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β-amylase in developing apple fruits:activities,amounts and subcellular localization 被引量:4

β-amylase in developing apple fruits: activities, amounts and subcellular localization
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摘要 Starch degradation in cells is closely associated with cereal seed germination, photosynthesis in leaves, carbohydrate storage in tuberous roots, and fleshy fruit development. Based on previously reported in vitro assays, β-amylase is considered one of the key enzymes catalyzing starch breakdown, but up to date its role in starch breakdown in living cells remains unclear because the enzyme was shown often extrachloroplastic in living cells. The present experiment showed that p-amylase activity was progressively increasing concomitantly with decreasing starch concentrations during apple (Malus domestica Borkh cv. Starkrimson) fruit development. The apparent amount of p-amylase assessed by Western blotting also increased during the fruit development, which is consistent with the seasonal changes in the enzyme activity. The subcellu-lar-localization studies via immunogold electron-microscopy technique showed that β-amylase visualized by gold particles was predominantly located in plastids especially at periphery of starch granules, but the gold particles were scarcely found in other subcellular compartments. These data proved for the first time that the enzyme is compartmented in its functional sites in plant living cells. The predominantly plastid-distributed pattern of β-amylase in cells was shown unchanged throughout the fruit development. The density of gold particles (β-amylase) in plastids was increasing during the fruit development, which is consistent with the results of Western blotting. So it is considered that β-amylase is involved in starch hydrolysis in plastids of the fruit cells. Starch degradation in cells is closely associated with cereal seed germination, photosynthesis in leaves, carbohydrate storage in tuberous roots, and fleshy fruit development. Based on previously reported in vitro assays, β-amylase is considered one of the key enzymes catalyzing starch breakdown, but up to date its role in starch breakdown in living cells remains unclear because the enzyme was shown often extrachloroplastic in living cells. The present experiment showed that β-amylase activity was progressively increasing concomitantly with decreasing starch concentrations during apple (Malus domestica Borkh cv. Starkrimson) fruit development. The apparent amount of β-amylase assessed by Western blotting also increased during the fruit development, which is consistent with the seasonal changes in the enzyme activity. The subcellular-localization studies via immunogold electron-microscopy technique showed that β-amylase visualized by gold particles was predominantly located in plastids especially at periphery of starch granules, but the gold particles were scarcely found in other subcellular compartments. These data proved for the first time that the enzyme is compartmented in its functional sites in plant living cells. The predominantly plastid-distributed pattern of β-amylase in cells was shown unchanged throughout the fruit development. The density of gold particles (β-amylase) in plastids was increasing during the fruit development, which is consistent with the results of Western blotting. So it is considered that β-amylase is involved in starch hydrolysis in plastids of the fruit cells.
出处 《Science China(Life Sciences)》 SCIE CAS 2002年第4期429-440,共12页 中国科学(生命科学英文版)
基金 This work was supported by the National Natural Science Foundation of China (Grant Nos. 39730340, 39870487 & 30070532) the National Key Basic Research Program (Grant No. G1999011700).
关键词 β-amylase Western blotting SUBCELLULAR localization APPLE fruit. β-amylase, Western blotting, subcellular localization, apple fruit.
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同被引文献80

  • 1范雪梅,姜东,戴廷波,荆奇,曹卫星.花后干旱和渍水对不同品质类型小麦籽粒品质形成的影响[J].植物生态学报,2004,28(5):680-685. 被引量:43
  • 2应芸书,李里焜,汪德耀.植物叶肉细胞内果糖1.6——二磷酸酶(FDPase)的电镜细胞化学定位法[J].电子显微学报,1989,8(2):31-35. 被引量:2
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