Micropropagation of Kaempferia angustifolia Roscoe - An Aromatic, Essential Oil Yielding, Underutilized Medicinal Plant of Zingiberaceae Family

Journal of Crop Science and Biotechnology - Tập 21 - Trang 147-153 - 2018
Sk Moquammel Haque1, Biswajit Ghosh1
1Plant Biotechnology Laboratory, Post Graduate Department of Botany, Ramakrishna Mission Vivekananda Centenary College, Rahara, Kolkata, India

Tóm tắt

Kaempferia angustifolia is an aromatic, essential oil-yielding plant of the Zingiberaceae family with an ethno-medicinal repute. We standardized an effective system for micropropagation of K. angustifolia, and this is probably the very first report of in vitro culture of this species. Axillary buds were cultured on a Murashige and Skoog (MS) medium supplemented with various concentrations and combinations of plant growth regulators (PGRs) and spermidine. Highest multiplication occurred when the MS medium was supplemented with a combination of 2.0 mg L−1 6-benzylaminopurine (BAP), 2.0 mg L−1 kinetin (KIN) and 1.0 mg L−1 α-naphthalene acetic acid (NAA). Addition of spermidine (2.0 mM) along with optimum PGRs had further improved the multiplication rate with a maximum of 6.6 ± 0.36 shoots per explant within 60 days of implantation. The number of multiplied shoots per explant increased with each subsequent regeneration cycle; and the shoots per explant increased from 6.6 ± 0.36 on the 1st regeneration cycle to 10.3 ± 0.42 on the 2nd regeneration cycle and further increased to 13.7 ± 0.37 on the 3rd regeneration cycle on the same medium composition. The best result for in vitro root induction of multiplied shoot was achieved on a half-strength MS medium fortified with 2.0 mg L−1 IBA, with a maximum of 18.5 ± 0.28 roots per shoot. Regenerated plantlets were acclimatized with 88.9 % survival rate. After 9 months of field-transfer, all these plants were harvested and rhizomes were collected. However, the present protocol can definitely be applied for large-scale propagation and commercial cultivation of K. angustifolia.

Tài liệu tham khảo

Anwar R, Mattoo AK, Handa AK. 2015. Polyamine interactions with plant hormones: crosstalk at several levels, In: T Kusano, H Suzuki, eds., Polyamines: universal molecular nexus for growth, survival, and specialized metabolism. Springer, Japan, pp 267–302 Bhattacharya M, Sen A. 2013. In vitro regeneration of pathogen free Kaempferia galanga L. —a rare medicinal plant. Res. Plant Biol. 3: 24–30 bin Jantan I, Yassin MSM, Chin CB, Chen LL, Sim NL. 2003. Antifungal activity of the essential oils of nine Zingiberaceae species. Pharm. Biol. 41: 392–397 Chirangini P, Sinha SK, Sharma GJ. 2005. In vitro propagation and microrhizome induction in Kaempferia galanga Linn. and K. rotunda Linn. Ind. J. Biotech. 4: 404–408 Chithra M, Martin KP, Sunandakumari C, Madhusoodanan PV. 2005. Protocol for rapid propagation and to overcome delayed rhizome formation in field established in vitro derived plantlets of Kaempferia galanga L. Sci. Hortic. 104: 113–120 Das A, Kesari V, Rangan L. 2013. Micropropagation and cytogenetic assessment of Zingiber species of Northeast India. 3 Biotech. 3(6): 471–479 Das Bhowmik SS, Basu A, Sahoo L. 2016. Direct shoot organogenesis from rhizomes of medicinal Zingiber Alpinia calcarata Rosc. and evaluation of genetic stability by RAPD and ISSR markers. J. Crop Sci. Biotech. 19: 157 Geetha SP, Manjula C, John CZ, Minoo D, Nirmal Babu K, Ravindran PN. 1997. Micropropagation of Kaempferia spp. (K. galanga L. and K. rotunda L.). J. Spices Aromat. Crops 6(2): 129–135 Haque SM, Ghosh B. 2013a. High frequency microcloning of Aloe vera and their true-to-type conformity by molecular cytogenetic assessment of two-year-old field growing regenerated plants. Bot. Stud. 54: 46 Haque SM, Ghosh B. 2013b. Micropropagation, in vitro flowering and cytological studies of Bacopa chamaedryoides, an ethnomedicinal plant. Environ. Exp. Biol. 127: 71–83 Haque SM, Ghosh B. 2013c. Field evaluation and genetic stability assessment of regenerated plants produced via direct shoot organogenesis from leaf explant of an endangered “asthma plant” (Tylophora indica) along with their in vitro conservation. Natl. Acad. Sci. Lett. 36: 551–562 Haque SM, Ghosh B. 2014. Somatic embryogenesis and synthetic seed production—a biotechnological approach for true-to-type propagation and in vitro conservation of an ornamental bulbaceous plant Drimiopsis kirkii Baker. Appl. Biochem. Biotechnol. 172: 4013–4024 Haque SM, Ghosh B. 2016. High-frequency somatic embryogenesis and artificial seeds for mass production of true-to-type plants in Ledebouria revoluta: an important cardioprotective plant. Plant Cell Tiss. Org. Cult. 127: 71–83 Haque SM, Ghosh B. 2017. Regeneration of cytologically stable plants through dedifferentiation, redifferentiation, and artificial seeds in Spathoglottis plicata Blume. (Orchidaceae). Hort. Plant J. 3(5): 199–208 Haque SM, Ghosh B. 2018. An improved micropropagation protocol for the recalcitrant plant Capsicum–a study with ten cultivars of Capsicum spp. (C. annuum, C. chinense, and C. frutescens) collected from diverse geographical regions of India and Mexico. J. Hort. Sci. Biotechnol. 93: 91–99 Ibemhal A, Laishram JM, Dhananjoy CH, Naorem B, Toijam R. 2012. In vitro induction of multiple shoot and root from the rhizome of Kaempferia galanga L. NeBIO 3(3): 46–50 Kalpana M, Anbazhagan M. 2009. In vitro production of Kaempferia galanga L. an endangered medicinal plant. J. Phytol. 1: 56–61 Mohammed A, Chiruvella KK, Ghanta RG. 2016. In vitro plant regeneration, flowering and fruiting from nodal explants of Andrographis lineata Nees (Acanthaceae). J. Crop Sci. Biotech. 19(3): 195–202 Mohanty S, Parida R, Singh S, Joshi RK, Subudhi E, Nayak S. 2011. Biochemical and molecular profiling of micropropagated and conventionally grown Kaempferia galanga. Plant Cell Tiss. Org. Cult. 106: 39–46 Murashige T, Skoog F. 1962. A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant. 15: 495–497 Pancharoen O, Tuntiwachwuttikul P, Taylor WC. 1989. Cyclohexane oxide derivatives from Kaempferia angustifolia and Kaempferia species. Photochemistry 28(4): 1143–1148 Parida R, Mohanty S, Kuanar A, Nayak S. 2010. Rapid multiplication and in vitro production of leaf biomass in Kaempferia galanga through tissue culture. Electr. J. Biotechnol. 13(4): 1–8 Rahman MM, Amin MN, Ahamed T, Ali MR, Habib A. 2004. Efficient plant regeneration through somatic embryogenesis from leaf base-derived callus of Kaempferia galanga L. Asian J. Plant Sci. 3(6): 675–678 Raina AP, Abraham Z, Sivaraj N. 2015. Diversity analysis of Kaempferia galanga L. germplasm from South India using DIVA-GIS approach. Ind. Crop Prod. 69: 433–439 Raju CS, Aslam A, Kathiravan K, Palani P, Shajahan A. 2014. Direct somatic embryogenesis and plant regeneration from leaf sheath explants of mango ginger (Curcuma amada Roxb.). In Vitro Cell. Dev. Biol. Plant. 50: 752–759 Rout GR, Palai SK, Samantaray S, Das P. 2001. Effect of growth regulator and culture conditions on shoot multiplication and rhizome formation in ginger (Zingiber officinale Rosc.) in vitro. In Vitro Cell. Dev. Biol. Plant. 37: 814–819 Saensouk P, Muangsan N, Saensouk S, Sirinajun P. 2016. In vitro propagation of Kaempferia marginata Carey ex Roscoe, a native plant species to Thailand. J. Anim. Plant Sci. 26(5): 1405–1410 Sanatombi R, Sanatombi K. 2017. Biotechnology of Zingiber montanum (Koenig) Link ex A. Dietr.: A review. J. Appl. Res. Med. Aromat. Plants 4: 1–4 Senarath RMUS, Karunarathna BMAC, Senarath WTPSK, Jimmy GC. 2017. In vitro propagation of Kaempferia galanga (Zingiberaceae) and comparison of larvicidal activity and phytochemical identities of rhizomes of tissue cultured and naturally grown plants. J. Appl. Biotechnol. Bioeng. 2(4): 00040 Shirin F, Kumar S, Mishra Y. 2000. In vitro plantlet production system for Kaempferia galanga, a rare Indian medicinal herb. Plant Cell Tiss. Org. Cult. 63: 193–197 Sirat HM, Jamil S, Siew LW. 2005. The rhizome oil of Kaempferia rotunda Val. J. Essent. Oil Res. 17: 306–307 Sukari MA, Neoh BK, Lajis NH, Ee GCL, Rahmani M, Ahmad FH, Yusof UK. 2004. Chemical constituents of Kaempferia angustifolia (Zingiberaceae). Orient. J. Chem. 20: 451–456 Sukari MA, Neoh BK, Rahmani M, Khalid K, Lajis MN, Taufiq-Yap YH, Ee GCL. 2008. Essential oils from rhizomes of Kaempferia angustifolia Roscoe and Kaempferia rotunda L. Ultra. Sci. Phys. Sci.-B 20: 611–616 Sukari MA, Rashid NY, Neoh BK, Abu Bakar NH, Riyanto S, Ee GCL. 2010. Larvicidal activity of some Curcuma and Kaempferia rhizome extracts against dengue fever mosquito Aedes aegypti Linnaeus (Diptera: Culidae). Asian J. Chem. 22: 7915–7919 Sulaiman MR, Zakaria ZA, Duad IA, Hidayat MT. 2008. Antinociceptive and anti-inflammatory activities of the aqueous extract of Kaempferia galanga leaves in animal models. J. Nat. Med. 62: 221–227 Sultana A, Hassan L, Ahmad SD, Shah AH, Batool F, Islam MA, Rahman R, Moonmoon S. 2009. In vitro regeneration of ginger using leaf, shoot tip and root explants. Pak. J. Bot. 41(4): 1667–1676 Tang SW, Sukari MA, Rahmani M, Lajis NH, Ali AM. 2011. A new abietene diterpene and other constituents from Kaempferia angustifolia Rosc. Molecules 16: 3018–3028 Tang SW, Sukari MA, Neoh BK, Yu YSY, Abdul AB, Kifli N, Ee GCL. 2014. Phytochemicals from Kaempferia angustifolia Rosc. and their cytotoxic and antimicrobial activities. BioMed. Res. Int. 2014: 417–674 Thomas TD, Hoshino Y. 2016. In vitro strategies for the conservation of some medicinal and horticultural climbers. In: Shahzad A, Sharma S, Siddiqui SA, eds, Biotechnological strategies for the conservation of medicinal and ornamental climbers. Springer, Cham, pp 259–290 Tyagi RK, Agrawal A, Mahalakshmi C, Hussain Z, Tyagi H. 2007. Low-cost media for in vitro conservation of turmeric (Curcuma longa L.) and genetic stability assessment using RAPD markers. In Vitro Cell. Dev. Biol. Plant. 43: 51–58 Vincent KA, Mathew KM, Hariharan M. 1992. Micropropagation of Kaempferia galanga L.–a medicinal plant. Plant Cell. Tiss. Org. Cult. 28: 229–230 Vipunngeun N, Palanuvej C, Ruangrungsi N. 2007. Essential oil from Kaempferia angustifolia rhizome: chemical compositions and antimicrobial activities. J. Health. Res. 21: 275–278 Viu AFM, Viu MAO, Tavares AR, Vianello F, Lima GPP. 2009. Endogenous and exogenous polyamines in the organogenesis in Curcuma longa L. Sci. Hortic. 121(4): 501–504 Woerdenbag HJ, Windono T, Bos R, Riswan S, Quax WJ. 2004. Composition of the essential oils of Kaempferia rotunda L. and Kaempferia angustifolia Roscoe rhizomes from Indonesia. Flavour. Fragr. J. 19: 145–148 Yeap YSY, Kassim NK, Ng RC, Ee GCL, Yazan LS, Musa KH. 2017. Antioxidant properties of ginger (Kaempferia angustifolia Rosc.) and its chemical markers. Int. J. Food Prop. 20: 1158–1172