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园艺学报 ›› 2001, Vol. 28 ›› Issue (2): 107-111.

• 研究论文 • 上一篇    下一篇

果胶酶和纤维素酶在桃果实成熟和絮败中的作用

茅林春1;张上隆2   

  1. (1 浙江大学食品与营养系, 杭州310029 ; 2 浙江大学园艺系, 杭州310029)
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2001-04-25 发布日期:2001-04-25

Role of Pectolytic Enzymes and Cellulase during Ripening and WoollyBreakdown in Peaches

Mao Linchun1 and Zhang Shanglong2   

  1. (1 Department of Food and Nutrition , Zhejiang University , Hangzhou 310029; 2 Department of Horticulture , Zhejiang University , Hangzhou 310029)
  • Received:1900-01-01 Revised:1900-01-01 Online:2001-04-25 Published:2001-04-25

摘要: 测定了果胶酶和纤维素酶在桃果实软化和絮败过程中的活性, 分析了贮前加温和中途加温的酶学效应。果实软化的启动似乎与PE、PG和纤维素酶活性的上升有关。endo-PG和纤维素酶活性与果实絮败程度之间呈显著负相关(r = - 0. 9408 , r = - 0. 9234) 。低温胁迫引起桃果实冷害絮败的本质是细胞壁果胶质的降解过程受阻。果胶质降解过程除了受到果胶酶的直接控制之外, 还受到纤维素酶的重要影响。中途加温或贮前加温减轻冷害的原因在于避免了低温胁迫对endo2PG和纤维素酶造成不可逆的伤害, 从而保证了果胶质降解过程的正常进行。

关键词: 桃, 贮藏, 成熟, 絮败, 果胶酶, 纤维素酶

Abstract: Activities of pectolytic enzymes and cellulase in peaches 〔Prunus persica (L. )
Batsch cv. Baifeng〕were determined during softening and development of woolly breakdown. Enzy-matic response to pre-warming and intermittent warming was also analyzed. Start of fruit softening seemed to be connected with the activity increase in PE , PGand cellulase. However , the level of PE
and PG activities was not significantly related with the fruit firmness. Both endo2PGand cellulase activities were significantly negative correlated with the degree of woolly breakdown ( r = - 0. 9408 , r =- 0. 9234) . The essential aspect of chilling injury known as woolly breakdown induced by low temperature stress was the abnormal degradation of cell wall pectin , which was not only controlled directly by pectolytic enzymes but also influenced largely by cellulase. Alleviating chilling injury with the treatment of pre-warming or intermittent warming was responsible for the prevention from irreversible
damage to endo-PGand cellulase from low temperature stress and thus guaranteeing the normal process of pectin degradation.

Key words: Peach 〔Prunus persica (L. ) Batsch〕, Woolly breakdown, Polygalacturonase, Pectinesterase, Cellulase

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