Biotechnology Bulletin ›› 2021, Vol. 37 ›› Issue (10): 1-8.doi: 10.13560/j.cnki.biotech.bull.1985.2021-0072

    Next Articles

Overexpression of Pinus massoniana PmPT3 Gene in Arabidopsis thaliana Increasing Low Phosphorus Tolerance

FANG Dan-dan1(), ZHANG Ting2, WEN Xiao-peng1()   

  1. 1. Key Laboratory of Mountain Plant Resources Protection and Germplasm Innovation,Ministry of Education,Institute of Agricultural Bioengineering,College of Life Science,Guizhou University,Guiyang 550025
    2. Institute of Biological and Environmental Engineering,Guiyang University,Guizhou Key Laboratory of Rare Animals and Economic Insects in Mountainous Areas,Guiyang 550005
  • Received:2021-01-18 Online:2021-10-26 Published:2021-11-12
  • Contact: WEN Xiao-peng E-mail:1787825136@qq.com;xpwensc@hotmail.com

Abstract:

The aim of this study is to explore the effect of PmPT3 gene of Pinus massoniana on phosphorus uptake and utilization in Arabidopsis thaliana under low-phosphorus stress,and to achieve the utilization of excellent genes in trees. The PmPT3 gene overexpression vector pBWA(V)HS-PmPT3 was constructed and transformed into A. thaliana by inflorescence infection method. Four homozygous strains of T3 generation were obtained by screening and detection. The results of phosphorus treatment showed that overexpression of the PmPT3 gene of P. massoniana significantly increased the activities of superoxide dismutase(SOD),peroxidase(POD)and catalase(CAT)in transgenic Arabidopsis,respectively,it was 2.17 times,1.59 times,and 1.81 times of the wild-type plant. It reduced malondialdehyde(MDA)content,47.58% lower than that of wild-type plants. Compared with the wild-type,the total phosphorus content and inorganic phosphorus content of the aerial parts and roots of transgenic Arabidopsis increased by 1.26 times and 1.74 times,as well as 1.38 times and 1.89 times,respectively. Compared with the wild type,the dry weight of the transgenic plant shoots increased by 45.46%,the dry weight of roots by 55.56%,and the total dry weight by 46.15%.Compared with normal phosphorus supply conditions,the expressions of PmPT3 gene in the root and shoot parts of transgenic A. thaliana under low phosphorus stress was significantly up-regulated,and reached a very significant level in the roots. These results indicated that the overexpression of PmPT3 gene from P. massoniana increased the activities of protective enzymes,reduced the production of MDA,and promoted the absorption of phosphorus in Arabidopsis under low phosphorus stress. Therefore,overexpression of the PmPT3 gene improved the ability of Arabidopsis to tolerate low phosphorus stress. This work may provide a reliable scientific basis for the creation of new low phosphorus tolerant germplasm through genetic engineering.

Key words: overexpression, Pinus massoniana, PmPT3 gene, Arabidopsis thaliana, low phosphorus stress