Page 135 - 《广西植物》2020年第6期
P. 135

6 期                        陈星星等: 茶树 CsPLK 基因的鉴定与表达分析                                       8 8 1

      161(9):1053-1060.                                 [J]. J Tea Sciꎬ 30(4):269-272. [钮甜甜ꎬ 张剑韵ꎬ 黄龙
   JULLIARD JHꎬ DOUCE Rꎬ 1991. Biosynthesis of the thiazole  全ꎬ 2010. 茶树鲜叶中维生素 B6 代谢酶 PLK 的活性分析
      moiety of thiamin (vitamin B1) in higher plant chloroplasts  [J]. 茶叶科学ꎬ 30(4):269-272.]
      [J]. Proc Int Acad Sciꎬ 88(6):2042-2045.       SCHOLZ Gꎬ KWOK Fꎬ 1989. Brain pyridoxal kinase: Pho ̄
   KIM MIꎬ HONG Mꎬ 2016. Crystal structure and catalytic  toaffinity labeling of the substrate ̄binding site [J]. J Biol
      mechanism of pyridoxal kinase from Pseudomonas aeruginosa  Chemꎬ 264(8):4318-4321.
      [J]. Biochem Bioph Res Commꎬ 478(1):300-306.   SCHULMAN MPꎬ RICHERT DAꎬ 1957. Heme synthesis in vi ̄
   LIN ZHꎬ ZHONG QSꎬ SHANG RYꎬ et al.ꎬ 2016. Expression  tamin B6 and pantothenic acid deficiencies [ J]. J Biol
      analysis of cold resistance genes CsCBF1 and CsICE1 in tea  Chemꎬ 226(1):181-189.
      plants at low temperature [J]. J Nucl Agric Sciꎬ 30(9):  SHI Hꎬ ZHU JKꎬ 2002. SOS4ꎬ a pyridoxal kinase geneꎬ is re ̄
      1693-1698. [林郑和ꎬ 钟秋生ꎬ 单睿阳ꎬ 等ꎬ 2016. 茶树抗           quired for root hair development in Arabidopsis [J]. Plant
      寒基因 CsCBF1 与 CsICE1 低温下的表达分析 [J]. 核农              Physiolꎬ 129(2):585-593.
      学报ꎬ 30(9):1693-1698.]                          SMOLIN LAꎬ BENEVENGA NJꎬ 1982. Accumulation of
   LIU SCꎬ 2015. Physiological and molecular mechanisms of re ̄  homocyst(e)ine in vitamin B6 deficiency: A model for the
      sponse to drought stress and rehydration of tea plants  study of cystathionine beta ̄synthase deficiency [J]. J Nutrꎬ
      [ D ].  Beijing:  Chinese  Academy  of  Agricultural  112(7):1264-1272.
      Science. [刘声传ꎬ 2015. 茶树对干旱胁迫和复水响应的             TANAKA Tꎬ TATENO Yꎬ GOJOBORI Tꎬ et al.ꎬ 2005.
      生理、分子机理 [D]. 北京:中国农业科学院.]                         Evolution of vitamin B6 ( pyridoxine) metabolism by gain
   LUM HKꎬ KWOK Fꎬ LO SCꎬ et al.ꎬ 2002. Cloning and charac ̄  and loss of genes [J]. Mol Biol Evolꎬ 22(2):243-250.
      terization of Arabidopsis thaliana pyridoxal kinase [ J ].  WANG HBꎬ LIU DCꎬ LIU CGꎬ et al.ꎬ 2004. The pyridoxal ki ̄
      Plantꎬ 215: 870-879.                              nase gene TaPdxK from wheat complements vitamin B6 syn ̄
   MARAS Bꎬ VALIANTE Sꎬ ORRU Sꎬ et al.ꎬ 1999. Structure of  thesis ̄defective Escherichia coli [ J ]. J Plant Physiolꎬ
      pyridoxal kinase from sheep brain and role of the  (161): 1053-1060.
      tryptophanyl residues [ J ]. J Protein Chemꎬ 18 ( 3 ):  YU Sꎬ LUO Lꎬ 2010. Expression analysis of a novel pyridoxal
      259-268.                                          kinase messenger RNA splice variantꎬ PKLꎬ in oil rape suf ̄
   NEARY JTꎬ DIVEN WFꎬ 1970. Purificationꎬ propertiesꎬ and a  fering abiotic stress and phytohormones [J]. Acta Biochim
      possible mechanism for pyridoxal kinase from bovine brain  Et Biophys Sinꎬ 40(12):1005-1014.
      [J]. J Biol Chemꎬ 245(21):5585-5593.
   NIU TTꎬ ZHANG JYꎬ HUANG LQꎬ et al.ꎬ 2010. Activity anal ̄                        (责任编辑  何永艳)
      ysis of vitamin B6 metabolic enzyme PLK in fresh tea leaves
   130   131   132   133   134   135   136   137   138   139   140