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                  โครงการหนังสออเล็กทรอนกสด้านการเกษตร เฉลมพระเกียรตพระบาทสมเด็จพระเจ้าอยู่หัว
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                Sawangkeaw R, Ngamprasertsith S. A review of lipid-based biomasses as feedstocks for biofuels
                    production. Renew Sustain Energy Rev. 2013;25:97-108.

                Sapsirisuk S, Polburee P, Lorliam W, Limtong S. Discovery of oleaginous yeast from mountain forest soil

                   in Thailand. J Fungi. 2022;8(10):1100.
                Schulze I, Hansen S, Grosshans S, Rudszuck T, Ochsenreither K, Syldatk C, et al. Characterization of

                    newly  isolated  oleaginous  yeasts  -  Cryptococcus podzolicus, Trichosporon porosum and  Pichia

                    segobiensis. AMB Express. 2014;4:24.

                Sitepu IR, Garay LA, Sestric R, Levin D, Block DE, German JB, et al. Oleaginous yeasts for biodiesel:

                    current and future trends in biology and production. Biotechnol Adv. 2014;32(7):1336-1360.
                Tanimura A, Sugita T, Endoh R, Ohkuma M, Kishino S, Ogawa J, et al. Lipid production via simultaneous

                    conversion  of  glucose  and  xylose  by  a  novel  yeast,  Cystobasidium  iriomotense.  Plos  One.

                    2018;13(9):1-13.

                Tanimura A, Takashima M, Sugita T, Endoh R, Kikukawa M, Yamaguchi S, et al. Cryptococcus terricola

                    is  a  promising  oleaginous  yeast  for  biodiesel  production  from  starch  through  consolidated
                    bioprocessing. Sci Rep. 2014;4:4776.                                                                 บทที่ 5

                Tanimura A, Takashima M, Sugita T, Endoh R, Ohkuma M, Kishino S, et al. Lipid production through

                    simultaneous  utilization  of  glucose,  xylose,  and  L-arabinose  by  Pseudozyma  hubeiensis:  a

                    comparative screening study. AMB Express. 2016;6(1):58.

                Taskin M, Ortucu S, Aydogan MN, Arslan NP. Lipid production from sugar beet molasses under non-
                    aseptic culture conditions using the oleaginous yeast Rhodotorula glutinis TR29. Renew Energy.

                    2016;99:198-204.

                Taskin M, Saghafian A, Aydogan MN, Arslan NP. Microbial lipid production by cold‐adapted oleaginous

                    yeast Yarrowia lipolytica B9 in non‐sterile whey medium. Biofuel Bioprod Biorefin. 2015;9(5):595-

                    605.
                Tehlivets O, Scheuringer K, Kohlwein SD. Fatty acid synthesis and elongation in yeast. Biochim Biophys

                    Acta. 2007;1771(3):255-270.

                Teixeira PG, David F, Siewers V, Nielsen J. Engineering lipid droplet assembly mechanisms for improved

                    triacylglycerol accumulation in Saccharomyces cerevisiae. FEMS Yeast Res. 2018;18(6).

                Thevenieau F, Nicaud J-M. Microorganisms as sources of oils. Oil seeds and fats, Crops and Lipids.
                    2013;20(6).

                Tsigie YA, Wang CY, Truong CT, Ju YH. Lipid production from Yarrowia lipolytica Po1g grown in sugarcane

                    bagasse hydrolysate. Bioresour Technol. 2011;102(19):9216-222.




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