In this study, it is aimmed to be determined the antimicrobial effects of the volatile oil and its extracts in vitro conditions, extracted from wild forms of plant which is known as Giant Fennel (Ferula communis) around the world and grows naturally at Agrı province of Turkey against Bacillus pumilus isolates, which are the agent of Soft Rot for some fruits and vegetables. For this purpose, 18 isolates of B. pumilus which have been determined as the agent of Soft Rot in previous studies performed in plants such as potatos, onions, strawberries, melons and watermelons. As the positive control, Penicillin antibiotics sold as ready producs were used. According to the obtained results, the volatile oils have the bactericidal effect of 10-14 mm against 18 isolates of B. pumilus. However, none of the extracts obtained from F. communis has antibacterial effect against B. pumilus isolates. It has been observed that the antibiotics used as the positive control has the antibacterial effect of 12-31 mm, But merely with bacteriostatic effect. In conclusion, the volatile oils has the lethal effect against 18 B. pumilus isolates which are agents of Soft Rot. It is assesed that these volatile oils extracted from Giant Fennel (F. communis) can be used against these Soft Rot pathogens, because penicillin antibiotics used has only prohibitor effect at struggles against these pathogens
Abu-Shanab B, Adwan G, Abu-Shanab D, Jarrar N, Adwan K,
2004. Antibacterial activities of some plant extracts utilized
in popular medicine in paletsine, Turk J. Bio., 28, 99- 102.
Adebolu TT, Oladimeji AS, 2005. Antimicrobial activity of leaf
exracts of Ocimum gratissimum on selected diarrhoea
causing bacrteria in southwestern Nigeria, African Journal of
Biotechnology, 4(7), 682- 684.
Adıgüzel A, Güllüce M, Şengül M, Öğütçü H, Şahin F, Karaman
İ, 2005. Antimicrobial effect of Ocimum basilicum (labiatae)
exract, Turk J.Bio., 29, 155-160.
Basım E, Basım H, 2001. Antibacterial activity effect of essential oil
produced by Rosa damascena on Xanthomonas axonopodis
pv. vesicatoria. Phytopathology, 91(6), s6.
Basım E, Basim H, 2003. Antibacterial activity of Rosa damascena
essential oil, Fitoterapia, 74, 394-396.
Basım H, Yeğen O, Zeller W, 2000. Antibacterial effect of
essential oil of Thymbra spicata L. var. spicata on some plant
pathogenic bacteria, Journal of Plant Disease and Protection,
279 (3), 279-284.
Bora T, Özaktan H, Bitki hastalıklarıyla biyolojik savaş. Prizma Matbaası,
İzmir, s. 205. (1998).
Dadaşoğlu F, Kotan R, Cakir A, Cakmakci R, Kordali S, Ozer
H, Karagoz K, Dikbas N, 2015. Antibacterial Activities of
Essential Oils, Extracts and Some of Their Major Components
of Artemisia spp. L. Against Seed-Borne Plant Pathogenic
Bacteria, Fresenius Environmental Bulletin, 24, 2715-2724.
Demir G, Gündoğdu M, 1993. Fireblight of pome fruit trees in
Turkey: Distribıtion of the disease, chemical control of
blossom infections and susceptibility of some cultivars, Acta
Horticulture, 338, 67-74.
Gormez A, Bozari S, Yanmis D, Gulluce M, Sahin F, Agar G, 2015.
Chemical Composition and Antibacterial Activity of Essential
Oils of Two Species of Lamiaceae against Phytopathogenic
Bacteria. Polish Journal Of Microbiology, 64, 121-127.
Güllüce M, Sokmen M, Daferera D, Agar G, Ozkan H, Kartal N,
Polissiou M, Sokmen A, Sahin F, 2003. In vitro antibacterial,
antifungal, and antioxidant activities of the essential oil and
metanol extracts of herbal parts and callus cultures of Satureja
hortensis L., J Agric Food Chem., 51, 3958-3965.
Hammer KA, Carson CF, Riley TV, 1999. Antimicrobial activity
of essential oils and other plant extracts, Journal of Applied
Microbiology, 86, 985- 990.
Iroegbu CU, Nkere CK, 2005. Evalution of THA antimicrobial
properties of Picralima nitida stembark extracts, Phytother
Res., 1 (2), 182-189.
Karaman S, Digrak M, Ravid U, Ilcim A, 2001. Antibacterial and
antifungal activity of the essential oils of Thymus revolutus
Celak from Turkey. J. Ethnopharmacol., 76, 183-186.
Kotan R, Cakır A, Dadasoglu F, Aydın T, Cakmakcı R, Ozer H,
Kordalı S, Mete E, Dıkbas N, 2010. Antibacterial activities
of essential oils and extracts of Turkish Achillea, Satureja and
Thymus species against plant pathogenic bacteria, Journal of
the Science Food and Agriculture, 90, 145-160.
Kotan R, Cakir A, Ozer H, Kordali S, Cakmakci R, Dadassoglu
F, Dikbas N, Aydin T, Kazaz C, 2014. Antibacterial effects of
Origanum onites against phytopathogenic bacteria: Possible
use of the extracts from protection of disease caused by some
phytopathogenic bacteria, Scientia Horticulturae, 172, 210-220.
Maggi F, Papa F, Dall’Acqua S, Nicoletti M, 2016. Chemical analysis
of essential oils from different parts of Ferula communis L.
growing in central Italy, Natural Product Research, 30, 806-
813
Meral G, Karabay NÜ, 2002. In-vitro antibacterial activities of three
Hypericum species from west Anatolia, Turkish Electronic
Journal of Biotechnology, 6-10.
Nair R, Karlıya T, Chanda S, 2005. Antibacterial activity of some
selected Indıan medicinal Flora, Turk. J. Bio., 29, 41- 47.
Nguir A, Mabrouk H, Douki W, Ben Ismail M, Ben Jannet
H, Flamini G, Hamza MA, 2016. Chemical composition
and bioactivities of the essential oil from different organs of
Ferula communis L. growing in Tunisia, Medicinal Chemistry
Research, 25: 515-525.
Okeke MI, Iroegbu CU, Eze AS, Okoli AS, Esimone CO, 2001.
Evaluation of exract of root of Landolphia owerrience for
antibacterial activity, J. Ethnopharmacol, 78,119-127.
Omar S, Lemonnier B, Jones N, Ficker C, Smith ML, Neema C,
Towers GHN, Goel K, Arnason JT, 2000. Antimicrobial
activity of extract of eastern North American hardwood
tree and relation to traditional to medicine, Journal of
Ethnopharmacology, 73, 161-170.
Özaktan H, Türküsay H, 1994. Bazı epiftik bakterilerin ateş
yanıklığı etmeni Erwinia amylovora (Burr.) ’ya antagonistik
etkileri üzerine araştırmalar, Türkiye 3. Biyolojik Mücadele
Kongresi, 25-28 Ocak, İzmir-Türkiye, 231-238.
Rodriguez H, Aguılar L, Lao M, 1997. Variations in Xanthan
production by antibiotic resistant mutants of Xanthomonas
campestris, Appl Microbiol Biotechnol, 48,626-629.
Rojas JJ, Veronica JO, Ocampo SA, Munoz JF, 2006. Screening for
antimicrobial activity of ten medicinal plant used in Colombian
folkloric medicine : A possible alternative in THA treatment
of non-nosocomial infections. BMC Complementary and
Allernative Medicine. http://www.biomedcentral.com/1472-
6882/6/2.
Santos FA, Cunha MA, Viana GSB, Rao VSN, Manoel A, Silveira
ER, 1997. Antibacterial activity of essential oils from psidium
and pilocarpus spesies of plants, Phytoherapy Research., 11,
67- 69.
Sechi LA, Lezcano İ, Nunez N, Espim M, Pinna A, Molicotti P,
Fadda G, Zanetti S, 2001. Antibakterial activity of ozonized
sunflower oil (oleozon), Journal of Applied Microbiology, 90,
279-284.
Soylu EM, Soylu S, Tok MF, Kaya SD, Yiğitbaş H, 2005. Çeşitli
bitkilerin kompost, ekstrakt ve eterik yağlarının domateste
önemli bitki patojenlerine karşı antifungal ektivitesi, TOVAG
105 O 610 nolu Tübitak Projesi Raporu.
Soylu S, Soylu EM, Eriş M, 2007. Bitki uçucu yağ ve bileşenlerinin
domates bakteriyel hastalık etmenleri üzerine olan
antibakteriyel potansiyellerinin araştırılması, TOVAG 105 O
610 nolu Tübitak Projesi Raporu.
Şahin F, Karaman I, Güllüce M, Ogütcü H, Şengül M, Adıgüzel A,
Öztürk S, Kotan R, 2003. Evalation of antimicrobial actives
of Satureja hortensis L., Journal of Ethnopharmacology, 87,
61-65.
Şahin F, Miller SA, 1997. Identifcation of the bacterial leaf spot
pathogen of lettuce, Xanthomonas campestris pv. vitians, in
Ohio, and assessment of cultivar resistance and seed treatment.
Plant Dis., 81, 1443-1446.
epe B, Sokmen M, Akpulat AH, Sokmen A, 2006. Screening of
THA antioxidant potentials of six Salvia species from Turkey,
Food Chemistry, 95, 200-204.
White DG, Zhao S, Simjee S, Wagner DD, Mcdermott PF, 2002.
Antimicrobial resistance of food-borne pathogens, Microb
Infect., 4, 405-412.
Yeğen O, Basım H, Laux P, Zeller W, 2002. Biocontrol of Erwinia
amylovora with a natural product, IOBC/WPRS Bulletin,
25(10), 143-146.
Yumuşak Çürüklük Etmeni Bacillus pumilus İzolatlarına Karşı Çakşır Otu (Ferula communis) Uçucu Yağ ve Ekstrelerinin Antibakteriyal Etkisi
Bu çalışmada Dünya da çakşır otu (Ferula communis) olarak bilinen ve Ağrı ilinde de doğal olarak yetişen bu bitkinin yabani formundan elde edilen uçucu yağ ve ekstrelerin; bazı sebze ve meyvelerde yumuşak çürüklüğe neden olan Bacillus pumilus türlerine karşı in vitro şartlarda antimikrobiyal etkilerinin belirlenmesi amaçlanmıştır. Bu amaçla daha önce yapılmış olan çalışmalarda patates, soğan, çilek, kavun ve karpuz gibi bitkilerde yumuşak çürüklük etmeni olduğu belirlenmiş olan 18 B. pumilus izolatı kullanılmıştır. Denemelerde pozitif kontrol olarak ise ticari olarak satılan Penicilin antibiyotiği kullanılmıştır. Elde edilen sonuçlara göre; F. communis bitkisinden elde edilen uçucu yağların 18 bakteri izolatına karşı 10-14 mm oranlarında bakterisidal etkiye sahip olduğu gözlemlenmiştir. Ancak çalışmada kullanılan F. communis bitkisinden elde edilen ekstrelerden hiçbirisinin B. pumilus türlerine karşı antibakteriyal etki göstermediği tespit edilmiştir. Pozitif kontrol olarak kullanılan antibiyotiğin patojenlere karşı 12-31 mm aralığında antibakteriyal etkiye sahip olduğu ancak bu etkinin sadece bakteriostatik olduğu gözlemlenmiştir. Sonuç olarak çalışmada kullanılan uçucu yağın yumuşak çürüklük patojenleri olan 18 farklı B. pumilus türüne karşı öldürücü etkiye sahip olduğu, ancak kullanılan Penicilin antibiyotiğinin ise sadece engelleyici özelliğe sahip olması nedeni ile bu patojenlerle mücadele de F. communis bitkisinden elde edilen uçucu yağın başarılı bir şekilde kullanılabileceği düşünülmektedir.
Abu-Shanab B, Adwan G, Abu-Shanab D, Jarrar N, Adwan K,
2004. Antibacterial activities of some plant extracts utilized
in popular medicine in paletsine, Turk J. Bio., 28, 99- 102.
Adebolu TT, Oladimeji AS, 2005. Antimicrobial activity of leaf
exracts of Ocimum gratissimum on selected diarrhoea
causing bacrteria in southwestern Nigeria, African Journal of
Biotechnology, 4(7), 682- 684.
Adıgüzel A, Güllüce M, Şengül M, Öğütçü H, Şahin F, Karaman
İ, 2005. Antimicrobial effect of Ocimum basilicum (labiatae)
exract, Turk J.Bio., 29, 155-160.
Basım E, Basım H, 2001. Antibacterial activity effect of essential oil
produced by Rosa damascena on Xanthomonas axonopodis
pv. vesicatoria. Phytopathology, 91(6), s6.
Basım E, Basim H, 2003. Antibacterial activity of Rosa damascena
essential oil, Fitoterapia, 74, 394-396.
Basım H, Yeğen O, Zeller W, 2000. Antibacterial effect of
essential oil of Thymbra spicata L. var. spicata on some plant
pathogenic bacteria, Journal of Plant Disease and Protection,
279 (3), 279-284.
Bora T, Özaktan H, Bitki hastalıklarıyla biyolojik savaş. Prizma Matbaası,
İzmir, s. 205. (1998).
Dadaşoğlu F, Kotan R, Cakir A, Cakmakci R, Kordali S, Ozer
H, Karagoz K, Dikbas N, 2015. Antibacterial Activities of
Essential Oils, Extracts and Some of Their Major Components
of Artemisia spp. L. Against Seed-Borne Plant Pathogenic
Bacteria, Fresenius Environmental Bulletin, 24, 2715-2724.
Demir G, Gündoğdu M, 1993. Fireblight of pome fruit trees in
Turkey: Distribıtion of the disease, chemical control of
blossom infections and susceptibility of some cultivars, Acta
Horticulture, 338, 67-74.
Gormez A, Bozari S, Yanmis D, Gulluce M, Sahin F, Agar G, 2015.
Chemical Composition and Antibacterial Activity of Essential
Oils of Two Species of Lamiaceae against Phytopathogenic
Bacteria. Polish Journal Of Microbiology, 64, 121-127.
Güllüce M, Sokmen M, Daferera D, Agar G, Ozkan H, Kartal N,
Polissiou M, Sokmen A, Sahin F, 2003. In vitro antibacterial,
antifungal, and antioxidant activities of the essential oil and
metanol extracts of herbal parts and callus cultures of Satureja
hortensis L., J Agric Food Chem., 51, 3958-3965.
Hammer KA, Carson CF, Riley TV, 1999. Antimicrobial activity
of essential oils and other plant extracts, Journal of Applied
Microbiology, 86, 985- 990.
Iroegbu CU, Nkere CK, 2005. Evalution of THA antimicrobial
properties of Picralima nitida stembark extracts, Phytother
Res., 1 (2), 182-189.
Karaman S, Digrak M, Ravid U, Ilcim A, 2001. Antibacterial and
antifungal activity of the essential oils of Thymus revolutus
Celak from Turkey. J. Ethnopharmacol., 76, 183-186.
Kotan R, Cakır A, Dadasoglu F, Aydın T, Cakmakcı R, Ozer H,
Kordalı S, Mete E, Dıkbas N, 2010. Antibacterial activities
of essential oils and extracts of Turkish Achillea, Satureja and
Thymus species against plant pathogenic bacteria, Journal of
the Science Food and Agriculture, 90, 145-160.
Kotan R, Cakir A, Ozer H, Kordali S, Cakmakci R, Dadassoglu
F, Dikbas N, Aydin T, Kazaz C, 2014. Antibacterial effects of
Origanum onites against phytopathogenic bacteria: Possible
use of the extracts from protection of disease caused by some
phytopathogenic bacteria, Scientia Horticulturae, 172, 210-220.
Maggi F, Papa F, Dall’Acqua S, Nicoletti M, 2016. Chemical analysis
of essential oils from different parts of Ferula communis L.
growing in central Italy, Natural Product Research, 30, 806-
813
Meral G, Karabay NÜ, 2002. In-vitro antibacterial activities of three
Hypericum species from west Anatolia, Turkish Electronic
Journal of Biotechnology, 6-10.
Nair R, Karlıya T, Chanda S, 2005. Antibacterial activity of some
selected Indıan medicinal Flora, Turk. J. Bio., 29, 41- 47.
Nguir A, Mabrouk H, Douki W, Ben Ismail M, Ben Jannet
H, Flamini G, Hamza MA, 2016. Chemical composition
and bioactivities of the essential oil from different organs of
Ferula communis L. growing in Tunisia, Medicinal Chemistry
Research, 25: 515-525.
Okeke MI, Iroegbu CU, Eze AS, Okoli AS, Esimone CO, 2001.
Evaluation of exract of root of Landolphia owerrience for
antibacterial activity, J. Ethnopharmacol, 78,119-127.
Omar S, Lemonnier B, Jones N, Ficker C, Smith ML, Neema C,
Towers GHN, Goel K, Arnason JT, 2000. Antimicrobial
activity of extract of eastern North American hardwood
tree and relation to traditional to medicine, Journal of
Ethnopharmacology, 73, 161-170.
Özaktan H, Türküsay H, 1994. Bazı epiftik bakterilerin ateş
yanıklığı etmeni Erwinia amylovora (Burr.) ’ya antagonistik
etkileri üzerine araştırmalar, Türkiye 3. Biyolojik Mücadele
Kongresi, 25-28 Ocak, İzmir-Türkiye, 231-238.
Rodriguez H, Aguılar L, Lao M, 1997. Variations in Xanthan
production by antibiotic resistant mutants of Xanthomonas
campestris, Appl Microbiol Biotechnol, 48,626-629.
Rojas JJ, Veronica JO, Ocampo SA, Munoz JF, 2006. Screening for
antimicrobial activity of ten medicinal plant used in Colombian
folkloric medicine : A possible alternative in THA treatment
of non-nosocomial infections. BMC Complementary and
Allernative Medicine. http://www.biomedcentral.com/1472-
6882/6/2.
Santos FA, Cunha MA, Viana GSB, Rao VSN, Manoel A, Silveira
ER, 1997. Antibacterial activity of essential oils from psidium
and pilocarpus spesies of plants, Phytoherapy Research., 11,
67- 69.
Sechi LA, Lezcano İ, Nunez N, Espim M, Pinna A, Molicotti P,
Fadda G, Zanetti S, 2001. Antibakterial activity of ozonized
sunflower oil (oleozon), Journal of Applied Microbiology, 90,
279-284.
Soylu EM, Soylu S, Tok MF, Kaya SD, Yiğitbaş H, 2005. Çeşitli
bitkilerin kompost, ekstrakt ve eterik yağlarının domateste
önemli bitki patojenlerine karşı antifungal ektivitesi, TOVAG
105 O 610 nolu Tübitak Projesi Raporu.
Soylu S, Soylu EM, Eriş M, 2007. Bitki uçucu yağ ve bileşenlerinin
domates bakteriyel hastalık etmenleri üzerine olan
antibakteriyel potansiyellerinin araştırılması, TOVAG 105 O
610 nolu Tübitak Projesi Raporu.
Şahin F, Karaman I, Güllüce M, Ogütcü H, Şengül M, Adıgüzel A,
Öztürk S, Kotan R, 2003. Evalation of antimicrobial actives
of Satureja hortensis L., Journal of Ethnopharmacology, 87,
61-65.
Şahin F, Miller SA, 1997. Identifcation of the bacterial leaf spot
pathogen of lettuce, Xanthomonas campestris pv. vitians, in
Ohio, and assessment of cultivar resistance and seed treatment.
Plant Dis., 81, 1443-1446.
epe B, Sokmen M, Akpulat AH, Sokmen A, 2006. Screening of
THA antioxidant potentials of six Salvia species from Turkey,
Food Chemistry, 95, 200-204.
White DG, Zhao S, Simjee S, Wagner DD, Mcdermott PF, 2002.
Antimicrobial resistance of food-borne pathogens, Microb
Infect., 4, 405-412.
Yeğen O, Basım H, Laux P, Zeller W, 2002. Biocontrol of Erwinia
amylovora with a natural product, IOBC/WPRS Bulletin,
25(10), 143-146.
Dadaşoğlu, F. (2016). The Effect of Volatile Oil and its extracts of Giant Fennel (Ferula communis) against Soft Rot (Bacillus pumilus isolates. Journal of the Institute of Science and Technology, 6(4), 83-90.
AMA
Dadaşoğlu F. The Effect of Volatile Oil and its extracts of Giant Fennel (Ferula communis) against Soft Rot (Bacillus pumilus isolates. Iğdır Üniv. Fen Bil Enst. Der. Aralık 2016;6(4):83-90.
Chicago
Dadaşoğlu, Fatih. “The Effect of Volatile Oil and Its Extracts of Giant Fennel (Ferula Communis) Against Soft Rot (Bacillus Pumilus Isolates”. Journal of the Institute of Science and Technology 6, sy. 4 (Aralık 2016): 83-90.
EndNote
Dadaşoğlu F (01 Aralık 2016) The Effect of Volatile Oil and its extracts of Giant Fennel (Ferula communis) against Soft Rot (Bacillus pumilus isolates. Journal of the Institute of Science and Technology 6 4 83–90.
IEEE
F. Dadaşoğlu, “The Effect of Volatile Oil and its extracts of Giant Fennel (Ferula communis) against Soft Rot (Bacillus pumilus isolates”, Iğdır Üniv. Fen Bil Enst. Der., c. 6, sy. 4, ss. 83–90, 2016.
ISNAD
Dadaşoğlu, Fatih. “The Effect of Volatile Oil and Its Extracts of Giant Fennel (Ferula Communis) Against Soft Rot (Bacillus Pumilus Isolates”. Journal of the Institute of Science and Technology 6/4 (Aralık 2016), 83-90.
JAMA
Dadaşoğlu F. The Effect of Volatile Oil and its extracts of Giant Fennel (Ferula communis) against Soft Rot (Bacillus pumilus isolates. Iğdır Üniv. Fen Bil Enst. Der. 2016;6:83–90.
MLA
Dadaşoğlu, Fatih. “The Effect of Volatile Oil and Its Extracts of Giant Fennel (Ferula Communis) Against Soft Rot (Bacillus Pumilus Isolates”. Journal of the Institute of Science and Technology, c. 6, sy. 4, 2016, ss. 83-90.
Vancouver
Dadaşoğlu F. The Effect of Volatile Oil and its extracts of Giant Fennel (Ferula communis) against Soft Rot (Bacillus pumilus isolates. Iğdır Üniv. Fen Bil Enst. Der. 2016;6(4):83-90.