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http://dx.doi.org/10.12925/jkocs.2016.33.2.278

Antibacterial Activity of Suaeda australis in Halophyte  

Kim, Hye-Ran (Department of Clinical Laboratory Science, Catholic University of Pusan)
Park, Gyu-Nam (Department of Clinical Laboratory Science, Catholic University of Pusan)
Jung, Bo-Kyoung (Department of Clinical Laboratory Science, Catholic University of Pusan)
Yoon, Weon-Jong (Jeju Biodiversity Research Institute)
Jung, Yong-Hwan (Jeju Biodiversity Research Institute)
Chang, Kyung-Soo (Department of Clinical Laboratory Science, Catholic University of Pusan)
Publication Information
Journal of the Korean Applied Science and Technology / v.33, no.2, 2016 , pp. 278-285 More about this Journal
Abstract
The discovery of various activities of natural plants has increased interest in halophytes. Suaeda australis and S. maritime are perennial halophytes that belong to the Chenopodiaceae family. Extracts of S. australis and S. maritime plants were investigated for concentration and time-dependent antibacterial and antioxidant activities using bacterial species and 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging activity, respectively, as well as total phenolic content. The S. australis extract ($500{\mu}g/mL$) showed activity against all the bacterial species including P. aeruginosa, P. mirabilis, A. baumannii, and VRE with 61.1, 42.3, 44.49, and 40.38%, respectively, inhibition and suppressed of these four species for 12 h. Overall, the S. australis extract showed marked antibacterial activities while, in contrast, the S. maritime extract had excellent antioxidant effects. However, the effects of the two extracts were much lower than that of quercetin. The present study identified antibacterial activities of S. australis, and it would be necessary to perform further phytochemical studies of S. australis.
Keywords
Suaeda australis; Suaeda maritime; antibacterial activity; antioxidant activity;
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1 A. G. Browne, M. C. Fisher, and D. A. Henk, Species-specific PCR to describe local-scale distributions of four cryptic species in the Penicillium chrysogenum complex, Fungal Ecol., 6(5), 419-429 (2013).   DOI
2 A. M. Schubert, M. A. Rogers, C. Ring, J. Mogle, J. P. Petrosino, V. B Young, D. M. Aronoff, and P. D. Schloss, Microbiome data distinguish patients with Clostridium difficile infection and non-C. difficile-associated diarrhea from healthy controls, MBio., 5(3), e01021-14(2014).
3 K. Priya, W. F. Yin, and K. G. Chan, Anti-quorum sensing activity of the traditional Chinese herb, Phyllanthus amarus, Sensors (Basel), 13(11), 14558-14569(2013).   DOI
4 B. K. Dash, M. K. Sen, K. Alam, K. Hossain, R. Islam, N. A. Banu, S. Rahman, and A. H. Jamal, Antibacterial activity of Nymphaea nouchali (Burm. f) flower, Ann Clin Microbiol Antimicrob., 12(27), 1-4(2013).   DOI
5 S. Behzadnia, A. Davoudi, M. S. Rezai, and F. Ahangarkani, Nosocomial infections in pediatric population and antibiotic resistance of the causative organisms in north of iran, Iran Red Crescent Med J., 16(2), e14562(2014).
6 J. Kos, I. Zadrazilova, M. Pesko, S. Keltosova, J. Tengler, T. Gonec, P. Bobal, T. Kauerova, M. Oravec, P. Kollar, A. Cizek, K. Kralova, and J. Jampilek, Antibacterial and herbicidal activity of ring-substituted 3-hydroxynaphthalene-2-carboxanilides. Molecules, 18(7), 7977-7997(2013).   DOI
7 M. J. Rodrigues, K. N. Gangadhar, C. Vizetto-Duarte, S. G. Wubshet, N. T. Nyberg, L. Barreira, J. Varela, and L. Custodio, Maritime halophyte species from southern Portugal as sources of bioactive molecules. Mar Drugs., 12(4), 2228-2244 (2014).   DOI
8 E. S. Kim, J. S. Song, H. J. Lee, P. G. Choe, K. H. Park, J. H. Cho, W. B. Park, S. H. Kim, J. H. Bang, D. M. Kim, K. U. Park, S. Shin, M. S. Lee, H. J. Choi, N. J. Kim, E. C. Kim, M. D. Oh, H. B. Kim, and K. W. Choe, A survey of community-associated methicillin-resistant Staphylococcus aureus in Korea. J Antimicrob Chemother, 60(5), 1108-1114 (2007).   DOI
9 J. H. Hwang, J. H Lee, M. K. Moon, J. S. Kim, K. S. Won, and C. S. Lee, The efficacy and safety of arbekacin and vancomycin for the treatment in skin and soft tissue MRSA infection: preliminary study. Infect Chemother., 45(1), 62-68 (2013).   DOI
10 M. L. Bastos, M. R. Lima, L. M. Conserva, V. S. Andrade, E. M. Rocha, and R. P. Lemos, Studies on the antimicrobial activity and brine shrimp toxicity of Zeyheria tuberculosa (Vell.) Bur. (Bignoniaceae) extracts and their main constituents. Ann Clin Microbiol Antimicrob., 8(16), 1-6(2009).   DOI
11 C. S. Kong, Anti-Inflammatory Activity of the Solvent-Partitioned Fractions from Spergularia marina in LPS-Stimulated RAW 264.7 Cells, Prev Nutr Food Sci., 19(4), 261-267(2014).   DOI
12 F. Zar Kalai, J. Han, R. Ksouri, A. El Omri, C. Abdelly, and H. Isoda, Antiobesity Effects of an Edible Halophyte Nitraria retusa Forssk in 3T3-L1 Preadipocyte Differentiation and in C57B6J/L Mice Fed a High Fat Diet-Induced Obesity, Evid Based Complement Alternat Med., 2013, 368658 (2013).
13 T. Debnath, S. R. Park, D. H. Kim, J. E. Jo, and B. O. Lim, Anti-oxidant and anti-inflammatory activities of Inonotus obliquus and germinated brown rice extracts. Molecules, 18(8), 9293-9304 (2013).   DOI
14 S. Oueslatia, N. Trabelsia, M. Boulaabaa, J. Legaultb, C. Abdellya, and R. Ksouria, Evaluation of antioxidant activities of the edible and medicinal Suaeda species and related phenolic compounds. Industrial Crops and Products, 36(2012), 513-518 (2011).
15 C. T. Kumarappan, E. Thilagam, and S. C. Mandal, Antioxidant activity of polyphenolic extracts of Ichnocarpus frutescens, Saudi J Biol Sci., 19(3), 349-355(2012).   DOI
16 S. C. Choi, S. H. Lim, S. H. Kim, D. G. Choi, J. G. Kim and Y. S. Choo, Growth and solute pattern of Suaeda maritima and Suaeda asparagoides in an abandoned salt field, J Ecol Field Biol., 35(4), 351-358 (2012).
17 W. A. Tawfik, M. M. Abdel-Mohsen, H. M. Radwan, A. A. Habib, and M. A. Yeramian, Phytochemical and biological investigations of Atriplex semibacata R .BR. growing in Egypt, Afr J Tradit Complement Altern Med., 8(4), 435-443 (2011).
18 J. M. Park, S. D. Kim, W. M. Lee, J. Y. Cho, H. J. Park, T. W. Kim, N. H Choe, S. K. Kim, and M. H. Rhee, In vitro anti-oxidative and anti-inflammatory effects of solvent-extracted fractions from Suaeda asparagoides. Pharmazie., 62, 453-458(2007).
19 H. R. Kim, G. N. Park, B. K. Jung, W. J. Yoon, Y. H. Jung, and K.S. Chang, Antioxidative Effects of Rhaphiolepis indica and Quercus salicina from Jeju. J. of Korean Oil Chemists' Soc. 33(1), 41-50(2016).   DOI
20 A. A. Bellail, O. E. Shaltout, M. M. Youssef, and A. A. El-Gamal, Effect of Home-Cooking Methods on Phenolic Composition and Antioxidant Activity of Sweetpotato (Ipomoea batatas (L.) Lam.) Cultivars Grown in Egypt. Food and Nutrition Sciences, 3(4), 490-499(2012).   DOI
21 S. Y. Lee, Y. J. So, M. S. Shin, J. Y. Cho, and J. Lee, Antibacterial effects of afzelin isolated from Cornus macrophylla on Pseudomonas aeruginosa, a leading cause of illness in immunocompromised individuals, Molecules, 19(3), 3173-3180 (2014).   DOI
22 F. Karadeniz, J. A. Kim, B. N. Ahn, M. Kim, and C. S. Kong, Anti-adipogenic and Pro-osteoblastogenic Activities of Spergularia marina Extract, Prev Nutr Food Sci., 19(3), 187-193(2014).   DOI
23 M. H. Yang, N. H. Kim, J. D. Heo, S. H. Sung, and E. J. Jeong, Hepatoprotective effects of Limonium tetragonum, edible medicinal halophyte growing near seashores, Pharmacogn Mag., 10(3), S563-568(2014).   DOI
24 J. H. Sung, S. H. Park, D. H. Seo, J. H. Lee, S. W. Hong, and S. S. Hong, Antioxidative and skin-whitening effect of an aqueous extract of Salicornia herbacea, Biosci Biotechnol Biochem., 73(3), 552-556(2009).   DOI
25 Y. S. Kim, H. Kim, E. Jung, J. H. Kim, W. Hwang, E. J. Kang, S. Lee, B. J. Ha, J. Lee, and D. Park, A novel antibacterial compound from Siegesbeckia glabrescens, Molecules, 17(11), 12469-12477(2012).   DOI
26 R. Ksouri, W. M. Ksouri, I. Jallali, A. Debez, C. Magne, I. Hiroko, and C. Abdelly, Medicinal halophytes: potent source of health promoting biomolecules with medical, nutraceutical and food applications, Crit Rev Biotechnol., 32(4), 289-326(2012).   DOI
27 R. Ksouri, H. Falleh, W. Megdiche, N. Trabelsi, B. Mhamdi, K. Chaieb, A. Bakrouf, C. Magne, and C. Abdelly, Antioxidant and antimicrobial activities of the edible medicinal halophyte Tamarix gallica L. and related polyphenolic constituents. Food Chem Toxicol., 47(8), 2083-2091(2009).   DOI