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Published in: BMC Complementary Medicine and Therapies 1/2015

Open Access 01-12-2015 | Research article

Phylogenetic spectrum and analysis of antibacterial activities of leaf extracts from plants of the genus Rhododendron

Authors: Ahmed Rezk, Jennifer Nolzen, Hartwig Schepker, Dirk C Albach, Klaudia Brix, Matthias S Ullrich

Published in: BMC Complementary Medicine and Therapies | Issue 1/2015

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Abstract

Background

Plants are traditionally used for medicinal treatment of numerous human disorders including infectious diseases caused by microorganisms. Due to the increasing resistance of many pathogens to commonly used antimicrobial agents, there is an urgent need for novel antimicrobial compounds. Plants of the genus Rhododendron belong to the woody representatives of the family Ericaceae, which are typically used in a range of ethno-medical applications. There are more than one thousand Rhododendron species worldwide. The Rhododendron-Park Bremen grows plants representing approximately 600 of the known Rhododendron species, and thus enables research involving almost two thirds of all known Rhododendron species.

Methods

Twenty-six bacterial species representing different taxonomic clades have been used to study the antimicrobial potential of Rhododendron leaf extracts. Agar diffusion assay were conducted using 80% methanol crude extracts derived from 120 Rhododendron species. Data were analyzed using principal component analysis and the plant-borne antibacterial activities grouped according the first and second principal components.

Results

The leaf extracts of 17 Rhododendron species exhibited significant growth-inhibiting activities against Gram-positive bacteria. In contrast, only very few of the leaf extracts affected the growth of Gram-negative bacteria. All leaf extracts with antimicrobial bioactivity were extracted from representatives of the subgenus Rhododendron, with 15 from the sub-section Rhododendron and two belonging to the section Pogonanthum. The use of bacterial multidrug efflux pump mutants revealed remarkable differences in the susceptibility towards Rhododendron leaf extract treatment.

Conclusions

For the first time, our comprehensive study demonstrated that compounds with antimicrobial activities accumulate in the leaves of certain Rhododendron species, which mainly belong to a particular subgenus. The results suggested that common genetic traits are responsible for the production of bioactive secondary metabolite(s) which act primarily on Gram-positive organisms, and which may affect Gram-negative bacteria in dependence of the activity of multidrug efflux pumps in their cell envelope.
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Literature
1.
go back to reference Hill AF. Economic botany: a textbook of useful plants and plant products. New York: McGraw-Hill; 1952. Hill AF. Economic botany: a textbook of useful plants and plant products. New York: McGraw-Hill; 1952.
2.
go back to reference Sofowora A. Medicinal plants and traditional medicine in Africa. New York: Wiley; 1982. Sofowora A. Medicinal plants and traditional medicine in Africa. New York: Wiley; 1982.
3.
go back to reference Popescu R, Kopp B. The genus Rhododendron: an ethnopharmacological and toxicological review. J Ethnopharmacol. 2013;147(1):42–62.CrossRefPubMed Popescu R, Kopp B. The genus Rhododendron: an ethnopharmacological and toxicological review. J Ethnopharmacol. 2013;147(1):42–62.CrossRefPubMed
4.
go back to reference WHO. WHO traditional medicine strategy 2002–2005. Geneva: WHO; 2002. WHO. WHO traditional medicine strategy 2002–2005. Geneva: WHO; 2002.
5.
go back to reference Farnsworth NR, Soejarto DD. The conservation of medicinal plants. In: O. A, V. H, H. S, editor. Global importance of medicinal plants. Cambridge: Cambridge University Press; 1991. p. 25–51. Farnsworth NR, Soejarto DD. The conservation of medicinal plants. In: O. A, V. H, H. S, editor. Global importance of medicinal plants. Cambridge: Cambridge University Press; 1991. p. 25–51.
6.
go back to reference Kim H-S. Do not put too much value on conventional medicines. J Ethnopharmacol. 2005;100(1–2):37–9.CrossRefPubMed Kim H-S. Do not put too much value on conventional medicines. J Ethnopharmacol. 2005;100(1–2):37–9.CrossRefPubMed
8.
go back to reference Acar JF. Consequences of bacterial resistance to antibiotics in medical practice. Clin Infect Dis. 1997;24(1):17–8.CrossRef Acar JF. Consequences of bacterial resistance to antibiotics in medical practice. Clin Infect Dis. 1997;24(1):17–8.CrossRef
9.
go back to reference Valentin Bhimba B, Meenupriya J, Joel EL, Naveena DE, Kumar S, Thangaraj M. Antibacterial activity and characterization of secondary metabolites isolated from mangrove plant Avicennia officinalis. Asian Pac J Trop Med. 2010;3(7):544–6.CrossRef Valentin Bhimba B, Meenupriya J, Joel EL, Naveena DE, Kumar S, Thangaraj M. Antibacterial activity and characterization of secondary metabolites isolated from mangrove plant Avicennia officinalis. Asian Pac J Trop Med. 2010;3(7):544–6.CrossRef
10.
go back to reference Hunter MD, Hull LA. Variation in concentrations of phloridzin and phloretin in apple foliage. Phytochem. 1993;34(5):1251–4.CrossRef Hunter MD, Hull LA. Variation in concentrations of phloridzin and phloretin in apple foliage. Phytochem. 1993;34(5):1251–4.CrossRef
11.
go back to reference Omulokoli E, Khan B, Chhabra SC. Antiplasmodial activity of four Kenyan medicinal plants. J Ethnopharmacol. 1997;56(2):133–7.CrossRefPubMed Omulokoli E, Khan B, Chhabra SC. Antiplasmodial activity of four Kenyan medicinal plants. J Ethnopharmacol. 1997;56(2):133–7.CrossRefPubMed
12.
go back to reference Demain AL, Fang A. The natural functions of secondary metabolites. Adv Biochem Eng Biotechnol. 2000;69:1–39.PubMed Demain AL, Fang A. The natural functions of secondary metabolites. Adv Biochem Eng Biotechnol. 2000;69:1–39.PubMed
13.
go back to reference Bennett RN, Wallsgrove RM. Secondary metabolites in plant defence mechanisms. New Phytol. 1994;127(4):617–33.CrossRef Bennett RN, Wallsgrove RM. Secondary metabolites in plant defence mechanisms. New Phytol. 1994;127(4):617–33.CrossRef
14.
go back to reference Chamberlain DF, Hyam R, Argent G, Fairweather G, Walter KS. The genus Rhododendron. Its classification and synonymy. Edinburgh: Royal Botanical Garden; 1996. Chamberlain DF, Hyam R, Argent G, Fairweather G, Walter KS. The genus Rhododendron. Its classification and synonymy. Edinburgh: Royal Botanical Garden; 1996.
15.
go back to reference Innocenti G, Dall’ Acqua S, Scialino G, Banfi E, Sosa S, Gurung K, et al. Chemical composition and biological properties of rhododendron anthopogon essential oil. Mol. 2010;15(4):2326–38.CrossRef Innocenti G, Dall’ Acqua S, Scialino G, Banfi E, Sosa S, Gurung K, et al. Chemical composition and biological properties of rhododendron anthopogon essential oil. Mol. 2010;15(4):2326–38.CrossRef
16.
go back to reference Kim M-H, Nugroho A, Choi J, Park J, Park H-J. Rhododendrin, an analgesic/anti-inflammatory arylbutanoid glycoside, from the leaves of Rhododendron aureum. Arch Pharm Res. 2011;34(6):971–8.CrossRefPubMed Kim M-H, Nugroho A, Choi J, Park J, Park H-J. Rhododendrin, an analgesic/anti-inflammatory arylbutanoid glycoside, from the leaves of Rhododendron aureum. Arch Pharm Res. 2011;34(6):971–8.CrossRefPubMed
17.
go back to reference Dampc A, Luczkiewicz M. Rhododendron tomentosum (Ledum palustre). A review of traditional use based on current research. Fitoterapia. 2013;85:130–43.CrossRefPubMed Dampc A, Luczkiewicz M. Rhododendron tomentosum (Ledum palustre). A review of traditional use based on current research. Fitoterapia. 2013;85:130–43.CrossRefPubMed
18.
go back to reference Rehman SU, Khan R, Bhat KA, Raja AF, Shawl AS, Alam MS. Isolation, characterisation and antibacterial activity studies of coumarins from Rhododendron lepidotum Wall. ex G. Don, Ericaceae. Revista Brasileira de Farmacognosia. 2010;20:886–90.CrossRef Rehman SU, Khan R, Bhat KA, Raja AF, Shawl AS, Alam MS. Isolation, characterisation and antibacterial activity studies of coumarins from Rhododendron lepidotum Wall. ex G. Don, Ericaceae. Revista Brasileira de Farmacognosia. 2010;20:886–90.CrossRef
19.
go back to reference Dorman HJ, Deans SG. Antimicrobial agents from plants: antibacterial activity of plant volatile oils. J Appl Microbiol. 2000;88(2):308–16.CrossRefPubMed Dorman HJ, Deans SG. Antimicrobial agents from plants: antibacterial activity of plant volatile oils. J Appl Microbiol. 2000;88(2):308–16.CrossRefPubMed
20.
go back to reference Wang W, Li N, Luo M, Zu Y, Efferth T. Antibacterial activity and anticancer activity of rosmarinus officinalis L. Essential oil compared to that of its main components. Mol. 2012;17(3):2704–13.CrossRef Wang W, Li N, Luo M, Zu Y, Efferth T. Antibacterial activity and anticancer activity of rosmarinus officinalis L. Essential oil compared to that of its main components. Mol. 2012;17(3):2704–13.CrossRef
21.
go back to reference Jaiswal R, Jayasinghe L, Kuhnert N. Identification and characterization of proanthocyanidins of 16 members of the Rhododendron genus (Ericaceae) by tandem LC-MS. J Mass Spectrom: JMS. 2012;47(4):502–15.CrossRefPubMed Jaiswal R, Jayasinghe L, Kuhnert N. Identification and characterization of proanthocyanidins of 16 members of the Rhododendron genus (Ericaceae) by tandem LC-MS. J Mass Spectrom: JMS. 2012;47(4):502–15.CrossRefPubMed
22.
go back to reference Sambrook J, Russell DW. Molecular cloning: a laboratory manual. New York, USA: Cold Spring Habor Laboratory Press; 2001. Sambrook J, Russell DW. Molecular cloning: a laboratory manual. New York, USA: Cold Spring Habor Laboratory Press; 2001.
23.
go back to reference Buell CR, Joardar V, Lindeberg M, Selengut J, Paulsen IT, Gwinn ML, et al. The complete genome sequence of the Arabidopsis and tomato pathogen Pseudomonas syringae pv. tomato DC3000. Proc Natl Acad Sci U S A. 2003;100(18):10181–6.CrossRefPubMedPubMedCentral Buell CR, Joardar V, Lindeberg M, Selengut J, Paulsen IT, Gwinn ML, et al. The complete genome sequence of the Arabidopsis and tomato pathogen Pseudomonas syringae pv. tomato DC3000. Proc Natl Acad Sci U S A. 2003;100(18):10181–6.CrossRefPubMedPubMedCentral
24.
go back to reference Morita Y, Kodama K, Shiota S, Mine T, Kataoka A, Mizushima T, et al. NorM, a putative multidrug efflux protein, of Vibrio parahaemolyticus and its homolog in Escherichia coli. Antimicrob Agents Chemother. 1998;42(7):1778–82.PubMedPubMedCentral Morita Y, Kodama K, Shiota S, Mine T, Kataoka A, Mizushima T, et al. NorM, a putative multidrug efflux protein, of Vibrio parahaemolyticus and its homolog in Escherichia coli. Antimicrob Agents Chemother. 1998;42(7):1778–82.PubMedPubMedCentral
25.
go back to reference Al-Karablieh N, Weingart H, Ullrich MS. Genetic exchange of multidrug efflux pumps among two enterobacterial species with distinctive ecological Niches. Int J Mol Sci. 2009;10(2):629–45.CrossRefPubMedPubMedCentral Al-Karablieh N, Weingart H, Ullrich MS. Genetic exchange of multidrug efflux pumps among two enterobacterial species with distinctive ecological Niches. Int J Mol Sci. 2009;10(2):629–45.CrossRefPubMedPubMedCentral
26.
go back to reference Burse A, Weingart H, Ullrich MS. The phytoalexin-inducible multidrug efflux pump AcrAB contributes to virulence in the fire blight pathogen, Erwinia amylovora. Mol Plant-Microbe Interact: MPMI. 2004;17(1):43–54.CrossRefPubMed Burse A, Weingart H, Ullrich MS. The phytoalexin-inducible multidrug efflux pump AcrAB contributes to virulence in the fire blight pathogen, Erwinia amylovora. Mol Plant-Microbe Interact: MPMI. 2004;17(1):43–54.CrossRefPubMed
27.
go back to reference Al-Karablieh N, Weingart H, Ullrich MS. The outer membrane protein TolC is required for phytoalexin resistance and virulence of the fire blight pathogen Erwinia amylovora. J Microbial Biotechnol. 2009;2(4):465–75.CrossRef Al-Karablieh N, Weingart H, Ullrich MS. The outer membrane protein TolC is required for phytoalexin resistance and virulence of the fire blight pathogen Erwinia amylovora. J Microbial Biotechnol. 2009;2(4):465–75.CrossRef
28.
go back to reference Stoitsova SO, Braun Y, Ullrich MS, Weingart H. Characterization of the RND-type multidrug efflux pump MexAB-OprM of the plant pathogen Pseudomonas syringae. Appl Environ Microbiol. 2008;74(11):3387–93.CrossRefPubMedPubMedCentral Stoitsova SO, Braun Y, Ullrich MS, Weingart H. Characterization of the RND-type multidrug efflux pump MexAB-OprM of the plant pathogen Pseudomonas syringae. Appl Environ Microbiol. 2008;74(11):3387–93.CrossRefPubMedPubMedCentral
29.
go back to reference Nathan P, Law EJ, Murphy DF, MacMillan BG. A laboratory method for selection of topical antimicrobial agents to treat infected burn wounds. Burns Incl Therm Inj. 1978;4:176–87.CrossRef Nathan P, Law EJ, Murphy DF, MacMillan BG. A laboratory method for selection of topical antimicrobial agents to treat infected burn wounds. Burns Incl Therm Inj. 1978;4:176–87.CrossRef
30.
go back to reference Jolliffe IT. Principal component analysis. New York, USA: Springer; 2002. Jolliffe IT. Principal component analysis. New York, USA: Springer; 2002.
31.
go back to reference Frodin DG. History and concepts of big plant genera. Taxon. 2004;53(3):753–76.CrossRef Frodin DG. History and concepts of big plant genera. Taxon. 2004;53(3):753–76.CrossRef
32.
go back to reference Ghamba PE, Agbo EB, Umar AF, Bukbuk DN, Goje LJ. In vitro antibacterial activity of crude ethanol, acetone and aqueous Garcinia kola seed extracts on selected clinical isolates. Afr J Biotechnol. 2012;11(6):1473–83.CrossRef Ghamba PE, Agbo EB, Umar AF, Bukbuk DN, Goje LJ. In vitro antibacterial activity of crude ethanol, acetone and aqueous Garcinia kola seed extracts on selected clinical isolates. Afr J Biotechnol. 2012;11(6):1473–83.CrossRef
33.
go back to reference Zgurskaya HI, Nikaido H. Multidrug resistance mechanisms: drug efflux across two membranes. Mol Microbiol. 2000;37(2):219–25.CrossRefPubMed Zgurskaya HI, Nikaido H. Multidrug resistance mechanisms: drug efflux across two membranes. Mol Microbiol. 2000;37(2):219–25.CrossRefPubMed
35.
go back to reference Kirk H, Cheng D, Choi Y, Vrieling K, Klinkhamer PL. Transgressive segregation of primary and secondary metabolites in F2 hybrids between Jacobaea aquatica and J. vulgaris. Metabolomics. 2012;8(2):211–9.CrossRefPubMed Kirk H, Cheng D, Choi Y, Vrieling K, Klinkhamer PL. Transgressive segregation of primary and secondary metabolites in F2 hybrids between Jacobaea aquatica and J. vulgaris. Metabolomics. 2012;8(2):211–9.CrossRefPubMed
36.
go back to reference Orians CM. The effects of hybridization in plants on secondary chemistry: implications for the ecology and evolution of plant-herbivore interactions. Am J Bot. 2000;87(12):1749–56.CrossRefPubMed Orians CM. The effects of hybridization in plants on secondary chemistry: implications for the ecology and evolution of plant-herbivore interactions. Am J Bot. 2000;87(12):1749–56.CrossRefPubMed
37.
go back to reference Strauss SY. Levels of herbivory and parasitism in host hybrid zones. Trends Ecol Evol. 1994;9(6):209–14.CrossRefPubMed Strauss SY. Levels of herbivory and parasitism in host hybrid zones. Trends Ecol Evol. 1994;9(6):209–14.CrossRefPubMed
38.
go back to reference Chhetri HP, Yogol NS, Sherchan J, Anupa KC, Mansoor S, Thapa P. Phytochemical and antimicrobial evaluations of some medicinal plants of Nepal. Kathmandu Univ J Sci Eng Technol. 2008;4(1):49–54. Chhetri HP, Yogol NS, Sherchan J, Anupa KC, Mansoor S, Thapa P. Phytochemical and antimicrobial evaluations of some medicinal plants of Nepal. Kathmandu Univ J Sci Eng Technol. 2008;4(1):49–54.
39.
go back to reference Paudel A, Panthee S, Shakya S, Amatya S, Shrestha TM, Amatya MP. Phytochemical and antibacterial properties of Rhododendron campanulatum from Nepal. J Tradit Med. 2011;6(6):252–8. Paudel A, Panthee S, Shakya S, Amatya S, Shrestha TM, Amatya MP. Phytochemical and antibacterial properties of Rhododendron campanulatum from Nepal. J Tradit Med. 2011;6(6):252–8.
40.
go back to reference Ertürk O, Karakaş FP, Pehli̇van D, Nas N. The antibacterial and antifungal effects of Rhododendron derived mad honey and extracts of four Rhododendron species. Turk J Biol. 2009;33(2):151–8. Ertürk O, Karakaş FP, Pehli̇van D, Nas N. The antibacterial and antifungal effects of Rhododendron derived mad honey and extracts of four Rhododendron species. Turk J Biol. 2009;33(2):151–8.
41.
go back to reference Nisar M, Ali S, Qaisar M. Antibacterial and cytotoxic activities of the methanolic extracts of Rhododendron arboreum. J Med Plants Res. 2013;7(8):398–403. Nisar M, Ali S, Qaisar M. Antibacterial and cytotoxic activities of the methanolic extracts of Rhododendron arboreum. J Med Plants Res. 2013;7(8):398–403.
42.
44.
go back to reference Wu J, Wang C, Mei X. Stimulation of taxol production and excretion in Taxus spp cell cultures by rare earth chemical lanthanum. J Biotechnol. 2001;85(1):67–73.CrossRefPubMed Wu J, Wang C, Mei X. Stimulation of taxol production and excretion in Taxus spp cell cultures by rare earth chemical lanthanum. J Biotechnol. 2001;85(1):67–73.CrossRefPubMed
45.
go back to reference Peñaflor M, Bento JMS. Herbivore-induced plant volatiles to enhance biological control in agriculture. Neotrop Entomol. 2013;42(4):331–43.CrossRefPubMed Peñaflor M, Bento JMS. Herbivore-induced plant volatiles to enhance biological control in agriculture. Neotrop Entomol. 2013;42(4):331–43.CrossRefPubMed
46.
go back to reference Ribera AE, Zuñiga G. Induced plant secondary metabolites for phytopatogenic fungi control: a review. J Soil Sci Plant Nutr. 2012;12:893–911. Ribera AE, Zuñiga G. Induced plant secondary metabolites for phytopatogenic fungi control: a review. J Soil Sci Plant Nutr. 2012;12:893–911.
Metadata
Title
Phylogenetic spectrum and analysis of antibacterial activities of leaf extracts from plants of the genus Rhododendron
Authors
Ahmed Rezk
Jennifer Nolzen
Hartwig Schepker
Dirk C Albach
Klaudia Brix
Matthias S Ullrich
Publication date
01-12-2015
Publisher
BioMed Central
Published in
BMC Complementary Medicine and Therapies / Issue 1/2015
Electronic ISSN: 2662-7671
DOI
https://doi.org/10.1186/s12906-015-0596-5

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