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Effect of Glycine on 5-Aminoevulinic Acid Biosynthesis in Heterotrophic Culture of Chlorella regularis YA-603

机译:甘氨酸对普通小球藻YA-603异养培养中5-氨基戊酸生物合成的影响

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摘要

Chlorella regularis strain YA-603 was previously found to exhibit a comparatively high growth rate and improved 5-aminolevulinic acid (ALA) productivity when cultured heterotrophically. Although the universal tetrapyrrole precursor ALA is synthesized from glutamate in algae and higher plants, in this study the addition of glutamate to the medium did not enhance ALA production in the heterotrophic culture of C. regularis YA-603. On the other hand, the addition of glycine, which is a precursor of ALA biosynthesis via the Shemin pathway in animal cells and some bacteria, enhanced both the specific growth rate and ALA production. Moreover, when a second glycine addition was made during the culture, the ALA concentration increased by about 1.5 times compared to that obtained with one glycine addition. From these results, it is suggested that the Shemin pathway contributes to ALA production, and that addition of glycine in the heterotrophic culture of c. regularis YA-603 can significantly increase the amount of ALA produced.
机译:以前发现,当进行异养培养时,普通小球藻菌株YA-603表现出较高的生长速率和提高的5-氨基乙酰丙酸(ALA)生产率。尽管通用的四吡咯前体ALA是由藻类和高等植物中的谷氨酸合成的,但在这项研究中,向培养基中添加谷氨酸并没有增强普通梭菌YA-603异养培养中ALA的产生。另一方面,添加甘氨酸是动物细胞和某些细菌中通过Shemin途径进行ALA生物合成的前体,既提高了比生长速度,又提高了ALA的产生。此外,当在培养期间第二次添加甘氨酸时,与一次添加甘氨酸相比,ALA浓度增加了约1.5倍。从这些结果表明,Shemin途径有助于ALA的产生,并且在c的异养培养物中添加甘氨酸。正规棉YA-603可以显着增加ALA的产生量。

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