Department of Microbiology, Osmania University, Hyderabad 500007, Andhra Pradesh, India.
World J Microbiol Biotechnol. 2012 May;28(5):2267-71. doi: 10.1007/s11274-012-1011-8. Epub 2012 Feb 11.
Strain improvement by genetic manipulation or optimization of fermentation conditions for overproduction of vitamin B(12) has a drawback due to feed back inhibition. To resist the feed back inhibition by analogues of vitamin B(12) in Propionibacterium freudenrechii subsps. shermanii (OLP-5), we have tested with microbially separated B(12) analogues from three different strains. Microbial analogues were differentiated from commercially available vitamin B(12) by high pressure liquid chromatography and spectrophotometric method. An analogue isolated from NRRL-B-4327 was shown to increase vitamin B(12) concentration from 18.53 ± 0.15 to 31.67 ± 0.58 mg/l in OLP-5 strain. The presence of chemical analogue (ICH(2) Co(DH)(2) (H(2)Py)(4)) increased vitamin B(12) production from 16.13 ± 0.15 to 18.53 ± 0.15 mg/l in OLP-5. These findings revealed that addition of B(12) analogues in fermentation media have developed strain resistance to feed back inhibition by vitamin B(12).
通过遗传操作或优化发酵条件来提高维生素 B(12)的产量以进行生产,由于反馈抑制,存在缺点。为了抵抗丙酸杆菌亚种。弗氏柠檬酸(OLP-5)中维生素 B(12)类似物的反馈抑制,我们已经用三种不同来源的微生物分离的 B(12)类似物进行了测试。微生物类似物通过高压液相色谱和分光光度法与市售的维生素 B(12)区分开来。从 NRRL-B-4327 中分离出的一种类似物被证明可以将 OLP-5 菌株中的维生素 B(12)浓度从 18.53 ± 0.15 增加到 31.67 ± 0.58 mg/l。化学类似物(ICH(2) Co(DH)(2) (H(2)Py)(4))的存在将 OLP-5 中的维生素 B(12)产量从 16.13 ± 0.15 增加到 18.53 ± 0.15 mg/l。这些发现表明,在发酵培养基中添加 B(12)类似物可以使菌株对维生素 B(12)的反馈抑制产生抗性。