Comparative Analysis on Metabolites of Torbangun (Plectranthus amboinicus (Lour.) Spreng.) Leaves Mutant

Analisis komparatif kandungan metabolit pada daun mutan tanaman Torbangun (Plectranthus amboinicus (Lour.) Spreng.)

Authors

  • Syarifah Iis Aisyah Bogor Agriculture University
  • Henny Rusmiyati Bogor Agriculture University
  • Dewi Sukma Bogor Agriculture University
  • Rizal Damanik Bogor Agriculture University
  • Waras Nurcholis Bogor Agriculture University

DOI:

https://doi.org/10.33019/agrosainstek.v4i1.109

Keywords:

Chemometric, GC-MS, HCA, Metabolomics, Torbangun, Plectranthus amboinicus

Abstract

Torbangun (Plectranthus amboinicus) is a medicinal plant belonging to the Lamiaceae family. In Batak society, the torbangun leaves are consumed to increase breast milk production. The phytochemical variability can be improved by gamma-ray irradiation for plant breeding programs. In this work, a non-targeted metabolomics method was followed to evaluate the compounds profile of irradiated mutant and wild-type on leaves of P. amboinicus. GC-MS analyses evaluated the mutant putative (derived from gamma-ray irradiation) and wild-type plantlets. The resulting of GC-MS data were analyzed with chemometric analysis using hierarchical cluster analysis (HCA). The chemical diversity was showed in mutant and wild-type P. amboinicus. The major metabolite in plantlet wild-type were hydroxymethylfurfural (35.15%), brevifolin (7.69%), 3-Dihydro-3,5-Dihydroxy-6-Methyl-4H-Pyran-4-one (DDMP) (13.13%), stigmasterol (6.51%) and ferruginol (8.63%). However, the compound of DDMP (19.57%), neophytadiene (8.47%), linolenic acid (9.10%), ferruginol (7.61%), stigmasterol (14.14%) and gamma-sitosterol (7.08%) were identified in mutant plantlet. HCA showed diversity between wild-type and mutant plantlets, which highest content of DDMP and stigmasterol and lowest of hydroxymethylfurfural of mutant plantlet.

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Author Biographies

Syarifah Iis Aisyah, Bogor Agriculture University

Departemen Agronomi dan Hortikultura, Fakultas Pertanian

Henny Rusmiyati, Bogor Agriculture University

Departemen Agronomi dan Hortikultura, Fakultas Pertanian

Dewi Sukma, Bogor Agriculture University

Departemen Agronomi dan Hortikultura, Fakultas Pertanian

Rizal Damanik, Bogor Agriculture University

Departemen Gizi Masyarakat, Fakultas Ekologi Manusia

Waras Nurcholis, Bogor Agriculture University

Pusat Studi Biofarmaka Tropika

Departemen Biokimia, Fakultas Matematika dan Ilmu Pengetahuan Alam

References

Antwi AO, Obiri DD, Osafo N, Forkuo AD, Essel LB. 2017. Stigmasterol inhibits lipopolysaccharide-induced innate immune responses in murine models. Int Immunopharmacol. 53:105–113.

Balamurugan R, Duraipandiyan V, Ignacimuthu S. 2011. Antidiabetic activity of γ-sitosterol isolated from Lippia nodiflora L. in streptozotocin induced diabetic rats. Eur J Pharmacol. 667(1):410–418.

Cáceres LA, McGarvey BD, Briens C, Berruti F, Yeung KK-C, Scott IM. 2015. Insecticidal properties of pyrolysis bio-oil from greenhouse tomato residue biomass. J Anal Appl Pyrolysis. 112:333–340.

Chen Y-S, Yu H-M, Shie J-J, Cheng T-JR, Wu C-Y, Fang J-M, Wong C-H. 2014. Chemical constituents of Plectranthus amboinicus and the synthetic analogs possessing anti-inflammatory activity. Bioorg Med Chem. 22(5):1766–1772.

Damanik R, Wahlqvist ML, Wattanapenpaiboon N. 2006. Lactagogue effects of Torbangun, a Bataknese traditional cuisine. Asia Pac J Clin Nutr. 15(2):267–274.

Damanik RT. 2009. a Bataknese traditional cuisine perceived as lactagogue by Bataknese lactating women in Simalungun, North Sumatera, Indonesia. J Hum Lact. 25(1):64–72.

El-hawary SS, El-sofany RH, Abdel-Monem AR, Ashour RS, Sleem AA. 2012. Polyphenolics content and biological activity of Plectranthus amboinicus (Lour.) spreng growing in Egypt (Lamiaceae). Pharmacogn J. 4(32):45–54.

González MA, Clark J, Connelly M, Rivas F. 2014. Antimalarial activity of abietane ferruginol analogues possessing a phthalimide group. Bioorg Med Chem Lett. 24(22):5234–5237.

Han A-R, Kim HY, So Y, Nam B, Lee I-S, Nam J-W, Jo YD, Kim SH, Kim J-B, Kang S-Y. 2017. Quantification of antioxidant phenolic compounds in a new chrysanthemum cultivar by high-performance liquid chromatography with diode array detection and electrospray ionization mass spectrometry. Int J Anal Chem. ID 1254721:8.

Hussein HM, Hameed RH, Hameed IH. 2018. Screening of bioactive Compounds of Ricinus communis Using GC-MS and FTIR and Evaluation of its antibacterial and antifungal activity. Indian J Public Heal Res Dev. 9(5):467–473.

Iwansyah AC, Damanik MRM, Kustiyah L, Hanafi M. 2017. Potensi fraksi etil asetat daun torbangun (Coleus amboinicus L.) dalam meningkatkan produksi susu, bobot badan induk, dan anak tikus. J Gizi dan Pangan. 12(1):61–68.

Jalili M, Ansari F. 2015. Identification and Quantification of 5-Hydroxymethyl Furfural in Food Products TT -. Nutr-Food-Sci-Res. 2(1):47–53.

Khare RS, Banerjee S, Kundu K. 2011. Coleus aromaticus Benth-A nutritive medicinal plant of potential therapeutic value. Int J Pharma Bio Sci. 2(3):B488–B500.

Kusuma AVC, Chozin MA, Guntoro D. 2017. Senyawa fenol dari tajuk dan umbi teki (Cyperus rotundus L.) pada berbagai umur pertumbuhan serta pengaruhnya terhadap perkecambahan gulma berdaun lebar. J Agron Indones (Indonesian J Agron.) 45(1):100–107.

Le C-F, Kailaivasan TH, Chow S-C, Abdullah Z, Ling S-K, Fang C-M. 2017. Phytosterols isolated from Clinacanthus nutans induce immunosuppressive activity in murine cells. Int Immunopharmacol. 44:203–210.

Lifsey HC, Kaur R, Thompson BH, Bennett L, Temel RE, Graf GA. 2020. Stigmasterol stimulates transintestinal cholesterol excretion independent of liver X receptor activation in the small intestine. J Nutr Biochem. 76:108263.

Mohanty I, Senapati MR, Jena D, Behera PC. 2014. Ethnoveterinary importance of herbal galactogogues-a review. Vet World. 7(5).

Mothana RA, Khaled JM, El-Gamal AA, Noman OM, Kumar A, Alajmi MF, Al-Rehaily AJ, Al-Said MS. 2019. Comparative evaluation of cytotoxic, antimicrobial and antioxidant activities of the crude extracts of three Plectranthus species grown in Saudi Arabia. Saudi Pharm J. 27(2):162–170.

Patel R, Mahobia N, Sheikh D, Upwar N, Singh S. 2010. Phyto-Physicochemical Investigation of Leaves of Plectranthus amboinicus (Lour) Spreng. Pharmacogn J. 2:536–542.

Pauls SD, Rodway LA, Winter T, Taylor CG, Zahradka P, Aukema HM. 2020. Alpha-linolenic acid enhances the phagocytic and secretory functions of alternatively activated macrophages in part via changes to the oxylipin profile. Int J Biochem Cell Biol. 119:105662.

Ramalakshmi S, Muthuchelian K. 2011. Analysis of bioactive constituents from the ethanolic leaf extract of Tabebuia rosea (Bertol.) DC by gas chromatography-mass spectrometry. Int J Chem Tech Res. 3:1054–1059.

Ramsden CE, Hennebelle M, Schuster S, Keyes GS, Johnson CD, Kirpich IA, Dahlen JE, Horowitz MS, Zamora D, Feldstein AE, et al. 2018. Effects of diets enriched in linoleic acid and its peroxidation products on brain fatty acids, oxylipins, and aldehydes in mice. Biochim Biophys Acta - Mol Cell Biol Lipids. 1863(10):1206–1213.

Roa-Linares VC, Brand YM, Agudelo-Gomez LS, Tangarife-Castaño V, Betancur-Galvis LA, Gallego-Gomez JC, González MA. 2016. Anti-herpetic and anti-dengue activity of abietane ferruginol analogues synthesized from (+)-dehydroabietylamine. Eur J Med Chem. 108:79–88.

Robbat Jr A, Kfoury N, Baydakov E, Gankin Y. 2017. Optimizing targeted/untargeted metabolomics by automating gas chromatography/mass spectrometry workflows. J Chromatogr A. 1505:96–105.

Shapla UM, Solayman M, Alam N, Khalil MI, Gan SH. 2018. 5-Hydroxymethylfurfural (HMF) levels in honey and other food products: effects on bees and human health. Chem Cent J. 12(1):35.

Singh R, Dar SA, Sharma P. 2012. Antibacterial activity and toxicological evaluation of semi purified hexane extract of Urtica dioica leaves. Res J Med Plants. 6(2):123–135.

Suryowati T, Rimbawan R, Damanik RM, Bintang M, Handharyani E. 2015. Identifikasi komponen kimia dan aktivitas antioksidan dalam tanaman torbangun (Coleus amboinicus Lour). J Gizi dan Pangan. 10(3):217–224.

Tran PT, Ho CQ. 2017. Breeding new aromatic rice with high iron using gamma radiation and hybridization BT - Biotechnologies for Plant Mutation Breeding: Protocols. In: Jankowicz-Cieslak J, Tai TH, Kumlehn J, Till BJ, editors. Biotechnol Plant Mutat Breed [Internet]. Cham: Springer International Publishing; p. 173–191. https://doi.org/10.1007/978-3-319-45021-6_11

Vijayakumar S, Vinoj G, Malaikozhundan B, Shanthi S, Vaseeharan B. 2015. Plectranthus amboinicus leaf extract mediated synthesis of zinc oxide nanoparticles and its control of methicillin resistant Staphylococcus aureus biofilm and blood sucking mosquito larvae. Spectrochim Acta Part A Mol Biomol Spectrosc. 137:886–891.

Wang Y, Li X, Jiang Q, Sun H, Jiang J, Chen S, Guan Z, Fang W, Chen F. 2018. GC-MS Analysis of the volatile constituents in the leaves of 14 Compositae plants. Molecules. 23(1):166.

Yulianto W, Andarwulan N, Giriwono PE, Pamungkas J. 2016. HPLC-based metabolomics to identify cytotoxic compounds from Plectranthus amboinicus (Lour.) Spreng against human breast cancer MCF-7 Cells. J Chromatogr B. 1039:28–34.

Zeng Z, Li J, Hugel HM, Xu G, Marriott PJ. 2014. Interpretation of comprehensive two-dimensional gas chromatography data using advanced chemometrics. TrAC Trends Anal Chem. 53:150–166.

Zhang D, Wang X, Li S, Wang C, Gosney MJ, Mickelbart M V, Ma J. 2019. A post-domestication mutation, Dt2, triggers systemic modification of divergent and convergent pathways modulating multiple agronomic traits in soybean. Mol Plant. 12(10):1366–1382.

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Published

2020-03-12

How to Cite

Aisyah, S. I. (2020) “Comparative Analysis on Metabolites of Torbangun (Plectranthus amboinicus (Lour.) Spreng.) Leaves Mutant: Analisis komparatif kandungan metabolit pada daun mutan tanaman Torbangun (Plectranthus amboinicus (Lour.) Spreng.)”, AGROSAINSTEK: Jurnal Ilmu dan Teknologi Pertanian, 4(1), pp. 10–16. doi: 10.33019/agrosainstek.v4i1.109.