Subekah Nawa Kartikasari
Magister Teknologi Agroindustri, Universitas Jember, Jember, Indonesia
Puspita Sari
Magister Teknologi Agroindustri, Universitas Jember, Jember, Indonesia
Achmad Subagio
Magister Teknologi Agroindustri, Universitas Jember, Jember, Indonesia
DOI: https://doi.org/10.19184/j-agt.v10i01.4472
ABSTRACT
MOCAF (modified cassava flour) is a product derived from cassava flour that uses the principles of fermented cassava cell modification (Subagio, 2006). During the production of MOCAF, side product in the form of starch has been produced but has not been utilized. This study aimed to assess fermentation lengths using BAL toward chemical characteristics, granule amylography and morphology. The method used was completely randomized design (CRD) with one factor, consisting of fermentation lengths of 0, 24, 48 and 72 hours, and control which were replicated (3) three times. The results of chemical characteristics showed that the longer the value of amylopectin content, total acid, total sugar, the higher the fermentation, while the pH value of reducing sugar, amylose decreased, the granular form was pockmarked and had bigger and bigger size. Amylography of pasta showed the increase in time, temperature, (PV), (TV), (FV) and decrease in (SB) and (BD). By recognizing the amylographic characteristic, the application is easier as an improver ingredient in food products associated with characteristics such as viscosity, shelf life, retrogradation and syneresis. The results showed that the length of fermentation affected the chemical characteristics, granular amylography and morphology of biologically modified starch.
Keywords: lactic acid bacteria, modified starch, cassava, improver
REFERENCES
Batey, I. L. dan Curtin, B. M. 2000. Efeect on pasting viscosity of starch and flour from different operating condition for rapid visco analyser. Cereal Chemistary, 77 (6): 754-760.
Bamforth, C. H. 2005. Food Fermentation and Microorganisms. By Blacwell Science Ltd a Blackwell Publishing company.
Batey, I. L. 2007. Interpretation of RVA Curves dalam The RVA Handbook.
Bartolini, C. A. 2010. Starches Characterization, Properties and Aplication. Publishing Taylor and Francis Group, LLC.
Budijanto, S., dan Yuliyanti. 2012. Studi persiapan tepung sorgum (Sorghum bicolor L. Moench) dan aplikasinya pada pembuaan beras analog. Jurnal Teknologi Pertanian, 13 (3): 177-186.
Copeland, L., Blazek, J., Salman, H., dan Tang, M. C. 2009. Form and functionality of starch. Food Hydrocolloids, 23: 1527-1534.
Demiate, Ivo Mottin, Marília O., and Gilvan W. 2001. Characterization of Chestnut (Castanea sativa, Mill) Starch for Industrial Utilization. Brazilian Archives of Biology and Technology, Brazil.
Deetae, P., Shobsngob. S., Varanyanond, W., Chinachoti, P., Navikul, O., Vavarinit, S.2008. Preparation, pasting properties and freeze thaw stability of dual modified crosslink-phosphorylated rice starch. Carbohyd Poly ,73: 351-358.
Eliasson, C dan Ann. 2004. Starch In Food (Structure, Fuction And Applications). Woodhead Publishing limited, Cambridge England.
Fleche, G. 1985. Chemical Modification and Degradation. Didalam G. M. A Van Beynum dan J, A. Roels. Satrch Coversion Technology. Champman and Hall, London.
Hui, Y. H. 2006. Hand Book of Food Science Technology And Engineering. Vol. 1. CRC Press Taylor & Francis Group.
Huang, Y. C., dan Lai, H. M. 2010. Noodle quality affected by different cereal starches. Journal of Food Engineering, 97: 135–143.
Haryanti, P., Setyawati, R., dan Wicaksono, R.. 2014. Prengaruh suhu dan lama pemanasan suspensi pati serta konsentrasi butanol terhadap karakteristik fisiko kimia pati tinggi amilosa dari tapioka. Jurnal Agritech, 31 (2): 308-315.
Immaningsih, N. 2012. Profil gelatinisasi beberapa formlasi tepung-tepungan untuk pendugaan sifat pemasakan. Panel Gizi Makan, 35 (1): 13-22.
Lindeboom, N., Chang, P. R. and Tyler, R. T. 2004. Analytical, biochemical and physicochemical aspects of starch granule size, with emphasis on small granule starches: A Review. Starch/Starke, 56: 89-99.
Miyazaki, M., Van Hung, P., Maeda, T., Morita, N. 2006. Recent advances in application of modified starches for breadmaking. Food Science and Technology, 17 (11): 591-599.
Murtiningrum, Lisangan, M. M dan Edoway Y. 2012. Pengaruh preparasi ubi jalar (Ipomoe batatas) sebagai bahan pengental terhadap komposisi kimia dan sifat organoleptik saus buah merah (Pandanus Conoideus L). Jurnal Agrointek, 6 (1).
Mufarrikha, I., Roosdiana, A., dan Prasetyawan, S. 2014. Optimasi kondisi produksi pektinase dari Aspergillus niger. Kimia. Student Journal, 2 (1): 393-399.
Oboh, G., dan Elusiyan, C. A. 2007. Changes in the nutrient and antinutrient content of micro-fungi fermented cassava flour produced from low- and medium cyanide variety of cassava tuber. African Journal of Biotechnology, 6 (18): 2150-2157.
Plata-Oviedo, M. dan Camargo, C. 1998. Effect of acid treatments and drying processes on physicho-chemical functional properties of cassava starch. Journal of The Science of Food and Agriculture, 77: 103-108.
Subagio, A. 2006. Ubi Kayu substitusi berbagai tepung-tepungan. Food Review, 1 (3): 18-22.
Subagio, A., Windrati, W.S., Witono, Y., dan Fahmi, F. 2008. “Produksi Operasi Standar (POS): Produksi Mocal Berbasis Klaster”. FTP Universitas Jember, Jember.
Vavarinit, S., Shobsngob, S., Varanyanond, W., Chinachoti P dan Naivikul, O. 2003. Effect of amylase contect on gelatinisasion, retrogradasi and pating properties of flour from different cultivars of thai rice. Starch-Starke, 55 (9): 410-415.
Zhang, G. Y., dan Hamaker, B. R. 2003. A three component interaction among starch, protein and free fatty acids revealed by pasting profiles. Journal of Agricultural and Food Chemistary, 51 (9): 2796-2800.