Screening for potential strain to produce bioprotein from cheaper carbon source

Enough production of food and fodder are essential for sustainability. In times to come, the population of developed countries might be stabilized, but it will keep on increasing, in developing countries, at the rate of average four per cent. This will warrant utilization of certain carbon rich sour...

Full description

Saved in:
Bibliographic Details
Main Authors: Jamal, Parveen, Alam, Md. Zahangir, Saleh, Nurul Umi
Format: Conference or Workshop Item
Language:English
Published: 2006
Subjects:
Online Access:http://eprints.utm.my/id/eprint/174/1/ParveenJamal2006_Screeningforpotentialstrainto.pdf
http://eprints.utm.my/id/eprint/174/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.utm.174
record_format eprints
spelling my.utm.1742017-08-23T08:09:01Z http://eprints.utm.my/id/eprint/174/ Screening for potential strain to produce bioprotein from cheaper carbon source Jamal, Parveen Alam, Md. Zahangir Saleh, Nurul Umi TP Chemical technology Enough production of food and fodder are essential for sustainability. In times to come, the population of developed countries might be stabilized, but it will keep on increasing, in developing countries, at the rate of average four per cent. This will warrant utilization of certain carbon rich sources, which are easily available and can effortlessly be converted into food and fodder, rich in protein and other essential nutrients. The production of bioproteins (proteins derived from micro-organisms) by fermentation of cheaper carbon source is one of the most promising breakthrough of biotechnological innovations, which will certainly increase the availability of high quality affordable proteins in the world and reduce dependence on animals. Due to the increasing demand for bioproteins, the efficient strains, substrate and method must be used for high yield product. In this study, we have made prudent efforts to produce maximum quantity of bioprotein by liquid state bioconversion of wheat flour - a cheaper carbon source having high nutritional value, high carbohydrate percentage and easily available in malaysia. Screening of five different microorganisms - aspergillus niger, phanerochaete chrysosporium, saccharomyces cerevisiae, mucor hiemalis and thricoderma harzianum - was done with fixed process conditions. Bioconversion was done in a 500 ml erlenmeyer flask having 100 ml of wheat flour with known concentration of 2% (w/v) at a temperature of 270c, agitation of 150 rpm with 2% inoculum (106 spores/ml). Biomass production was recorded every day for six days and the protein content was also determined every day. From the observed results, mucor hiemalis was found to be as the most potential strain with biomass of about 11.4 g/l on the fourth day of treatment. With this promising result, the amount of bioproteins could be further increased by optimizing process factors. This study may provide a better alternative in agricultural products by converting cheaper carbon source to valuable and quality product bioprotein, which can be used as supplement and additive in the animal feed as well as in chemical and pharmaceutical industries. 2006-07 Conference or Workshop Item PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/174/1/ParveenJamal2006_Screeningforpotentialstrainto.pdf Jamal, Parveen and Alam, Md. Zahangir and Saleh, Nurul Umi (2006) Screening for potential strain to produce bioprotein from cheaper carbon source. In: 1st International Conference on Natural Resources Engineering & Technology 2006, 24-25th July 2006, Putrajaya, Malaysia.
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Jamal, Parveen
Alam, Md. Zahangir
Saleh, Nurul Umi
Screening for potential strain to produce bioprotein from cheaper carbon source
description Enough production of food and fodder are essential for sustainability. In times to come, the population of developed countries might be stabilized, but it will keep on increasing, in developing countries, at the rate of average four per cent. This will warrant utilization of certain carbon rich sources, which are easily available and can effortlessly be converted into food and fodder, rich in protein and other essential nutrients. The production of bioproteins (proteins derived from micro-organisms) by fermentation of cheaper carbon source is one of the most promising breakthrough of biotechnological innovations, which will certainly increase the availability of high quality affordable proteins in the world and reduce dependence on animals. Due to the increasing demand for bioproteins, the efficient strains, substrate and method must be used for high yield product. In this study, we have made prudent efforts to produce maximum quantity of bioprotein by liquid state bioconversion of wheat flour - a cheaper carbon source having high nutritional value, high carbohydrate percentage and easily available in malaysia. Screening of five different microorganisms - aspergillus niger, phanerochaete chrysosporium, saccharomyces cerevisiae, mucor hiemalis and thricoderma harzianum - was done with fixed process conditions. Bioconversion was done in a 500 ml erlenmeyer flask having 100 ml of wheat flour with known concentration of 2% (w/v) at a temperature of 270c, agitation of 150 rpm with 2% inoculum (106 spores/ml). Biomass production was recorded every day for six days and the protein content was also determined every day. From the observed results, mucor hiemalis was found to be as the most potential strain with biomass of about 11.4 g/l on the fourth day of treatment. With this promising result, the amount of bioproteins could be further increased by optimizing process factors. This study may provide a better alternative in agricultural products by converting cheaper carbon source to valuable and quality product bioprotein, which can be used as supplement and additive in the animal feed as well as in chemical and pharmaceutical industries.
format Conference or Workshop Item
author Jamal, Parveen
Alam, Md. Zahangir
Saleh, Nurul Umi
author_facet Jamal, Parveen
Alam, Md. Zahangir
Saleh, Nurul Umi
author_sort Jamal, Parveen
title Screening for potential strain to produce bioprotein from cheaper carbon source
title_short Screening for potential strain to produce bioprotein from cheaper carbon source
title_full Screening for potential strain to produce bioprotein from cheaper carbon source
title_fullStr Screening for potential strain to produce bioprotein from cheaper carbon source
title_full_unstemmed Screening for potential strain to produce bioprotein from cheaper carbon source
title_sort screening for potential strain to produce bioprotein from cheaper carbon source
publishDate 2006
url http://eprints.utm.my/id/eprint/174/1/ParveenJamal2006_Screeningforpotentialstrainto.pdf
http://eprints.utm.my/id/eprint/174/
_version_ 1643643035222802432
score 13.160551