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Improved the Activity of Phosphite Dehydrogenase and its Application in Plant Biotechnology

Front Bioeng Biotechnol. 2021-11; 
Tongtong Liu, Lili Yuan, Suren Deng, Xiangxian Zhang, Hongmei Cai, Guangda Ding, Fangsen Xu, Lei Shi, Gaobing Wu, Chuang Wang
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Gene Synthesis … was then transformed into Arabidopsis and rice to evaluate the application potential of PtxD Q encoding gene in plant bioengineering … The codon-optimized gene encoding PtxD was chemically synthesized by GenScript Corporation (Naing, China) and inserted into E. coli pGEX … Get A Quote

摘要

Phosphorus (P) is a nonrenewable resource, which is one of the major challenges for sustainable agriculture. Although phosphite (Phi) can be absorbed by the plant cells through the Pi transporters, it cannot be metabolized by plant and unable to use as P fertilizers for crops. However, transgenic plants that overexpressed phosphite dehydrogenase (PtxD) from bacteria can utilize phosphite as the sole P source. In this study, we aimed to improve the catalytic efficiency of PtxD from sp.4506 (PtxD), by directed evolution. Five mutations were generated by saturation mutagenesis at the 139th site of PtxD and showed higher catalytic efficiency than native PtxD. The PtxD showed the highest catalytic efficiency (5.83... More

关键词

directed evolution, fertilizer, phosphate, phosphite, phosphite dehydrogenase, transgenic