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作 者:Hao Cheng Jinwen Liu Meiqi Zhou Yuxiang Cheng
机构地区:[1]Key Laboratory of Tree Genetics and Breeding,Northeast Forestry University,Harbin 150040,China [2]Zhejiang Provincial Key Laboratory for Water Environment and Marine Biological Resources Protection,Wenzhou University,Wenzhou 325035,China
出 处:《Forestry Research》2022年第1期132-142,共11页林学研究(英文)
基 金:supported by the Fundamental Research Funds for the Central Universities(2572021DT01);the National Natural Science Foundation of China(31770637);Zhejiang Provincial Natural Science Foundation of China(No.LY20C160010).
摘 要:Glycosylation is a significant post-translational modification of proteins,and some glycoproteins serve as players in plant cell wall synthesis and modification.Wood is a highly developed cell wall organization,and protein glycosylation as a regulatory mechanism may be involved in wood formation.Here,a lectin affinity-based glycoproteome was performed in stem developing xylem of poplar.After enrichment,trypsin digestion,LC-MS/MS analysis and peptide identification,we identified 154 glycoproteins from poplar developing xylem,which were classified into nine functional groups mainly including protein acting on carbohydrates,oxido-reductase,proteases,and protein kinases.Further,N-and/or Oglycosylation sites of the identified proteins were analyzed using bioinformatic tools,and deglycosylation experiments in the selected PtSOD and PtHAD proteins verified the reliability of the identified glycoproteins.Analysis of protein subcellular localization showed that a total of 63%of the identified glycoproteins were extracellular proteins or located in the plasma membrane.Poplar eFP and RT-qPCR data showed that a number of the genes encoding these glycoproteins such as laccase,peroxidase and cysteine protease,have highly preferential expression profiles in the developing xylem.Together with previously published research,most identified glycoproteins could be involved in wood cell wall synthesis and modification in poplar.Thus,our study provides some potential wood formation-related glycoproteins to be determined during tree stem development.
关 键 词:synthesis verified TRANSLATIONAL
分 类 号:S792[农业科学—林木遗传育种]
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