16S rRNA Gen Sekansı Kullanılarak Laktik Asit Bakterilerinin Fil Çimeninde (Pennisetum Purpureum) Karakterizasyonu, Tanımlanması ve Fermantasyon Kalitesine Etkileri

Bu çalışmanın amacı Fil çimeninden (Pennisetum purpureum) laktik asit bakterilerin izolasyonu, tanımlanması ve silaj fermantasyon kalitesine etkilerini araştırmaktır. Üç laktik asit bakteri suşu fil silajından izole edildi ve bunların karakterizasyonu, tanımlanması ve 90 gün sonrasında silaj kalitesi üzerine etkileri çalışıldı. Üç suşun hepsi de Gram-pozitif ve katalaz-negatif olup %6.5 NaCl ve pH 4.00'de büyüme gösterdi. 16S rRNA ve RecA gen analiz sonuçlarına göre AZZ1 suşları pediococcus genusunda tanımlanırken AZZ4 ve AZZ7 suşları Lactobacillus genusunda sınıflandırıldı. Üç suş taze fil çimenine 1.0×106 CFU/g oranında katılarak kullanıldı. AZZ4 suşu daha düşük kuru madde kaybı (P

Characterization and Identification of Lactic Acid Bacteria by 16S rRNA Gene Sequence and Their Effect on the Fermentation Quality of Elephant Grass (Pennisetum purpureum) Silage

The purpose of this study is to isolate and identify lactic acid bacteria from elephant grass (Pennisetum purpureum) silage and examine their effect on the silage fermentation quality. Three of lactic acid bacteria strains were isolated from elephant silage and their characterization, identification, and influence on silage quality after 90 d of ensiling was studied. All three strains were Gram-positive, catalase-negative, and were grown in 6.5% NaCl and pH 4.00. Strains AZZ1, was identified as for genus pediococcus, whereas, AZZ4 and AZZ7 strains were classified as genus Lactobacillus according to the phenotype, 16S rRNA, and RecA gene analysis. Three strains were used as additives at 1.0×106 CFU/g of fresh material of elephant grass. Strain AZZ4 is found to be the most effective in improving the fermentation quality of the elephant grass silage, as indicated by a lower (P<0.0001) dry matter losses, pH value, water-soluble carbohydrates, acetic acid content, butyric acid, propionic acid and ammonia-N. However, the lactic acid content was higher (P<0.0001) compared to the control and other treatments. In conclusion, these results suggest that, for well-preserved silage, the isolates may be useful as inoculants for silage making, and could play a major role in developing silage production.

___

  • Ferreira DJ, Zanine AM, Lana RP, Ribeiro MD, Alves GR, Mantovani HC: Chemical composition and nutrient degradability in elephant grass silage inoculated with Streptococcus bovisisolated from the rumen. An Acad Bras Ciênc, 86 (1): 465-474, 2014. DOI: 10.1590/0001-37652014112312
  • Jşnior EF, Lavezzo W: Qualidade da silagem de capim-elefante (Pennisetum purpureum Schum.) emurchecido ou acrescido de farelo de mandioca. Rev Bras Zootec, 30 (5): 1424-1431, 2001. DOI: 10.1590/S1516
  • Yunus M, Ohba N, Shimojo M, Furuse M, Masuda Y: Effects of adding urea and molasses on Napiergrass silage quality. Asian Australas J Anim Sci, 13 (11): 1542-1547, 2000. DOI: 10.5713/ajas.2000.1542
  • Bureenok S, Yuangklang C, Vasupen K, Schonewille JT, Kawamoto Y: The effects of additives in napier grass silages on chemical composition, feed intake, nutrient digestibility and rumen fermentation. Asian Australas J Anim Sci, 25 (9): 1248, 2012. DOI: 10.5713/ajas.2012.12081 da Silva Ávila CL, Valeriano AR, Pinto JC, Figueiredo HCP, de
  • Rezende AV, Schwan RF: Chemical and microbiological characteristics of sugar cane silages treated with microbial inoculants. R Bras Zootec, (1): 25-32, 2010. DOI: 10.1590/S1516-35982010000100004
  • Filya I, Ashbell G, Hen Y, Weinberg Z: The effect of bacterial inoculants on the fermentation and aerobic stability of whole crop wheat silage. Anim Feed Sci Technol, 88 (1): 39-46, 2000. DOI: 10.1016/S0377- (00)00214-5
  • Chen Y, Weinberg Z: Changes during aerobic exposure of wheat silages. Anim Feed Sci Technol, 154 (1): 76-82, 2009. DOI: 10.1016/j. anifeedsci.2009.08.004
  • Ennahar S, Cai Y, Fujita Y: Phylogenetic diversity of lactic acid bacteria associated with paddy rice silage as determined by 16S ribosomal DNA analysis. A Appl Environ Microbiol, 69 (1): 444-451, 2003. DOI: 10.1128/ AEM.69.1.444-451.2003
  • Widyastuti Y: Fermentasi silase dan manfaat probiotik silase bagi ruminansia. Media Peternakan, 31 (3): 225-232, 2008.
  • Cai Y: Identification and characterization of Enterococcus species isolated from forage crops and their influence on silage fermentation. J Dairy Sci, 82 (11): 2466-2471, 1999. DOI: 10.3168/jds.S0022-0302(99) 6
  • Tsai S, Coleman R, Moon S, Schneider K, Millard CS: Strain screening and development for industrial lactic acid fermentation. Appl Biochem Biotechnol, 39 (1): 323-335, 1993. DOI: 10.1007/BF02919000
  • Cai Y, Benno Y, Ogawa M, Ohmomo S, Kumai S, Nakase T: Influence of Lactobacillus spp. from an inoculant and of Weissella and Leuconostoc spp. from forage crops on silage fermentation. Appl Environ Microbiol, (8): 2982-2987, 1998.
  • Kozaki M, Uchimura T, Okada S: Experimental manual of lactic acid bacteria. Asakurasyoten, Tokyo, Japan, 34-37, 1992. http://www. scirp.org/(S(i43dyn45teexjx455qlt3d2q))/reference/ReferencesPapers. aspx?ReferenceID=855440; Accessed: 11/07/2017.
  • Suzuki K-I, Sasaki J, Uramoto M, Nakase T, Komagata K: Agromyces mediolanus sp. nov., nom. rev., comb. nov., a species for "Corynebacterium mediolanum" Mamoli 1939 and for some aniline-assimilating bacteria which contain 2,4-diaminobutyric acid in the cell wall peptidoglycan.
  • Intern J System Evol Microbiol, 46 (1): 88-93, 1996. DOI: 10.1099/00207713- 1-88
  • Thompson JD, Higgins DG, Gibson TJ: CLUSTAL W: improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice. Nucleic Acids Res, 22 (22): 4673-4680, 1994. DOI: 10.1093/nar/22.22.4673
  • Kimura M, Ohta T: On the stochastic model for estimation of mutational distance between homologous proteins. J Mol Evol, 2 (1): 90, 1972. DOI: 10.1007/BF01653945
  • Saitou N, Nei M: The neighbor-joining method: A new method for reconstructing phylogenetic trees. Mol Biol Evol, 4 (4): 406-425, DOI: 10.1093/oxfordjournals.molbev.a040454
  • Viana PT, Teixeira FA, Pires AJV, Carvalho GGP, Figueiredo MP, Santana Jşnior HA: Losses and nutritional value of elephant grass silage with inclusion levels of cottonseed meal. Acta Sci Anim Sci, 35 (2): 144, 2013. DOI: 10.4025/actascianimsci.v35i2.13736
  • Krishnamoorthy U, Muscato T, Sniffen C, Van Soest P: Nitrogen fractions in selected feedstuffs. J Dairy Sci, 65 (2): 217-225, 1982. DOI: 10.3168/jds.S0022-0302(82)82180-2
  • Yuan X, Yu C, Li Z, Shimojo M, Shao T: Effect of inclusion of grasses and wet hulless-barley distillers' grains on the fermentation and nutritive quality of oat straw-and straw-grass silages in Tibet. Anim Prod Sci, 53 (5): 419-426, 2013. DOI: 10.5713/ajas.2011.11435
  • Van Soest Pv, Robertson J, Lewis B: Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. J Dairy Sci, 74 (10): 3583-3597, 1991. DOI: 10.3168/jds. S0022-0302(91)78551-2
  • Liu Q, Zhang J, Shi S, Sun Q: The effects of wilting and storage temperatures on the fermentation quality and aerobic stability of stylo silage. J Dairy Sci, 82 (4): 549-553, 2011. DOI: 10.1111/j.1740-0929.2011.00873.x
  • SAS/STAT User's Guide: Version 6 SAS Institute. Inc Cary, NC, US, A, 1990.
  • Björkroth KJ, Schillinger U, Geisen R, Weiss N, Hoste B, Holzapfel WH, Korkeala HJ, Vandamme P: Taxonomic study of Weissella confusa and description of Weissella cibaria sp. nov., detected in food and clinical samples. Intern J System Evol Microbiol, 52 (1): 141-148, 2002. DOI: 10.1099/00207713-52-1-141
  • Hammes WP, Vogel RF: The genus Lactobacillus. In, Wood BJB, Holzapfel WH (Eds): The Lactic Acid Bacteria. The Genera of Lactic Acid Bacteria. Vol. 2, 19-54, Blackie Academic and Professional, London, 1995.
  • Pang H, Zhang M, Qin G, Tan Z, Li Z, Wang Y, Cai Y: Identification of lactic acid bacteria isolated from corn stovers. Anim Sci J, 82 (5): 642- , 2011. DOI: 10.1111/j.1740-0929.2011.00894.x
  • Moon NJ: A short review of the role of lactobacilli in silage fermentation. Food Microbiol, 1 (4): 333-338, 1984. DOI: 10.1016/0740- (84)90066-2
  • Cai Y, Pang H, Kitahara M, Ohkuma M: Lactobacillus nasuensis sp. nov., a lactic acid bacterium isolated from silage, and emended description of the genus Lactobacillus. Int J Syst Evol Microbiol, 62 (5): 1144, 2012. DOI: 10.1099/ijs.0.031781-0
  • Rossi F, Dellaglio F: Quality of silages from Italian farms as attested by number and identity of microbial indicators. J Appl Microbiol, 103 (5): 1707-1715, 2007. DOI: 10.1111/j.1365-2672.2007.03416.x
  • Muck R: Recent advances in silage microbiology. Agric Food Sci, (1): 3-15, 2013.
  • Cai Y, Benno Y, Ogawa M, Kumai S: Effect of applying lactic acid bacteria isolated from forage crops on fermentation characteristics and aerobic deterioration of silage. J Dairy Sci, 82 (3): 520-526, 1999. DOI: 10.3168/jds.S0022-0302(99)75263-X
  • Heinritz SN, Martens SD, Avila P, Hoedtke S: The effect of inoculant and sucrose addition on the silage quality of tropical forage legumes with varying ensilability. Anim Feed Sci Technol, 174 (3): 201-210, 2012. DOI: 10.1016/j.anifeedsci.2012.03.017
  • Arriola K, Kim S, Adesogan A: Effect of applying inoculants with heterolactic or homolactic and heterolactic bacteria on the fermentation and quality of corn silage. J Dairy Sci , 94 (3): 1511-1516, 2011. DOI: 10.3168/ jds.S0022-0302(99)75263-X
  • Tabacco E, Piano S, Revello-Chion A, Borreani G: Effect of Lactobacillus buchneri LN4637 and Lactobacillus buchneri LN40177 on the aerobic stability, fermentation products, and microbial populations of corn silage under farm conditions. J Dairy Sci , 94 (11): 5589-5598, DOI: 10.3168/jds.2011-4286
  • Guo X, Undersander D, Combs D: Effect of Lactobacillus inoculants and forage dry matter on the fermentation and aerobic stability of ensiled mixed-crop tall fescue and meadow fescue. J Dairy Sci , 96 (3): 1735-1744, DOI: 10.3168/jds.2045-5786
  • Ávila CLdS, Valeriano AR, Pinto JC, Figueiredo HCP, Rezende AVd, Schwan RF: Chemical and microbiological characteristics of sugar cane silages treated with microbial inoculants. Rev Bras Zootec, 39 (1): 32, 2010. DOI: 10.1590/S1516-35982010000100004
  • Cao Y, Cai Y, Takahashi T, Yoshida N, Tohno M, Uegaki R, Nonaka K, Terada F: Effect of lactic acid bacteria inoculant and beet pulp addition on fermentation characteristics and in vitro ruminal digestion of vegetable residue silage. J Dairy Sci, 94 (8): 3902-3912, 2011. DOI:  10.3168/jds. 3623
Kafkas Üniversitesi Veteriner Fakültesi Dergisi-Cover
  • ISSN: 1300-6045
  • Yayın Aralığı: Yılda 6 Sayı
  • Başlangıç: 1995
  • Yayıncı: Kafkas Üniv. Veteriner Fak.
Sayıdaki Diğer Makaleler

ZnO Nanopartiküllerinin Bazı Hayvan ve Bitki Protein Kaynaklarının İn Vitro Gaz Üretimi Üzerine Etkisi

Elnaz GHAFFRI CHANZANAGH

Farklı Yaşlardaki Saanen Keçilerinin Farkli Mevsimlerdeki HSP 60 ve HSP70 İçin mRNA Gen Ekspresyon Profilleri

Funda KIRAL, Gamze Sevri 2 EKREN AŞICI, Merve KAYKI, Murat YILMAZ

Bulmer Etkisinin Gözardı Edilmesinin Projeni Testinde Genetik ve Ekonomik Sonuçları ve Genomik Seleksiyon Programındaki Olumsuz Etkisinin Araştırılması

Ali 1 MOJTAHEDIN, Jamal SEIFDAVATI, Azadeh 1 BOUSTAN, ? Sara 2 AZIZYAN, Reza SEYEDSHARIFI

Yüksek Yağlı Diyet ve Kolesterolle Beslenen Farelerde Eksojen Fibroblast Büyüme Faktörü-21'in Yangı Üzerine Etkisi

Han GUO, Runqi 1 LIU, Renxu CHANG, Cheng XIA, Chuang XU, Baoyin 1 HUANG, Ping 1 HE, Yuanyuan CHEN, Wei YANG, Ruirui LI, Sansi 1 GAO, Zhihao 1 DONG

Kars Balının Coğrafi İşaretlemesi İçin Melissopalinolojik Analiz

Ömür ÇELEMLİ GENÇAY, ÇİĞDEM ÖZENİRLER, NESRİN ECEM BAYRAM, GOLSHAN ZARE, Kadriye SORKUN

Cumhuriyet'in Erken Dönemlerinde (1923-1933) Yabancı Bilim Adamlarının Türk Veteriner Hekimliği ve Hayvancılığına Katkıları

ALİ YİĞİT, Nigar YERLİKAYA, Özgül KÜÇÜKASLAN

Lohmann Kahverengi Tavuklarda Melanocortin Reseptörü Geninde Tek Nükleotid Polimorfizmi İle Yumurta Verim Özellikleri Arasındaki İlişki

? Sarah 2 AGGAG, Karim EL SABROUT

Çin'de Kanatlı Hayvanlardan İzole Edilen Pasteurella multocida Sışlarının Moleküler Karakterizasyonu ve tonB Geni Açısından Genetik Analizi

Sishi 1 CHEN, Mengna JIANG1, Yingying 1 SUN, Yifei HE, Zuoyong ZHOU, Fangjun CHENG, Shimei LAN, Zhangcheng LI

Kolostruma Cevap Veren Rat Yavrularında İntrauterin Büyüme Geriliği İntestinal Otofaji ve Proliferayonu Artırır

Lili ZHANG, Xiang 1 ZHONG, Tian 1 WANG, Jintian 1 HE, Daryoush BABAZADEH, Ligen 1 ZHANG, Farman Ali 1 SIYAL, Chao WANG

Şahin (Buteo buteo) İnce Bağırsak ve Karaciğerinin Anatomik ve Histolojik Yapısı İle Katalazın İmmunohistokimyasal Lokalizasyonu

YALÇIN AKBULUT, Seyit Ali BİNGÖL, Turgay DEPREM, Serap KORAL TAŞÇI 1