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首页> 外文期刊>Journal of the American Society for Horticultural Science >Time-dependent Changes in the Longitudinal Sugar and Respiratory Profiles of Asparagus Spears During Storage at 0 °C
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Time-dependent Changes in the Longitudinal Sugar and Respiratory Profiles of Asparagus Spears During Storage at 0 °C

机译:0°C储存期间芦笋矛的纵向糖和呼吸谱随时间的变化

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摘要

The rate of respiration and the concentrations of sucrose, glucose, and fructose were measured along the length of intact asparagus (Asparagus officinalis cv. Jersey Giant) spears during storage at 0 °C. Carbon dioxide production by each of five sections along the spear was initially high but underwent a rapid and extensive decline within the first 24 hours after harvest with the rate of decline slowing thereafter. The respiration rate was highest at the tip (Section 1), decreasing as the distance from the tip increased (Sections 2 through 5 with Section 5 being more basal). Initially, the respiration rate of the tip was approximately four times that of the base, but after 23 days at 0 °C, the respiration rate of the tip was only twice that of thebase. Sugar levels were measured in Sections 1 through 4. Sugar levels declined with time, but increased, unlike respiration, with distance from the tip. Sucrose underwent a rapid decline within the first 24 hours of storage in the tip and Sections 3 and 4. Sucrose depletion was most extensive in the tip, reaching more than 95% by Day 23. Glucose underwent the most rapid decline in Section 2. The relatively higher rate of glucose depletion in Section 2, the zone of rapid cell elongation, may have beento support a relatively higher rate of cell wall biosynthesis in this section. For the first day after harvest, sugar depletion far outstripped hexose equivalents respired as C0_2. Afterward, however, the rate of respiration (as hexose equivalents) was similar to the rate of sugar depletion for all sections except the most basipetal, which lost carbohydrate faster than could be accounted for by respired C0_2. The data suggest that hexoses were exported from more basipetal tissues to support the metabolic activity of more acropetal sections.
机译:在0°C下储存期间,沿完整芦笋(Asparagus officinalis cv。Jersey Giant)长矛的长度测量呼吸速率以及蔗糖,葡萄糖和果糖的浓度。沿矛的五个部分中的每个部分最初产生的二氧化碳量很高,但在收获后的最初24小时内迅速而广泛地下降,此后下降速度减慢。尖端的呼吸频率最高(第1部分),随着与尖端的距离增加而降低(第2至5部分,第5部分更基础)。最初,尖端的呼吸速率约为基础呼吸速率的四倍,但在0°C下放置23天后,尖端的呼吸速率仅为基础呼吸速率的两倍。在第1至4节中测量了糖水平。糖水平随时间下降,但与呼吸不同,随着距尖端的距离增加而增加。在尖端以及第3节和第4节中,在储存的最初24小时内,蔗糖经历了快速下降。在尖端中,蔗糖的消耗最为广泛,到第23天,葡萄糖消耗达到了95%以上。在第2节中,葡萄糖经历了最快的下降。在第2节中,较高的葡萄糖消耗率是较高的,这是细胞快速伸长的区域,可能支持了该节中较高的细胞壁生物合成率。收获后的第一天,糖的消耗远远超过了作为C0_2呼吸的己糖当量。但是,此后,呼吸速率(以己糖当量计)与所有切片的糖消耗速率相似,除了最基层外,后者的碳水化合物损失速度快于呼吸道C0_2造成的损失。数据表明,己糖是从更多的基底组织中输出的,以支持更多的肩章部分的代谢活性。

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