VE.
Journal of natural products. 2018; 81(11): 2329-2337
42.
Influence of Storage on the Stability of Toxic Pyrrolizidine Alkaloids and Their N-Oxides in Peppermint Tea, Hay, and Honey.
Kaltner F, Rychlik M, Gareis M, Gottschalk C.
Journal of agricultural and food chemistry. 2018; 66(20): 5221-5228
43.
In vitro antioxidant activities and inhibitory effects of phenolic extract of (Oliv and Hiern) against key enzymes linked with type II diabetes mellitus and Alzheimer's disease.
Ajiboye BO, Ojo OA, Okesola MA, Akinyemi AJ, Talabi JY, Idowu OT, Fadaka AO, Boligon AA, Anraku de Campos MM.
Food science & nutrition. 2018; 6(7): 1803-1810
44.
Arbuscular Mycorrhizal Fungi and Plant Chemical Defence: Effects of Colonisation on Aboveground and Belowground Metabolomes.
Hill EM, Robinson LA, Abdul-Sada A, Vanbergen AJ, Hodge A, Hartley SE.
Journal of chemical ecology. 2018; 44(2): 198-208
45.
Uncertainties in the determination of pyrrolizidine alkaloid levels in naturally contaminated honeys and comparison of results obtained by different analytical approaches.
Gottschalk C, Huckauf A, Dübecke A, Kaltner F, Zimmermann M, Rahaus I, Beuerle T.
Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment. 2018; 35(7): 1366-1383
46.
Influence of grass pellet production on pyrrolizidine alkaloids occurring in Senecio aquaticus-infested grassland.
Gottschalk C, Ostertag J, Meyer K, Gehring K, Thyssen S, Gareis M.
Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment. 2018; 35(4): 750-759
47.
Chemical fingerprinting identifies Echium vulgare, Eupatorium cannabinum and Senecio spp. as plant species mainly responsible for pyrrolizidine alkaloids in bee-collected pollen.
Kast C, Kilchenmann V, Reinhard H, Droz B, Lucchetti MA, Dübecke A, Beckh G, Zoller O.
Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment. 2018; 35(2): 316-327
48.
Nutritional composition, antioxidant activity and isolation of scopoletin from Senecio nutans: support of ancestral and new uses.
Parra C, Soto E, León G, Salas CO, Heinrich M, Echiburú-Chau C.
Natural product research. 2018; 32(6): 719-722
49.
Antioxidant Activity and Phytochemical Characterization of Wedd.
Faraone I, Rai DK, Chiummiento L, Fernandez E, Choudhary A, Prinzo F, Milella L.
Molecules (Basel, Switzerland). 2018; 23(10):
50.
Senecio defeated Tetracycline-Induced Testicular Toxicity in Adult Male Sprague Dawley Rats.
Adelakun S, Omotoso O, Aniah J, Oyewo O.
JBRA assisted reproduction. 2018; 22(4): 314-322
51.
Role of Aqueous Crude Leaf Extract of Senecio Biafrae Combined With Zinc on Testicular Function of Adult Male Sprague Dawley Rats.
Adelakun SA, Ogunlade B, Omotoso OD, Oyewo OO.
Journal of family & reproductive health. 2018; 12(1): 8-17
52.
Extraction, partial characterization and bioactivity of polysaccharides from Senecio scandens Buch.-Ham.
Yu J, Hu M, Wang Y, Zhang Q, Xu W, Su W.
International journal of biological macromolecules. 2018; 109(): 535-543
53.
Retreat to refugia: Severe habitat contraction projected for endemic alpine plants of the Olympic Peninsula.
Wershow ST, DeChaine EG.
American journal of botany. 2018; 105(4): 760-778
54.
FTIR spectroscopy as a tool to detect contamination of rocket (Eruca sativa and Diplotaxis tenuifolia) salad with common groundsel (Senecio vulgaris) leaves.
Kokalj M, Prikeržnik M, Kreft S.
Journal of the science of food and agriculture. 2017; 97(7): 2238-2244
55.
Growth form evolution and hybridization in (Asteraceae) from the high equatorial Andes.
Dušková E, Sklenář P, Kolář F, Vásquez DLA, Romoleroux K, Fér T, Marhold K.
Ecology and evolution. 2017; 7(16): 6455-6468
56.
Senobtusin, a novel alkaloid with amidine moiety from Senecio obtusatus Wall. ex DC.
Bai SM, Ren HM, Zheng GJ, Chen G.
Natural product research. 2017; 31(20): 2450-2453
57.
Senecio brasiliensis impairs eclosion rate and induces apoptotic cell death in larvae of Drosophila melanogaster.
Macedo GE, Gomes KK, Rodrigues NR, Martins IK, Wallau GDL, Carvalho NR, Cruz LCD, Costa Silva DGD, Boligon AA, Franco JL, Posser T.
Comparative biochemistry and physiology. Toxicology & pharmacology : CBP. 2017; 198(): 45-57
58.
A novel method to infer the origin of polyploids from Amplified Fragment Length Polymorphism data reveals that the alpine polyploid complex of Senecio carniolicus (Asteraceae) evolved mainly via autopolyploidy.
Winkler M, Escobar García P, Gattringer A, Sonnleitner M, Hülber K, Schönswetter P, Schneeweiss GM.
Molecular ecology resources. 2017; 17(5): 877-892
59.
Two New Sesquiterpene Alcohols Isolated from Senecio hadiensis Forssk. Grown in Saudi Arabia.
Ahmed S, Ahmad MS, Yousaf M, Nur-E-Alam M, Al-Rehaily AJ.
Chemistry & biodiversity. 2017; 14(9):
60.
Insect Antifeedant and Ixodicidal Compounds from Senecio adenotrichius.
Ruiz-Vásquez L, Olmeda AS, Zúñiga G, Villarroel L, Echeverri LF, González-Coloma A, Reina M.
Chemistry & biodiversity. 2017; 14(1):
61.
The effect of structurally related metabolites on insect herbivores: A case study on pyrrolizidine alkaloids and western flower thrips.
Liu X, Klinkhamer PGL, Vrieling K.
Phytochemistry. 2017; 138(): 93-103
62.
Senecio grisebachii Baker: Pyrrolizidine alkaloids and experimental poisoning in calves.
Preliasco M, Gardner D, Moraes J, González AC, Uriarte G, Rivero R.
Toxicon : official journal of the International Society on Toxinology. 2017; 133(): 68-73
63.
Aqueous extract of Senecio candicans DC induce liver and kidney damage in a sub-chronic oral toxicity study in Wistar rats.
Lakshmanan H, Raman J, Pandian A, Kuppamuthu K, Nanjian R, Sabaratam V, Naidu M.
Regulatory toxicology and pharmacology : RTP. 2016; 79(): 25-34
64.
Genetic basis, evolutionary origin and spread of resistance to herbicides inhibiting acetolactate synthase in common groundsel (Senecio vulgaris).
Délye C, Causse R, Michel S.
Pest management science. 2016; 72(1): 89-102
65.
Divergent natural selection drives the evolution of reproductive isolation in an Australian wildflower.
Richards TJ, Walter GM, McGuigan K, Ortiz-Barrientos D.
Evolution; international journal of organic evolution. 2016; 70(9): 1993-2003
66.
Immigrant inviability produces a strong barrier to gene flow between parapatric ecotypes of Senecio lautus.
Richards TJ, Ortiz-Barrientos D.
Evolution; international journal of organic evolution. 2016; 70(6): 1239-48
67.
Transcriptomics and Metabolite Analysis Reveals the Molecular Mechanism of Anthocyanin Biosynthesis Branch Pathway in Different Senecio cruentus Cultivars.
Jin X, Huang H, Wang L, Sun Y, Dai S.
Frontiers in plant science. 2016; 7(): 1307
68.
A plant from the altiplano of Northern Chile , inhibits the pathogen.
Paredes A, Leyton Y, Riquelme C, Morales G.
SpringerPlus. 2016; 5(1): 1788
69.
Effects of origin, seasons and storage under different temperatures on germination of Senecio vulgaris (Asteraceae) seeds.
Ndihokubwayo N, Nguyen VT, Cheng D.
PeerJ. 2016; 4(): e2346
70.
Multiple introductions and gene flow in subtropical South American populations of the fireweed, Senecio madagascariensis(Asteraceae).
Mäder G, Castro L, Bonatto SL, Freitas LB.
Genetics and molecular biology. 2016; 39(1): 135-44
71.
Anti-infective assessment of Senecio smithioides (Asteraceae) and isolation of 9-oxoeuryopsin, a furanoeremophilane-type sesquiterpene with antiplasmodial activity.
Mollinedo P, Vila JL, Arando H, Sauvain M, Deharo E, Bravo JA.
Natural product research. 2016; 30(22): 2594-2597
72.
Antifungal and phytotoxic activity of essential oil from root of Senecio amplexicaulis Kunth. (Asteraceae) growing wild in high altitude-Himalayan region.
Singh R, Ahluwalia V, Singh P, Kumar N, Prakash Sati O, Sati N.
Natural product research. 2016; 30(16): 1875-9
73.
The genomic bases of morphological divergence and reproductive isolation driven by ecological speciation in Senecio (Asteraceae).
Chapman MA, Hiscock SJ, Filatov DA.
Journal of evolutionary biology. 2016; 29(1): 98-113
74.
Demographic history of speciation in a Senecio altitudinal hybrid zone on Mt. Etna.
Filatov DA, Osborne OG, Papadopulos AS.
Molecular ecology. 2016; 25(11): 2467-81
75.
Interspecific transfer of pyrrolizidine alkaloids: An unconsidered source of contaminations of phytopharmaceuticals and plant derived commodities.
Nowak M, Wittke C, Lederer I, Klier B, Kleinwächter M, Selmar D.
Food chemistry. 2016; 213(): 163-168
76.
Hydroalcoholic extract and pure compounds from Senecio nutans Sch. Bip (Compositae) induce vasodilation in rat aorta through endothelium-dependent and independent mechanisms.
Paredes A, Palacios J, Quispe C, Nwokocha CR, Morales G, Kuzmicic J, Cifuentes F.
Journal of ethnopharmacology. 2016; 192(): 99-107
77.
Hypotensive and antihypertensive effects of a hydroalcoholic extract from Senecio nutans Sch. Bip. (Compositae) in mice: Chronotropic and negative inotropic effect, a nifedipine-like action.
Cifuentes F, Paredes A, Palacios J, Muñoz F, Carvajal L, Nwokocha CR, Morales G.
Journal of ethnopharmacology. 2016; 179(): 367-74
78.
Control of Floret Symmetry by RAY3, SvDIV1B, and SvRAD in the Capitulum of Senecio vulgaris
Garcês HM, Spencer VM, Kim M.
Plant physiology. 2016; 171(3): 2055-68
79.
Ecological differentiation of diploid and polyploid cytotypes of Senecio carniolicus sensu lato (Asteraceae) is stronger in areas of sympatry.
Sonnleitner M, Hülber K, Flatscher R, Escobar García P, Winkler M, Suda J, Schönswetter P, Schneeweiss GM.
Annals of botany. 2016; 117(2): 269-76
80.
A Puna Collection of Senecio punae, Main Source of a Versatile Eremophilane-type Ketone.
Rodriguez AM, Montanaro S, Bardon A, Cartagena E, Borkosky S.
Natural product communications. 2016; 11(8): 1061-1064
81.
Senecio changii (Asteraceae: Senecioneae), a New Species from Sichuan, China.
Ren C, Tong TJ, Hong Y, Yang QE.
PloS one. 2016; 11(4): e0151423
82.
Morphological Convergence Between an Allopolyploid and One of its Parental Species Correlates with Biased Gene Expression and DNA Loss.
Alexander-Webber D, Abbott RJ, Chapman MA.
The Journal of heredity. 2016; 107(5): 445-54
83.
Frequent colonization and little in situ speciation in Senecio in the tropical alpine-like islands of eastern Africa.
Kandziora M, Kadereit JW, Gehrke B.
American journal of botany. 2016; 103(8): 1483-98
84.
Pyrrolizidine Alkaloid Production of Jacobaea aquatica under Different Cutting Regimes.
Chizzola R, Bassler G, Kriechbaum M, Karrer G.
Journal of agricultural and food chemistry. 2015; 63(4): 1293-1299
85.
Ecological differentiation, lack of hybrids involving diploids, and asymmetric gene flow between polyploids in narrow contact zones of Senecio carniolicus (syn. Jacobaea carniolica, Asteraceae).
Hülber K, Sonnleitner M, Suda J, Krejčíková J, Schönswetter P, Schneeweiss GM, Winkler M.
Ecology and evolution. 2015; 5(6): 1224-34
86.
Prenatal exposure to integerrimine N-oxide enriched butanolic residue from Senecio brasiliensis affects behavior and striatal neurotransmitter levels of rats in adulthood.
Sandini TM, Udo MS, Reis-Silva TM, Sanches D, Bernardi MM, Flório JC, Spinosa Hde S.
International journal of developmental neuroscience : the official journal of the International Soc. 2015; 47(Pt B): 157-64
87.
Biology and Host Range of Digitivalva delaireae (Lepidoptera: Glyphipterigidae), a Candidate Agent for Biological Control of Cape-ivy (Delairea odorata) in California and Oregon.
Mehelis CN, Balciunas JK, Reddy AM, Van Der Westhuizen L, Neser S, Moran PJ.
Environmental entomology. 2015; 44(2): 260-76
88.
Application of heat stress in situ demonstrates a protective role of irradiation on photosynthetic performance in alpine plants.
Buchner O, Stoll M, Karadar M, Kranner I, Neuner G.
Plant, cell & environment. 2015; 38(4): 812-26
89.
Ninety-Day Subchronic Oral Toxicity Study of Senecio scandens Extract in Rats.
Wang XK, Zhao Y, Liu T, Yi Y, Li CY, Wang HJ, Wang CH, Wang ZT, Ye ZG, Liang AH.
Biological & pharmaceutical bulletin. 2015; 38(10): 1548-56
90.
Composition and antioxidant activity of Senecio nudicaulis Wall. ex DC. (Asteraceae): a medicinal plant growing wild in Himachal Pradesh, India.
Sharma P, Shah GC.
Natural product research. 2015; 29(9): 883-6
91.
Underestimated diversity in one of the world's best studied mountain ranges: The polyploid complex of (Asteraceae) contains four species in the European Alps.
Flatscher R, García PE, Hülber K, Sonnleitner M, Winkler M, Saukel J, Schneeweiss GM, Schönswetter P.
Phytotaxa. 2015; 213(1): 1-21
92.
Human Dermatitis After Skin Exposure to Jacobaea vulgaris and Spectrum of Health Hazards Induced by This Plant to Humans and Livestock.
Pietkiewicz P, Gornowicz-Porowska J, Bowszyc-Dmochowska M, Dmochowski M.
Journal of agromedicine. 2015; 20(2): 237-41
93.
Modulatory effect of Senecio brasiliensis (Spreng) Less. in a murine model of inflammation induced by carrageenan into the pleural cavity.
de Souza RR, Bretanha LC, Dalmarco EM, Pizzolatti MG, Fröde TS.
Journal of ethnopharmacology. 2015; 168(): 373-9
94.
Effect of the aqueous extract of Senecio biafrae (Oliv. & Hiern) J. Moore on some fertility parameters in immature female rat.
Lienou LL, Telefo PB, Njimou JR, Nangue C, Bayala BR, Goka SC, Biapa P, Yemele MD, Donfack NJ, Mbemya JT, Tagne SR, Rodrigues AP.
Journal of ethnopharmacology. 2015; 161(): 156-62
95.
Essential-oil composition and chemical variability of Senecio vulgaris L. from Corsica.
Andreani S, Paolini J, Costa J, Muselli A.
Chemistry & biodiversity. 2015; 12(5): 752-66
96.
Sesquiterpenes, flavonoids, shikimic acid derivatives and pyrrolizidine alkaloids from Senecio kingii Hook.
Ruiz-Vásquez L, Reina M, López-Rodríguez M, Giménez C, Cabrera R, Cuadra P, Fajardo V, González-Coloma A.
Phytochemistry. 2015; 117(): 245-253
97.
Comparison of the anti-inflammatory active constituents and hepatotoxic pyrrolizidine alkaloids in two Senecio plants and their preparations by LC-UV and LC-MS.
Chen P, Wang Y, Chen L, Jiang W, Niu Y, Shao Q, Gao L, Zhao Q, Yan L, Wang S.
Journal of pharmaceutical and biomedical analysis. 2015; 115(): 260-71
98.
Chemical variation in Jacobaea vulgaris is influenced by the interaction of season and vegetation successional stage.
Carvalho S, Macel M, Mulder PP, Skidmore A, van der Putten WH.
Phytochemistry. 2014; 99(): 86-94
99.
Three new monoterpene glucosides from Senecio solidagineus.
Li D, Chou G, Wang Z.
Natural product communications. 2014; 9(7): 889-90
100.
A comparative study on phenolic components and biological activity of some Senecio species in Turkey.
Albayrak S, Aksoy A, Yurtseven L, Yaşar A.
The Journal of pharmacy and pharmacology. 2014; 66(11): 1631-40

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