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The differentially-expressed proteome in Zn/Cd hyperaccumulator Arabis paniculata Franch. in response to Zn and Cd
Authors:Zeng Xiao-Wen  Qiu Rong-Liang  Ying Rong-Rong  Tang Ye-Tao  Tang Lu  Fang Xiao-Hang
Affiliation:a School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou, Guangdong Province 510275, PR China
b Guangdong Provincial Key Lab of Environmental Pollution Control and Remediation Technology, Guangzhou, Guangdong Province 510275, PR China
c School of Public Health, Sun Yat-sen University, Guangzhou, Guangdong Province 510008, PR China
d South China Institute of Environmental Science, Guangzhou, Guangdong Province 510655, PR China
Abstract:The Zn/Cd hyperaccumulator Arabis paniculata is able to tolerate high level of Zn and Cd. To clarify the molecular basis of Zn and Cd tolerance, proteomic approaches were applied to identify proteins involved in Zn and Cd stress response in A. paniculata. Plants were exposed to both low and high Zn or Cd levels for 10 d. Proteins of leaves in each treatment were separated by 2-DE (two-dimensional electrophoresis). Nineteen differentially-expressed proteins upon Zn treatments and 18 proteins upon Cd treatments were observed. Seventeen out of 19 of Zn-responsive proteins and 16 out of 18 of Cd-responsive proteins were identified using MALDI-TOF/TOF-MS (matrix-assisted laser desorption/ionization time of flight mass spectrometry). The most of identified proteins were known to function in energy metabolism, xenobiotic/antioxidant defense, cellular metabolism, protein metabolism, suggesting the responses of A. paniculata to Zn and Cd share similar pathway to certain extend. However, the different metal defense was also revealed between Zn and Cd treatment in A. paniculata. These results indicated that A. paniculata against to Zn stress mainly by enhancement of energy metabolism including auxin biosynthesis and protein metabolism to maintain plant growth and correct misfolded proteins. In the case of Cd, plants adopted antioxidative/xenobiotic defense and cellular metabolism to keep cellular redox homeostasis and metal-transportation under Cd stress.
Keywords:Zn/Cd   Hyperaccumulator   Proteome   Arabis paniculata Franch
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