Research Article
BibTex RIS Cite

Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları

Year 2020, Volume: 3 Issue: 1, 64 - 70, 15.06.2020

Abstract

Atık mantar kompostu, mantarların hasat edilmesinden sonra kalan bir üründür. Atık mantar kompostu potansiyel olarak çevre kirliliğine yol açan bir materyal olup, yok edilmesi maliyetlidir. Atık mantar kompostunun bitki beslenmesinde kullanılmasının bitkisel üretime çok büyük katkıları bulunmaktadır. Ülkemizde birçok avantajından dolayı mantar türleri üretiminin artması sonucu atık mantar kompostu miktarı da artmıştır. Atık mantar kompostunun bertaraf edilmesinin maliyetli olması ve besin madde içeriği nedeniyle hayvan beslemede yeni bir yem kaynağı olarak kullanılması sonucu atıkların ekonomiye kazandırılması son zamanlarda inceleme konusu olmuştur. Bu çalışmada hayvancılıkta masrafların yaklaşık %70’ini oluşturan yem maliyetini düşürmek için atık mantar kompostunun hayvan beslemede kullanım olanakları anlatılmıştır.

References

  • [1] Kumar S., Chandra R. Bioconversion of agricultural wastes for production of milky mushroom (Calocybe indica), Journal of Scientific Research 2013; 57:65-76.
  • [2] Atila F. A useful way to dispose of phenolic-rich agro-industrial wastes: Mushroom cultivation, EJENS 2019; 3(2):32-41.
  • [3]. Özdemir P. Atık mantar kompostunun yem değerinin belirlenmesi ve erkek kuzularda besi performansına etkisi, Tarımsal Araştırmalar ve Politikalar Genel Müdürlüğü Yeni Teklif Projesi 2020, Ankara.
  • [4] Calzada JF., Franco LF., Arriola MC de., Rolzand C., Ortiz MA. Acceptability, body weight changes and digestibility of spent wheat straw after harvesting of pleurotus sajor-caju fed to lambs, Biol Waste 1987; 22(4):303-309.
  • [5] Zadrazil F. Changes in in vitro digestibility of wheat straw during fungal growth and after harvest of oyster mushrooms (Pleurotusspp.) on laboratory and industrial scale, Journal of Applied Animal Research 1997; 11(1):37-48. [6] Fazaeli H., Jelan ZA., Azizi A., Liang JB., Mahmodzadehand H., Osman A. Effects of fungal treatment on the nutritive value of wheat straw, Malaysian Journal of Animal Science 2002; 7(2):61-71.
  • [7] Fazaeli H., Talebian Masoodi AR. Spent wheat straw compost of Agaricus bisporus mushroom as ruminant feed, Asian-Australasian Journal of Animal Sciences 2006; 19(6):845-851.
  • [8] Rai RD., Sohi HS. How protein rich are mushrooms, Indian Hort 1988; 33:2-3.
  • [9] Langar PN., Sehgal JP., Rana VK., Singh MM., Garcha HS. Utilization of Agaricus bisporus-harvested spent wheat straw in the ruminant diets, Indian Journal of Animal Science 1982; 52(8):634-637.
  • [10] Durrant AJ., Woodand DA., Cain RB. Lignocellulose biodegradation by Agaricus bisporus during solid substrate fermentation, J Gen Microbiol 1991; 137:751-755.
  • [11] Zhang CK., Gong F., Li DS. A note on the utilisation of spent mushroom composts in animal feeds, Bioresource Technology 1995; 52:89-91.
  • [12]Oh YK., Lee WM., Choi CW., Kim KH., Hong SK. Effects of spent mushroom substrates supplementation on rumen fermentation and blood metabolites in Hanwoo steers, Asian-Australian Journal of Animal Science 2010; 23: 1608-1613.
  • [13] Lee TT., Ciou JY., Chiang CJ., Chao YP., Yu B. Effect of pleurotus eryngii stalk residue on the oxidative status and meat quality of broiler chickens. Journal of Agriculture Food Chem, 2012; 60:11157–11163.
  • [14] Foluke A., Olutayo A., Olufemi A. Assessing spent mushroom substrate as a replacement to wheat bran in the diet of broilers, American International Journal of Contemporary Research 2014; 4(4):178-183.
  • [15] Ehtesham SH., Vakili AR. The effect of spent mushroom substrate on blood metabolites and weight gain in kurdish male lambs, Entomology and Applied Science Letters 2015; 2(1):29-33.
  • [16] Lai LP., Lee MT., Chen CS., Yu B., Lee TT. Effects of co-fermented Pleurotus eryngii stalk residues and soybean hulls by Aureobasidium pullulans on performance and intestinal morphology in broiler chickens, Poultry Science 2015; 94(12):2959-69. doi: 10.3382/ps/pev302.
  • [17] Wang CL., Chiang CJ., Chao YP., Yu B., Lee TT. Effect of Cordyceps militaris waster medium on production performance, egg traits and egg yolk cholesterol of laying hens, Journal of Poultry Science 2015; 52, 188-196. doi:10.2141/ jpsa.0140191
  • [18] Baek YC., Kim MS., Reddy KE., Oh YK., Jung YH., Yeo JM., Choi H. Rumen fermentation and digestibility of spent mushroom (Pleurotus ostreatus) substrate inoculated with Lactobacillus brevis for Hanwoo steers, Revista Colombiana de Ciencias Pecuarias 2017; 30(4): 267-277.
  • [19] Kalvandi S., Zaboli KH., Malecky M. Effect of spent mushroom compost (Agaricus bisporus) silage processing on its chemical composition, digestibility and ruminal fermentation kinetic in Mehraban sheep, Animal Production Research 2018; 7(2):69-82.
  • [20] Mahfuz S., Song H., Liu Z., Liu X., Diao Z., Ren G., Guo Z., Cui Y. Effect of golden needle mushroom (Flammulina velutipes) stem waste on laying performance, calcium utilization, immune response and serum immunity at early phase of production, Asian Australian Journal of Animal Science 2018; 31(5):705-11.
  • [21] Maleko D., Mwilawa A., Msalya G., Pasape L., Mtei K. Forage growth, yield and nutritional characteristics of four varieties of napier grass (Pennisetum purpureum Schumach) in the west Usambara highlands, African Crop Science Journal 2019; 6:e00214.
  • [22] Wang CC., Lin LJ., Chao YP., Chiang CJ., Lee MT., Chang SC., Yu B., Lee TT. Antioxidant molecular targets of wheat bran fermented by white rot fungi and its potential modulation of antioxidative status in broiler chickens, British Poultry Science 2017; 58: 262-271.
  • [23] Mahfuz S., He T., Liu S., Wu D., Long S., Piao X. Dietary inclusion of mushroom (flammulina velutipes) stem waste on growth performance, antibody response, immune status, and serum cholesterol in broiler chickens, Animals 2019; 9:692.
  • [24] Chuang WY., Liu CL., Tsai CF., Lin WC., Chang SC., Shih HD., Shy YM., Lee TZ. Evaluation of waste mushroom compost as a feed supplement and ıts effects on the fat metabolism and antioxidant capacity of broilers, Animals 2020; 10: 445; doi:10.3390/ani10030445.
  • [25] Tesfay T., Godifey T., Mesfin R., Kalayu G. Evaluation of waste paper for cultivation of oyster mushroom (Pleurotus ostreatus) with some added supplementary materials, AMB Expr 2020; 10:15.
Year 2020, Volume: 3 Issue: 1, 64 - 70, 15.06.2020

Abstract

References

  • [1] Kumar S., Chandra R. Bioconversion of agricultural wastes for production of milky mushroom (Calocybe indica), Journal of Scientific Research 2013; 57:65-76.
  • [2] Atila F. A useful way to dispose of phenolic-rich agro-industrial wastes: Mushroom cultivation, EJENS 2019; 3(2):32-41.
  • [3]. Özdemir P. Atık mantar kompostunun yem değerinin belirlenmesi ve erkek kuzularda besi performansına etkisi, Tarımsal Araştırmalar ve Politikalar Genel Müdürlüğü Yeni Teklif Projesi 2020, Ankara.
  • [4] Calzada JF., Franco LF., Arriola MC de., Rolzand C., Ortiz MA. Acceptability, body weight changes and digestibility of spent wheat straw after harvesting of pleurotus sajor-caju fed to lambs, Biol Waste 1987; 22(4):303-309.
  • [5] Zadrazil F. Changes in in vitro digestibility of wheat straw during fungal growth and after harvest of oyster mushrooms (Pleurotusspp.) on laboratory and industrial scale, Journal of Applied Animal Research 1997; 11(1):37-48. [6] Fazaeli H., Jelan ZA., Azizi A., Liang JB., Mahmodzadehand H., Osman A. Effects of fungal treatment on the nutritive value of wheat straw, Malaysian Journal of Animal Science 2002; 7(2):61-71.
  • [7] Fazaeli H., Talebian Masoodi AR. Spent wheat straw compost of Agaricus bisporus mushroom as ruminant feed, Asian-Australasian Journal of Animal Sciences 2006; 19(6):845-851.
  • [8] Rai RD., Sohi HS. How protein rich are mushrooms, Indian Hort 1988; 33:2-3.
  • [9] Langar PN., Sehgal JP., Rana VK., Singh MM., Garcha HS. Utilization of Agaricus bisporus-harvested spent wheat straw in the ruminant diets, Indian Journal of Animal Science 1982; 52(8):634-637.
  • [10] Durrant AJ., Woodand DA., Cain RB. Lignocellulose biodegradation by Agaricus bisporus during solid substrate fermentation, J Gen Microbiol 1991; 137:751-755.
  • [11] Zhang CK., Gong F., Li DS. A note on the utilisation of spent mushroom composts in animal feeds, Bioresource Technology 1995; 52:89-91.
  • [12]Oh YK., Lee WM., Choi CW., Kim KH., Hong SK. Effects of spent mushroom substrates supplementation on rumen fermentation and blood metabolites in Hanwoo steers, Asian-Australian Journal of Animal Science 2010; 23: 1608-1613.
  • [13] Lee TT., Ciou JY., Chiang CJ., Chao YP., Yu B. Effect of pleurotus eryngii stalk residue on the oxidative status and meat quality of broiler chickens. Journal of Agriculture Food Chem, 2012; 60:11157–11163.
  • [14] Foluke A., Olutayo A., Olufemi A. Assessing spent mushroom substrate as a replacement to wheat bran in the diet of broilers, American International Journal of Contemporary Research 2014; 4(4):178-183.
  • [15] Ehtesham SH., Vakili AR. The effect of spent mushroom substrate on blood metabolites and weight gain in kurdish male lambs, Entomology and Applied Science Letters 2015; 2(1):29-33.
  • [16] Lai LP., Lee MT., Chen CS., Yu B., Lee TT. Effects of co-fermented Pleurotus eryngii stalk residues and soybean hulls by Aureobasidium pullulans on performance and intestinal morphology in broiler chickens, Poultry Science 2015; 94(12):2959-69. doi: 10.3382/ps/pev302.
  • [17] Wang CL., Chiang CJ., Chao YP., Yu B., Lee TT. Effect of Cordyceps militaris waster medium on production performance, egg traits and egg yolk cholesterol of laying hens, Journal of Poultry Science 2015; 52, 188-196. doi:10.2141/ jpsa.0140191
  • [18] Baek YC., Kim MS., Reddy KE., Oh YK., Jung YH., Yeo JM., Choi H. Rumen fermentation and digestibility of spent mushroom (Pleurotus ostreatus) substrate inoculated with Lactobacillus brevis for Hanwoo steers, Revista Colombiana de Ciencias Pecuarias 2017; 30(4): 267-277.
  • [19] Kalvandi S., Zaboli KH., Malecky M. Effect of spent mushroom compost (Agaricus bisporus) silage processing on its chemical composition, digestibility and ruminal fermentation kinetic in Mehraban sheep, Animal Production Research 2018; 7(2):69-82.
  • [20] Mahfuz S., Song H., Liu Z., Liu X., Diao Z., Ren G., Guo Z., Cui Y. Effect of golden needle mushroom (Flammulina velutipes) stem waste on laying performance, calcium utilization, immune response and serum immunity at early phase of production, Asian Australian Journal of Animal Science 2018; 31(5):705-11.
  • [21] Maleko D., Mwilawa A., Msalya G., Pasape L., Mtei K. Forage growth, yield and nutritional characteristics of four varieties of napier grass (Pennisetum purpureum Schumach) in the west Usambara highlands, African Crop Science Journal 2019; 6:e00214.
  • [22] Wang CC., Lin LJ., Chao YP., Chiang CJ., Lee MT., Chang SC., Yu B., Lee TT. Antioxidant molecular targets of wheat bran fermented by white rot fungi and its potential modulation of antioxidative status in broiler chickens, British Poultry Science 2017; 58: 262-271.
  • [23] Mahfuz S., He T., Liu S., Wu D., Long S., Piao X. Dietary inclusion of mushroom (flammulina velutipes) stem waste on growth performance, antibody response, immune status, and serum cholesterol in broiler chickens, Animals 2019; 9:692.
  • [24] Chuang WY., Liu CL., Tsai CF., Lin WC., Chang SC., Shih HD., Shy YM., Lee TZ. Evaluation of waste mushroom compost as a feed supplement and ıts effects on the fat metabolism and antioxidant capacity of broilers, Animals 2020; 10: 445; doi:10.3390/ani10030445.
  • [25] Tesfay T., Godifey T., Mesfin R., Kalayu G. Evaluation of waste paper for cultivation of oyster mushroom (Pleurotus ostreatus) with some added supplementary materials, AMB Expr 2020; 10:15.
There are 24 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section REVIEWS
Authors

Fülya Sert This is me 0000-0003-2494-5415

Tugay Ayaşan

Publication Date June 15, 2020
Submission Date April 11, 2020
Acceptance Date May 4, 2020
Published in Issue Year 2020 Volume: 3 Issue: 1

Cite

APA Sert, F., & Ayaşan, T. (2020). Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 3(1), 64-70.
AMA Sert F, Ayaşan T. Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları. Osmaniye Korkut Ata University Journal of Natural and Applied Sciences. June 2020;3(1):64-70.
Chicago Sert, Fülya, and Tugay Ayaşan. “Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları”. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi 3, no. 1 (June 2020): 64-70.
EndNote Sert F, Ayaşan T (June 1, 2020) Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi 3 1 64–70.
IEEE F. Sert and T. Ayaşan, “Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları”, Osmaniye Korkut Ata University Journal of Natural and Applied Sciences, vol. 3, no. 1, pp. 64–70, 2020.
ISNAD Sert, Fülya - Ayaşan, Tugay. “Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları”. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi 3/1 (June 2020), 64-70.
JAMA Sert F, Ayaşan T. Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları. Osmaniye Korkut Ata University Journal of Natural and Applied Sciences. 2020;3:64–70.
MLA Sert, Fülya and Tugay Ayaşan. “Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları”. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, vol. 3, no. 1, 2020, pp. 64-70.
Vancouver Sert F, Ayaşan T. Atık Mantar Kompostunun Hayvan Beslemede Kullanım Olanakları. Osmaniye Korkut Ata University Journal of Natural and Applied Sciences. 2020;3(1):64-70.

23487


196541947019414

19433194341943519436 1960219721 197842261021238 23877

*This journal is an international refereed journal 

*Our journal does not charge any article processing fees over publication process.

* This journal is online publishes 5 issues per year (January, March, June, September, December)

*This journal published in Turkish and English as open access. 

19450 This work is licensed under a Creative Commons Attribution 4.0 International License.