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Wu Xiao-Ping, Sen Lin, Chen Nan, Zhang Xiao, Ma Zhao-Xia, Zhang Qin-Yu. Study on the molecular evolution of the psaA gene from ferns[J]. Plant Science Journal, 2017, 35(2): 177-185. DOI: 10.11913/PSJ.2095-0837.2017.20177
Citation: Wu Xiao-Ping, Sen Lin, Chen Nan, Zhang Xiao, Ma Zhao-Xia, Zhang Qin-Yu. Study on the molecular evolution of the psaA gene from ferns[J]. Plant Science Journal, 2017, 35(2): 177-185. DOI: 10.11913/PSJ.2095-0837.2017.20177

Study on the molecular evolution of the psaA gene from ferns

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This work was supported by grants from the National Natural Science Foundation for Young Scientists of China (31500260), Key Laboratory of the Education Ministry at the Hubei University of Chinese Medicine (5114000914), and Young Talent Project of the Hubei University of Chinese Medicine (2016ZZX015)

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  • Received Date: December 04, 2016
  • Revised Date: January 19, 2017
  • Available Online: October 31, 2022
  • Published Date: April 27, 2017
  • The psaA gene is a fundamental protein-coding gene of photosystem Ⅰ. Using the relaxed molecular clock model, positive selection model, and co-evolutionary analysis, we attempted to unravel its evolutionary pattern. Results indicated that the full-length coding sequences of psaA from fern species could be novel sites for the reconstruction of phylogenetic trees, and could exhibit high posterior probability when combined with the full-length coding sequences of rbcL. The current research also illustrated that the PSAA protein had 29 positively selected amino-acid sites aggregated into 16 co-evolution groups, indicating that ferns had internally modified their photosystem Ⅰ to enhance their ability to adapt to the photosynthetic environment after the rise of angiosperms.
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