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启动子和核糖体结合位点组合对过表达钠依赖性碳酸氢盐转运蛋白(SbtA)的集胞藻PCC 7002细胞生长和糖原生产力的影响。

The Effect of Promoter and RBS Combination on the Growth and Glycogen Productivity of Sodium-Dependent Bicarbonate Transporter (SbtA) Overexpressing sp. PCC 7002 Cells.

作者信息

Gupta Jai Kumar, Srivastava Shireesh

机构信息

Systems Biology for Biofuels Group, International Centre for Genetic Engineering and Biotechnology (ICGEB), New Delhi, India.

Department of Biotechnology-International Centre for Genetic Engineering and Biotechnology (DBT-ICGEB), Centre for Advanced Bioenergy Research, New Delhi, India.

出版信息

Front Microbiol. 2021 Apr 13;12:607411. doi: 10.3389/fmicb.2021.607411. eCollection 2021.

Abstract

Sodium dependent bicarbonate transporter, SbtA is a high-affinity, inducible bicarbonate transporter in cyanobacterial cells. Our previous work has shown that overexpression of this transporter can significantly increase growth and glycogen accumulation in sp. PCC 7002 cells. In this work, we have tested the effect of two different RBS sequences (RBS1: GGAGGA and RBS2: AGGAGA) and three different promoters (P, P , and P ) on the growth and glycogen production in SbtA-overexpressing sp. PCC 7002 cells. Our results show that P or P were more effective than P in increasing the growth and glycogen content. The choice of RBS sequence had relatively minor effect, though RBS2 was more effective than RBS1. The transformant E, with P and RBS2, showed the highest growth. The biomass after 5 days of growth on air or 1% CO was increased by about 90% in the strain E compared to PCC 7002 cells. All transformants overexpressing SbtA had higher glycogen content. However, growing the cells with bubbling of 1% CO did not increase cellular glycogen content any further. The strain E had about 80% higher glycogen content compared to WT PCC 7002 cells. Therefore, the glycogen productivity of the strain E grown with air-bubbling was about 2.5-fold that of the WT PCC 7002 cells grown similarly. Additionally, some of the transformants had higher chlorophyll content while all the transformants had higher carotenoid content compared to the PCC 7002 cells, suggesting interaction between carbon transport and pigment levels. Thus, this work shows that the choice of photosynthetic promoters and RBSs sequences can impact growth and glycogen accumulation in SbtA-overexpressing cells.

摘要

钠依赖性碳酸氢盐转运蛋白SbtA是蓝藻细胞中的一种高亲和力、可诱导的碳酸氢盐转运蛋白。我们之前的研究表明,该转运蛋白的过表达可显著提高聚球藻属PCC 7002细胞的生长和糖原积累。在这项研究中,我们测试了两种不同的核糖体结合位点序列(RBS1:GGAGGA和RBS2:AGGAGA)以及三种不同的启动子(P1、P2和P3)对过表达SbtA的聚球藻属PCC 7002细胞生长和糖原产生的影响。我们的结果表明,P1或P2在促进生长和增加糖原含量方面比P3更有效。核糖体结合位点序列的选择影响相对较小,不过RBS2比RBS1更有效。带有P2和RBS2的转化体E生长最快。与PCC 7002细胞相比,菌株E在空气或1% CO₂条件下生长5天后的生物量增加了约90%。所有过表达SbtA的转化体都有更高的糖原含量。然而,用1% CO₂鼓泡培养细胞并没有进一步增加细胞糖原含量。与野生型PCC 7002细胞相比,菌株E的糖原含量高出约80%。因此,鼓泡通气培养的菌株E的糖原生产率约为同样培养条件下野生型PCC 7002细胞的2.5倍。此外,与PCC 7002细胞相比,一些转化体的叶绿素含量更高,而所有转化体的类胡萝卜素含量都更高,这表明碳转运与色素水平之间存在相互作用。因此,这项研究表明,光合启动子和核糖体结合位点序列的选择会影响过表达SbtA细胞的生长和糖原积累。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/899e/8076525/82972e94f170/fmicb-12-607411-g001.jpg

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