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首页> 外文期刊>European food research and technology =: Zeitschrift fur Lebensmittel-Untersuchung und -Forschung. A >The effect of Ca2+ and cellular structure on apple firmness and acoustic emission.
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The effect of Ca2+ and cellular structure on apple firmness and acoustic emission.

机译:Ca 2 + 和细胞结构对苹果硬度和声发射的影响。

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摘要

This study presents the influence of calcium lactate treatment (0-6 %) and cellular composition on two mechanical attributes: firmness and total acoustic emission (AE) events registered in the puncture test of apple tissue. The experiment was performed on five apple cultivars stored for nine months in a normal or controlled atmosphere. The microstructure was characterized quantitatively on control samples by confocal scanning laser microscope followed by image analysis. The mean area and perimeter of detected objects, which were either cells or spaces, and estimated cell wall fraction were used for the characterization of the tissue microstructure. Treatment with increased Ca2+ concentration caused a significant increase in firmness and total AE events. The increase was more pronounced in the case of total AE events which better reflected an increase in brittleness of apple tissue than firmness parameter. The effect was particularly positive in the case of very soft apples (stored in a normal atmosphere) due to greater extent of de-esterification of homogalacturonan. Analysis of the results, together with a review of the literature, suggests that calcium importantly changes the cracking mode of tissue, from intercellular debonding to cell wall rupturing. Firmness and the total AE events significantly relate negatively to the object's size and positively to estimated cell wall fraction. A rough accordance of the number of split cells open across cell walls by puncture probe and the total AE events registered in the test, which was saturated in high Ca2+ concentrations, was noticed
机译:这项研究提出了乳酸钙处理(0-6%)和细胞组成对两个机械属性的影响:苹果组织穿刺试验中记录的硬度和总声发射(AE)事件。该实验是在正常或可控的气氛下,对五个存储了9个月的苹果品种进行的。通过共聚焦扫描激光显微镜,然后进行图像分析,对对照样品的微观结构进行了定量表征。被检测物体(细胞或空间)的平均面积和周长以及估计的细胞壁分数用于组织微结构的表征。 Ca 2 + 浓度升高的处理引起硬度和总AE事件的显着增加。在总AE事件的情况下,增加更为明显,这比硬度参数更好地反映了苹果组织的脆性增加。由于同型半乳糖醛酸的去酯化程度较高,因此在非常柔软的苹果(储存在正常大气中)的情况下,效果尤其明显。对结果的分析以及对文献的评论表明,钙重要地改变了组织的破裂模式,从细胞间脱键到细胞壁破裂。硬度和总的AE事件与物体的大小负相关,与估计的细胞壁分数正相关。注意到通过穿刺探针可以粗略地观察到穿过细胞壁的分裂细胞的数目,并且在测试中记录的总AE事件已在高Ca 2 + 浓度下饱和

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