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Effect of the expression and knockdown of citrate synthase gene on carbon flux during triacylglycerol biosynthesis by green algae Chlamydomonas reinhardtii

机译:绿藻衣藻衣藻生物合成三酰基甘油过程中柠檬酸合酶基因的表达和敲除对碳通量的影响

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The regulation of lipid biosynthesis is essential in photosynthetic eukaryotic cells. This regulation occurs during the direct synthesis of fatty acids and triacylglycerols (TAGs), as well as during other controlling processes in the main carbon metabolic pathway. In this study, the mRNA levels of Chlamydomonas citrate synthase (CrCIS) were found to decrease under nitrogen-limited conditions, which suggests suppressed gene expression. Gene silencing by RNA interference (RNAi) was conducted to determine whether CrCIS suppression affected the carbon flux in TAG biosynthesis. Results showed that the TAG level increased by 169.5%, whereas the CrCIS activities in the corresponding transgenic algae decreased by 16.7% to 37.7%. Moreover, the decrease in CrCIS expression led to the increased expression of TAG biosynthesis-related genes, such as acyl-CoA:diacylglycerol acyltransferase and phosphatidate phosphatase. Conversely, overexpression of CrCIS gene decreased the TAG level by 45% but increased CrCIS activity by 209% to 266% in transgenic algae. The regulation of CrCIS gene can indirectly control the lipid content of algal cells. Our findings propose that increasing oil by suppressing CrCIS expression in microalgae is feasible.
机译:脂质生物合成的调节在光合作用的真核细胞中至关重要。这种调节发生在脂肪酸和三酰基甘油(TAG)的直接合成过程中,以及在主要碳代谢途径中的其他控制过程中。在这项研究中,发现在氮有限的条件下,衣藻柠檬酸合酶(CrCIS)的mRNA水平降低,这表明基因表达受到抑制。通过RNA干扰(RNAi)进行基因沉默,以确定CrCIS抑制是否影响TAG生物合成中的碳通量。结果表明,TAG水平提高了169.5%,而相应的转基因藻中的CrCIS活性下降了16.7%,降至37.7%。此外,CrCIS表达的降低导致TAG生物合成相关基因(如酰基辅酶A:二酰基甘油酰基转移酶和磷脂酸磷酸酶)的表达增加。相反,在转基因藻中,CrCIS基因的过表达将TAG水平降低了45%,但将CrCIS活性提高了209%至266%。 CrCIS基因的调控可以间接控制藻类细胞的脂质含量。我们的研究结果表明,通过抑制微藻类中CrCIS的表达来增加油脂含量是可行的。

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