GDP-D-mannose pyrophosphorylase from Pogonatherum paniceum enhances salinity and drought tolerance of transgenic tobacco

Author:

Ai Taobo12,Liao Xuehong1,Li Rui13,Fan Linhong1,Luo Fengxue1,Xu Ying4,Wang Shenghua4

Affiliation:

1. Key Lab of Bio-Resources and Eco-Environment, Ministry of Education, College of Life Science, Sichuan University , Chengdu 610064, China

2. Sichuan Institute for Food and Drug Inspection , Chengdu, Sichuan, China

3. College of Pharmacy and Biological Engineering, Chengdu University , 1 Shiling Street, China

4. Key Lab of Bio-Resources and Eco-Environment, Ministry of Education, College of Life Science, Sichuan University , Chengdu 610064, China , Tel.: +86 28 85417281, Fax: +86-028-85417281

Abstract

Abstract Pogonatherum paniceum is a highly drought- and salt-tolerant plant species that is typically used for ecological restoration and the conservation of soil and water in many countries. Understanding the molecular mechanisms underlying plant abiotic stress responses, especially to salinity and drought stresses, in species such as P. paniceum could be important to broader crop improvement efforts. GDP-D-mannose pyrophosphorylase (GMPase) is the limiting enzyme in the synthesis of L-ascorbic acid (AsA), which plays a crucial role in the detoxification of reactive oxygen species (ROS). We have cloned and characterized the cDNA of the PpGMP gene of P. paniceum encoding a GMPase. The full-length cDNA sequence contains 1411 nucleotides encoding a putative protein with 361 amino acid residues and an approximate molecular mass of 39.68 kDa. The GMPase transcript was up-regulated in P. paniceum plants subjected to salinity and drought stress, respectively. Transgenic tobacco expressing PpGMPase exhibited enhanced salinity and drought resistance, a higher seed germination rate, better growth performance, a higher AsA content, a more stable redox state, higher superoxide dismutase (SOD) activity, and lower levels of malonaldehyde (MDA) and H2O2 under drought and salinity stress. Taken together, expression of PpGMPase in tobacco conferred salinity and drought stress tolerance by increasing the content of AsA, thereby enhancing ROS-detoxifying functions. Thus, PpGMP is a potential candidate gene for crop improvement.

Publisher

Walter de Gruyter GmbH

Subject

General Biochemistry, Genetics and Molecular Biology

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