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不同成熟度杨梅果实采后呼吸速率、乙烯释放速率和品质的变化
引用本文:张望舒,郑金土,汪国云,何桂娥,孙崇德,许文平,杨绍兰,蔡冲,李鲜,陈昆松.不同成熟度杨梅果实采后呼吸速率、乙烯释放速率和品质的变化[J].植物生理与分子生物学学报,2005,31(4):417-424.
作者姓名:张望舒  郑金土  汪国云  何桂娥  孙崇德  许文平  杨绍兰  蔡冲  李鲜  陈昆松
作者单位:1. 浙江大学果实分子生理与生物技术实验室,农业部园艺植物生长发育与生物技术重点开放实验室,杭州,310029
2. 宁波市林业局,浙江宁波,315000
3. 余姚市农林局,浙江,余姚,315400
4. 台州市农业局,浙江,台州,31800
基金项目:国家重点基础研究发展计划(973计划),国家自然科学基金,浙江省宁波市;台州市科技合作计划
摘    要:以3个品种杨梅果实为材料,将采后果实分为未成熟(immature)、成熟(mature)和完熟(ripe)3种不同成熟度,在20℃下48 h贮藏过程中,每隔3 h检测一次呼吸速率和乙烯释放速率,并分析成熟过程相关的品质变化.结果表明,未成熟和成熟果实的呼吸速率和乙烯合成变化呈现典型的跃变型果实特征,而在完熟果实中检测不到呼吸和乙烯跃变过程.未成熟和成熟杨梅果实中PAL活性趋于提高,而完熟果实的呈下降变化,这一结果与矢车菊-3-葡萄糖苷(Cy-3-Glu)含量变化相吻合;CIRG值与杨梅果实Cv-3-Glu含量呈极显著正相关(r=0.96**).结果显示杨梅果实属于跃变型果实.

关 键 词:杨梅果实  呼吸速率  乙烯释放速率  品质
收稿时间:2005-01-12
修稿时间:2005年1月12日

Changes in Respiratory Rate, Ethylene Production Rate and Quality of Postharvest Chinese Bayberry Fruits with Different Maturities
ZHANG Wang-Shu,ZHENG Jin-tu,WANG Guo-yun,HE Gui-E,SUN Chong-De,XU Wen-ping,YANG Shao-lan,CAI Chong,LI Xian,CHEN Kun-song.Changes in Respiratory Rate, Ethylene Production Rate and Quality of Postharvest Chinese Bayberry Fruits with Different Maturities[J].Journal Of Plant Physiology and Molecular Biology,2005,31(4):417-424.
Authors:ZHANG Wang-Shu  ZHENG Jin-tu  WANG Guo-yun  HE Gui-E  SUN Chong-De  XU Wen-ping  YANG Shao-lan  CAI Chong  LI Xian  CHEN Kun-song
Institution:The State Agriculture Ministry Laboratory of Horticultural Plant Growth, Development and Biotechnology, Laboratory of Fruit Molecular Physiology and Biotechnology, Zhejiang University, Hangzhou 310029, China.
Abstract:Harvested fruits of three Chinese bayberry (Myrica rubra Sieb. & Zucc.) varieties, i.e. "Biqi", "Dongkui" and "Zaodamei" which were divided into three maturities (designated as "Immature", "Mature" and "Ripe") according to fruit colour, were investigated for the changes in climacteric pattern and quality at 20 degrees C. Respiration rate and ethylene production rate were underwent 3 h during 48 h storage. Our result showed that both Immature and Mature fruits underwent rises in respiration and ethylene production rate of a climacteric rise, but no such peak was observed in Ripe fruit (Fig.1 and 2). Total soluble solids (TSS) contents increased with maturity and decreased over the 48 h at 20 degrees C (Fig.3); titratable acidity (TA) decreased with the maturity and throughout 48 h storage period (Fig.4). In "Biqi" Chinese bayberry fruit, PAL activities increased in Immature and Mature fruit, but, it decreased in Ripe fruit during the storage period; the change in Cy-3-Glu with fruit ripening was consistent with PAL activities (Table 1); there was significant positive correlation between CIRG (Color Index for Red Grape) values and Cy-3-Glu content (r=0.96**). This study provides important information on the postharvest behaviour of Chinese bayberry fruit, and our result shows that it is climacteric fruit.
Keywords:Chinese bayberry fruit  respiration rate  ethylene production rate  quality
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