首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Significant Improvement of Serratia marcescens Lipase Fermentation,by Optimizing Medium,Induction,and Oxygen Supply
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Significant Improvement of Serratia marcescens Lipase Fermentation,by Optimizing Medium,Induction,and Oxygen Supply

机译:通过优化培养基,诱导和供氧,显​​着改善粘质沙雷氏菌脂肪酶的发酵

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Production of an extracellular lipase from Serratia marcescens ECU1010,which is an industrially important biocatalyst for the stereospecific synthesis of Diltiazem precusor,was carefully optimized in both shake flasks and a fermenter,using Tween-80 as the enzyme inducer.Dextrin and beef extract combined with ammonium sulfate were indicated to be the best carbon and nitrogen sources,respectively.With the increase of Tween-80 from 0 to 10 g l~(-1),the lipase production was greatly enhanced from merely 250 U l~(-1)to a maximum of 3,340 U l~(-1),giving the highest lipase yield of ca 640 U g~(-1)dry cell mass(DCW),although the maximum biomass(6.0 g DCW l~(-1))was achieved at 15 g l~(-1)of Tween-80.When the medium loading in shake flasks was reduced from 20 to 10%(v/v),the lipase production was significantly enhanced.The increase in shaking speed also resulted in an improvement of the lipase production,although the cell growth was slightly repressed,suggesting that the increase of dissolved oxygen(DO)concentration contributed to the enhancements of lipase yield.When the lipase fermentation was carried out in a 5-1 fermenter,the lipase production reached a new maximum of 11,060 U l~(-1)by simply raising the aeration rate from 0.5 to 1.0 vvm,while keeping the dissolved oxygen above 20% saturation via intermittent adjustment of the agitation speed(>400 rpm),in the presence of a relatively low concentration(2 g l~(-1))of Tween-80 to prevent a potential foaming problem,which is easy to occur in the intensively aerated fermenter.
机译:使用Tween-80作为酶诱导剂,在摇瓶和发酵罐中均仔细优化了沙雷氏菌粘质沙雷氏菌ECU1010的细胞外脂肪酶的生产,ECU1010是立体定向合成地尔硫卓前体的工业重要生物催化剂,并使用Tween-80作为酶诱导剂进行了精心优化。随着Tween-80从0增加到10 gl〜(-1),脂肪酶的产量从仅仅250 U l〜(-1)大大增加,到200 gl〜(-1),硫酸铵被认为是最好的碳源和氮源。尽管最大生物量(6.0 g DCW l〜(-1))最大,但最大脂肪酶产量为约3,340 U l〜(-1),给出了约640 U g〜(-1)干细胞质量(DCW)的脂肪酶产量。在Tween-80的15 gl〜(-1)时达到了。当摇瓶中的培养基负载从20%(v / v)降低时,脂肪酶的产生显着增加。摇动速度的增加也导致了脂肪酶的产生有所改善,尽管细胞的生长受到了轻微的抑制,这表明溶解的增加氧(DO)浓度有助于提高脂肪酶的产量。当在5-1发酵罐中进行脂肪酶发酵时,通过简单地提高曝气速率,脂肪酶的产量达到了新的最大值11,060 U l〜(-1)。 0.5至1.0 vvm,同时在较低浓度(2 gl〜(-1))的Tween-80存在下,通过间歇性调整搅拌速度(> 400 rpm)使溶解氧保持在20%饱和度以上潜在的起泡问题,在加气发酵罐中很容易发生。

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