[1]

Rawat A, Thapa P, Prakash O, Kumar R, Pant AK, et al. 2019. Chemical composition, herbicidal, antifeedant and cytotoxic activity of Hedychium spicatum Sm.: A Zingiberaceae herb. Trends in Phytochemical Research 3(2):123−36

[2]

Rawat A, Prakash O, Kumar R, Arya S, Srivastava RM. 2021. Hedychium spicatum Sm.: Chemical composition with biological activities of methanolic and ethylacetate oleoresins from rhizomes. Journal of Biologically Active Products from Nature 11(3):269−88

doi: 10.1080/22311866.2021.1923572
[3]

Kanyal J, Prakash O, Kumar R, Rawat DS, Srivastava RM, et al. 2021. Study on comparative chemical composition and biological activities in the essential oils from different parts of Coleus barbatus (Andrews) Bent. ex G. Don. Journal of Essential Oil Bearing Plants 24(4):808−25

doi: 10.1080/0972060X.2021.1958701
[4]

Pino JA, Garcia J, Martinez MA. 1996. Comparative chemical composition of the volatiles of Coleus aromaticus produced by steam distillation, solvent extraction and supercritical carbon dioxide extraction. Journal of Essential Oil Research 8(4):373−75

doi: 10.1080/10412905.1996.9700643
[5]

Pinheiro GP, da Silva Graciano D, Mayer JLS, Hantao LW, Sawaya ACHF. 2023. Glandular trichomes of Coleus amboinicus Lour. and the effect of developmental stage on leaf headspace volatile composition. South African Journal of Botany 152:136−46

doi: 10.1016/J.SAJB.2022.11.041
[6]

Wadikar DD, Patki PE. 2016. Coleus aromaticus: a therapeutic herb with multiple potentials. Journal of Food Science and Technology 53(7):2895−901

doi: 10.1007/s13197-016-2292-y
[7]

Anupong W, On-Uma R, Jutamas K, Salmen SH, Alharbi SA, et al. 2023. Antibacterial, antifungal, antidiabetic, and antioxidant activities potential of Coleus aromaticus synthesized titanium dioxide nanoparticles. Environmental Research 216:114714

doi: 10.1016/j.envres.2022.114714
[8]

Hussain A, Sonkar AK, Ahmad MP, Wahab S. 2012. In-vitro anthelmintic activity of Coleus aromaticus root in Indian Adult Earthworm. Asian Pacific Journal of Tropical Disease 2:S425−S427

doi: 10.1016/S2222-1808(12)60196-0
[9]

Velasco J, Rojas LB, Díaz T, Usubillaga A. 2009. Chemical composition and antibacterial activity of the essential oil of Coleus amboinicus Lour., against enteric pathogens. Journal of Essential Oil Bearing Plants 12(4):453−61

doi: 10.1080/0972060X.2009.10643744
[10]

Subaiea G, Alafnan A, Alamri A, Hussain T, Hassoun SM, et al. 2023. Coleus aromaticus ethanolic leaves extract mediates inhibition of NF-κB signaling pathway in lung adenocarcinoma A549 cell. Processes 11(5):1332

doi: 10.3390/pr11051332
[11]

Joshi RK, Badakar V, Kholkute SD. 2011. Carvacrol rich essential oils of Coleus aromaticus (Benth.) from Western Ghats region of North West Karnataka, India. Advances in Environmental Biology 5(6):1307−10

[12]

Prudent D, Perineau F, Bessiere JM, Michel GM, Baccou JC. 1995. Analysis of the essential oil of wild oregano from Martinique (Coleus aromaticus Benth.) — Evaluation of its bacteriostatic and fungistatic properties. Journal of Essential Oil Research 7(2):165−73

doi: 10.1080/10412905.1995.9698492
[13]

Shekh R, Tiwari RK, Ahmad A, Ahmad I, Alabdallah NM, et al. 2022. Ethanolic extract of Coleus aromaticus leaves impedes the proliferation and instigates apoptotic cell death in liver cancer HepG2 cells through repressing JAK/STAT cascade. Journal of Food Biochemistry 46(10):e14368

doi: 10.1111/jfbc.14368
[14]

Vanaja M, Annadurai G. 2013. Coleus aromaticus leaf extract mediated synthesis of silver nanoparticles and its bactericidal activity. Applied Nanoscience 3(3):217−23

doi: 10.1007/s13204-012-0121-9
[15]

Rout OP, Acharya R, Mishra SK, Sahoo R. 2012. Pathorchur (Coleus aromaticus): a review of the medicinal evidence for its phytochemistry and pharmacology properties. International Journal of Applied Biology and Pharmaceutical Technology 3(4):348−55

[16]

Rawat A, Kholiya S, Chauhan A, Venkatesha KT, Kumar D, et al. 2023. Chemical variability on Zingiber zerumbet (L.) Roscoe ex Sm. essential oil with respect to different comminution methods. Biochemical Systematics and Ecology 106:104574

doi: 10.1016/j.bse.2022.104574
[17]

Rawat A, Rawat M, Prakash OM, Kumar R, Punetha H, et al. 2022. Comparative study on eucalyptol and camphor rich essential oils from rhizomes of Hedychium spicatum Sm. and their pharmacological, antioxidant and antifungal activities. Anais Da Academia Brasileira De Ciencias 94(3):e20210932

doi: 10.1590/0001-3765202220210932
[18]

European Directorateforthe Quality Control of Medicine (EDQM). 2004. European Pharmacopoeia. 4th Edition. Strasbourg: EDQM. pp. 3158−59.

[19]

Adams RP. 2007. Identification of essential oil components by gas chromatography/mass spectrometry. Carol Stream, Illinois: Allured Publishing Corporation. Vol. 456.

[20]

Hussey RS, Barker KR. 1973. A comparison of methods of collecting inocula for Meloidogyne spp., including a new technique. Plant Disease Repository 61:328−31

[21]

Manilal A, Sujith S, Kiran GS, Selvin J, Shakir C. et al. 2009. Biopotentials of seaweeds collected from Southwest coast of India. Journal of Marine Science and Technology 17:67−73

doi: 10.51400/2709-6998.1979
[22]

Cayrol J, Djian C, Pijarowski L. 1989. Study of the nematicidal properties of the culture filtrate of the nematophagous fungus Paecilomyces lilacinus. Revue de Nematologie 12(4):331−36

[23]

Cutler S, Tworkoski T, Cutler H. 2002. The synthesis and biological evaluation of eugenol derivatives as potential herbicidal agents. In Annual Meeting of the Plant Growth Regulator Society of America. vol. 29. pp. 93−98.

[24]

El-Aswad AF, Abdelgaleil SAM, Nakatani M. 2004. Feeding deterrent and growth inhibitory properties of limonoids from Khaya senegalensis (Desr.) against the cotton leafworm, Spodoptera littoralis (Boisd.). Pest Management Science 60:199−203

doi: 10.1002/ps.818
[25]

Anza M, Endale M, Cardona L, Cortes D, Eswaramoorthy R. et al. 2021. Antimicrobial activity, in silico molecular docking, ADMET and DFT analysis of secondary metabolites from roots of three Ethiopian medicinal plants. Advances and Applications in Bioinformatics and Chemistry 14:117

doi: 10.2147/AABC.S323657
[26]

Andrade-Jorge E, Rodríguez JE, Lagos-Cruz JA, Rojas-Jiménez JI, Estrada-Soto SE, et al. 2021. Phthalamide derivatives as ACE/AChE/BuChE inhibitors against cardiac hypertrophy: an in silico, in vitro, and in vivo modeling approach. Medicinal Chemistry Research 30:964−76

doi: 10.1007/s00044-021-02707-8
[27]

Badawy MEI, Abd-Elnabi AD, Saad AFSA. 2022. Insecticidal activity of nanoemulsions of organophosphorus insecticides against cotton leafworm (Spodoptera littoralis) and molecular docking studies. International Journal of Tropical Insect Science 42:293−313

doi: 10.1007/s42690-021-00545-0
[28]

Wu YP, Wang Y, Li JH, Li RH, Wang J, et al. 2021. Design, synthesis, herbicidal activity, in vivo enzyme activity evaluation and molecular docking study of acylthiourea derivatives as novel acetohydroxyacid synthase inhibitor. Journal of Molecular Structure 1241:130627

doi: 10.1016/j.molstruc.2021.130627
[29]

Snedecor GW, Cochran WG. 1968. Statistical methods. AMEs, IOWA, USA: The Iowa State University Press.

[30]

Verma RS, Padalia RC, Chauhan A. 2012. Essential oil composition of Coleus aromaticus Benth. from Uttarakhand. Journal of Essential Oil Bearing Plants 15(2):174−79

doi: 10.1080/0972060X.2012.10644033
[31]

Tewari G, Pande C, Kharkwal G, Singh S, Singh C. 2012. Phytochemical study of essential oil from the aerial parts of Coleus aromaticus Benth. Natural Product Research 26(2):182−85

doi: 10.1080/14786419.2011.574135
[32]

Pino J, Rosado A, Borges P. 1990. Volatile components in the essential oil of wild oregano (Coleus amboinicus Lour.). Nahrung 34(9):819−23

doi: 10.1002/food.19900340912
[33]

Mallavarapu GR, Rao L, Ramesh S. 1999. Essential oil of Coleus aromaticus Benth. from India. Journal of Essential Oil Research 11(6):742−44

doi: 10.1080/10412905.1999.9712009
[34]

Valera D, Rivas R, Avila JL, Aubert L, Alonso-Amelot M, et al. 2009. The essential oil of Coleus amboinicus Loureiro chemical composition and evaluation of insect anti-feedant effect. Ciencia 11(2

[35]

Crocoll C. 2011. Biosynthesis of the phenolic monoterpenes, thymol and carvacrol, by terpene synthases and cytochrome P450s in oregano and thyme. Doctoral dissertation. Jena, Friedrich-Schiller-Universität Jena, Diss

[36]

Bhat S, Sharma A, Sharma P, Singh K, Kundan M, et al. 2023. Development and analysis of de novo transcriptome assemblies of multiple genotypes of Cymbopogon spp. reveal candidate genes involved in the biosynthesis of aromatic monoterpenes. International Journal of Biological Macromolecules 253:127508

doi: 10.1016/j.ijbiomac.2023.127508
[37]

Vilas V, Philip D, Mathew J. 2016. Biosynthesis of Au and Au/Ag alloy nanoparticles using Coleus aromaticus essential oil and evaluation of their catalytic, antibacterial and antiradical activities. Journal of Molecular Liquids 221:179−89

doi: 10.1016/j.molliq.2016.05.066
[38]

Govindaraju S, Arulselvi PI. 2018. Characterization of Coleus aromaticus essential oil and its major constituent carvacrol for in vitro antidiabetic and antiproliferative activities. Journal of Herbs, Spices & Medicinal Plants 24(1):37−51

doi: 10.1080/10496475.2017.1369483
[39]

Gunny AAN, Fang LP, Misnan NM, Gopinath SCB, Salleh NHM, et al. 2021. Microwave-assisted solvent-free extraction of essential oil from Coleus aromaticus: anti-phytopathogenic potential for fruit post-harvesting. 3 Biotech 11:166

doi: 10.1007/s13205-021-02701-2
[40]

Kordali S, Cakir A, Ozer H, Cakmakci R, Kesdek M, et al. 2008. Antifungal, phytotoxic and insecticidal properties of essential oil isolated from Turkish Origanum acutidens and its three components, carvacrol, thymol and p-cymene. Bioresource Technology 99(18):8788−95

doi: 10.1016/j.biortech.2008.04.048
[41]

Waliwitiya R, Isman MB, Vernon RS, Riseman A. 2005. Insecticidal activity of selected monoterpenoids and rosemary oil to Agriotes obscurus (Coleoptera: Elateridae). Journal of Economic Entomology 98(5):1560−65

doi: 10.1093/jee/98.5.1560
[42]

Govindarajan M, Sivakumar R, Rajeswary M, Veerakumar K. 2013. Mosquito larvicidal activity of thymol from essential oil of Coleus aromaticus Benth. against Culex tritaeniorhynchus, Aedes albopictus, and Anopheles subpictus (Diptera: Culicidae). Parasitology Research 112(11):3713−21

doi: 10.1007/s00436-013-3557-2
[43]

Pandey SK, Upadhyay S, Tripathi AK. 2009. Insecticidal and repellent activities of thymol from the essential oil of Trachyspermum ammi (Linn) Sprague seeds against Anopheles stephensi. Parasitology Research 105(2):507−12

doi: 10.1007/s00436-009-1429-6
[44]

Hammad EA, Hasanin MMH. 2022. Antagonistic effect of nanoemulsions of some essential oils against Fusarium oxysporum and root-knot nematode Meloidogyne javanica on Coleus plants. Pakistan Journal of Nematology 40(1):35−48

doi: 10.17582/journal.pjn/2022/40.1.35.48
[45]

Ntalli NG, Ferrari F, Giannakou I, Menkissoglu-Spiroudi U. 2010. Phytochemistry and nematicidal activity of the essential oils from 8 greek Lamiaceae aromatic plants and 13 terpene components. Journal of Agricultural and Food Chemistry 58:7856−63

doi: 10.1021/jf100797m
[46]

Laquale S, Sasanelli N, D'AddabboT. 2013. Attività Biocida Di Olii Essenziali di Specie di Eucalyptus nei Confronti del Nematode Galligeno Meloidogyne incognita. Proceedings of the I Congresso Nazionale della Società Italiana per la Ricercasugli Oli Essenziali (S.I.R.O.E.), Roma, Italy, 15−17 November 2013.

[47]

Faria JMS, Sena I, Ribeiro B, Rodrigues AM, Maleita CMN. et al. 2016. First report on Meloidogyne chitwoodi hatching inhibition activity of essential oils and essential oils fractions. Journal of Pest Science 89:207−17

doi: 10.1007/s10340-015-0664-0
[48]

Ntalli NG, Ferrari F, Giannakou I, Menkissoglu-Spiroudi U. 2011. Synergistic and antagonistic interactions of terpenes against Meloidogyne incognita and the nematicidal activity of essential oils from seven plants indigenous to Greece. Pest Management Science 67:341−351

doi: 10.1002/ps.2070
[49]

Choi I, Kim J, Shin S, Park I. 2007. Nematicidal activity of monoterpenoids against the pine wood nematode (Bursaphelenchus xylophilus). Russian Journal of Nematology 15(1):35

[50]

Abdel-Rahman FH, Alaniz NM, Saleh MA. 2013. Nematicidal activity of terpenoids. Journal of Environmental Science and Health Part B 48(1):16−22

doi: 10.1080/03601234.2012.716686
[51]

Pinheiro PF, Costa AV, Alves TDA, Galter IN, Pinheiro CA. et al. 2015. Phytotoxicity and cytotoxicity of essential oil from leaves of Plectranthus amboinicus, carvacrol, and thymol in plant bioassays. Journal of Agricultural and Food Chemistry 63(41):8981−90

doi: 10.1021/acs.jafc.5b03049
[52]

Uremis I, Arslan M, Sangun MK. 2009. Herbicidal activity of essential oils on the germination of some problem weeds. Asian Journal of Chemistry 21(4):3199−210

[53]

El Azim WMA, Balah MA. 2016. Nanoemulsions formation from essential oil of Thymus capitatus and Majorana hortensis and their use in weed control. Indian Journal of Weed Science 48:421−27

doi: 10.5958/0974-8164.2016.00108.8
[54]

Kashkooli AB, Saharkhiz MJ. 2014. Essential oil compositions and natural herbicide activity of four Denaei Thyme (Thymus daenensis Celak.) ecotypes. Journal of Essential Oil Bearing Plants 17:859−74

doi: 10.1080/0972060X.2014.884946
[55]

Nikolova M, Traykova B, Yankova-Tsvetkova E, Stefanova T, Dzhurmanski A, et al. 2021. Herbicide potential of selected essential oils from plants of Lamiaceae and Asteraceae families. Acta Agrobotanica 74(1):1−7

[56]

Vasilakoglou I, Dhima K, Paschalidis K, Ritzoulis C. 2013. Herbicidal potential on Lolium rigidum of nineteen major essential oil components and their synergy. Journal Essential Oil Research 25(1):1−10

doi: 10.1080/10412905.2012.751054
[57]

Azirak S, Karaman S. 2008. Allelopathic effect of some essential oils and components on germination of weed species. Acta Agriculturae Scandinavica, Section B — Soil & Plant Scienceence 58(1):88−92

doi: 10.1080/09064710701228353
[58]

Singh P, Prakash B, Dubey NK. 2014. Insecticidal activity of Ageratum conyzoides L., Coleus aromaticus Benth. and Hyptis suaveolens (L.) Poit essential oils as fumigant against storage grain insect Tribolium castaneum Herbst. Journal of Food Science and Technology 51:2210−15

doi: 10.1007/s13197-012-0698-8
[59]

Govindaraju S, Karthik C, Arulselvi PI. 2016. Evaluation of chemical composition and larvicidal activity of Coleus aromaticus essential oil, its major compound carvacrol against Aedes aegypti, Culex quinquefasciatus, and Anopheles stephensi (Diptera: Culicidae). International Journal of Mosquito Research 3(3):6−11

[60]

Singh G, Singh OP, Prasad YR, De Lampasona MP, Catalan C. 2002. Studies on essential oils, Part 33: Chemical and insecticidal investigations on leaf oil of Coleus amboinicus Lour. Flavour Fragrance Journal 17(6):440−42

doi: 10.1002/ffj.1123
[61]

Natal CM, Fernandes MJG, Pinto NFS, Pereira RB, Vieira TF, et al. 2021. New carvacrol and thymol derivatives as potential insecticides: Synthesis, biological activity, computational studies and nanoencapsulation. RSC Advances 11(54):34024−35

doi: 10.1039/D1RA05616F
[62]

Kumrungsee N, Dunkhunthod B, Manoruang W, Koul O, Pluempanupat W, et al. 2022. Synergistic interaction of thymol with Piper ribesioides (Piperales: Piperaceae) extracts and isolated active compounds for enhanced insecticidal activity against Spodoptera exigua (Lepidoptera: Noctuidae). Chemical and Biological Technologies in Agriculture 9(1):38

doi: 10.1186/s40538-022-00306-2