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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Determination of optimal harvest boundaries for 'Ambrosia' apple fruit using a delta-absorbance meter
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Determination of optimal harvest boundaries for 'Ambrosia' apple fruit using a delta-absorbance meter

机译:使用增量吸收计确定'Ambrosia'苹果果实的最佳收获界限

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In this study, a new chlorophyll measurement tool, the delta absorbance (DA) meter, was used to develop an optimal harvest maturity model for 'Ambrosia' apple (Malus x domestica Borkh.) fruit. Fruit from four commercial orchards in the Annapolis Valley, Nova Scotia, Canada, were sampled (25 fruit from three or four trees per location) over nine consecutive weekly harvests during the 2011 and 2012 growing seasons, and 8 weeks in the 2013 season. At each harvest, five fruit from each orchard site had their index of absorbance difference (IAD) values, firmness, mass, titratable acidity (TA), soluble solids content (SSC), red skin colouration and internal core ethylene concentrations measured. Following approx. 3 months of storage at 3.5 degrees C, 20 fruit from each site were removed and assessed for the incidence of disorders such as senescent breakdown, cortical browning and coreflush. Chlorophyll concentrations in the epidermis were strongly and positively related to IAD values in the same tissue (P = 0.001), confirming the assumption that chlorophyll was the basis for the DA meter IAD signal. In addition, IAD values declined significantly during fruit maturity and were negatively related to harvest week (P = 0.001). The optimum harvest period was identified by aligning all 'at harvest' IAD values, fruit quality measurements, and ` post-storage' disorder data with the corresponding harvest week. IAD values associated with harvests having the highest commercial fruit quality then delineated the optimal harvest boundaries. The upper boundary IAD value of 0.47 was defined as 'when to begin harvest', while the lower boundary IAD value of 0.28 was considered to be 'when to end harvest' for long-term storage. The use of a DA meter and its IAD value to define the optimal harvest boundaries may be applicable to all commercial apple cultivars, but should be developed for each cultivar and growing region.
机译:在这项研究中,使用了一种新的叶绿素测量工具,即德尔塔吸光度(DA)计来开发“苹果”(Ambrosia)苹果(Malus x domestica Borkh。)水果的最佳收获成熟度模型。在2011年和2012年生长季节连续九周每周收获,2013年季节连续8周,对加拿大新斯科舍省安纳波利斯谷地四个商业果园的水果进行了采样(每个地点三棵或四棵树有25种水果)。在每次收获时,每个果园地点的五个水果的吸光度差值(IAD)值,硬度,质量,可滴定酸度(TA),可溶性固形物含量(SSC),红色皮肤色素和内部核心乙烯浓度均被测量。以下约。在3.5摄氏度下保存3个月,从每个位置取出20个水果,并评估其衰老,皮层褐变和岩心潮等疾病的发生率。表皮中的叶绿素浓度与同一组织中的IAD值密切相关(P = 0.001),证实了叶绿素是DA米IAD信号的基础的假设。此外,IAD值在果实成熟期间显着下降,并且与收获周负相关(P = 0.001)。通过将所有“收获时” IAD值,水果质量测量值和“储藏后”病症数据与相应的收获周进行比对,确定最佳收获期。然后,与具有最高商业水果品质的收获相关的IAD值确定了最佳收获界限。将IAD的上限0.47定义为“何时开始收获”,而将IAD的下限0.28定义为“何时结束收获”以进行长期存储。使用DA计及其IAD值来定义最佳收获界限可能适用于所有商业苹果品种,但应针对每个品种和生长区域进行开发。

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