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Hierarchical modelling partitions variation in vineyard fruit maturity for optimal sampling

机译:分层建模可划分葡萄园果实成熟度的变化,以实现最佳采样

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摘要

Background and Aims Sampling is problematic in perennial tree and vine crops because organ numbers are vast, budgets are low and maturation of fruit is asynchronous within and between individuals. Typically, the precision and the repeatability of sampling are low and methodologies used in the field vary widely within the industry. We define a combined statistical and cost model for fruit maturity sampling that could be applied widely and would enable precision and cost to be pre-defined.Methods and Results A two-stage statistical model, incorporating a 'cost' element was designed. The model was evaluated using an intensive set of data acquired from Cabernet Sauvignon vines. This was decomposed into between- and within-vine sources of variance for sugar measured as TSS, anthocyanin and phenolic substances.Conclusions Within a management unit, the between-vine variation may equal or exceed the within-vine variation. The two-stage protocol, for unit cost, gave a more precise estimate of TSS than other protocols. On-site costs were the main element in apportioning vines per plot and bunches per vine. The variance for anthocyanin and phenolic substances was greater than that of TSS and thus precision was lower for these at a given sample size.Significance of the Study A simple, two-stage sampling protocol resolves uncertainties inherent in existing protocols. It may be applied widely to grapevine and other tree crops.
机译:背景和目的多年生树木和藤本植物的采样存在问题,因为器官数量巨大,预算低并且水果的成熟在个体内部和个体之间是异步的。通常,采样的精度和可重复性很低,并且该领域中使用的方法在行业内差异很大。我们为水果成熟度采样定义了一个组合的统计和成本模型,该模型可以广泛应用,并且可以预先定义精度和成本。方法和结果设计了一个包含“成本”要素的两阶段统计模型。使用从赤霞珠葡萄藤获得的大量数据评估了该模型。将其分解为糖的葡萄树之间和葡萄树内部变异量,以TSS,花色苷和酚类物质计量。结论在管理单位内,葡萄树之间的变异可能等于或超过葡萄树内部的变异。对于单价而言,两阶段协议比其他协议更精确地估计了TSS。现场成本是分配每块葡萄藤和每棵葡萄串的主要因素。花色苷和酚类物质的方差大于TSS,因此在给定的样本量下,它们的精度较低。研究的意义一个简单的两阶段采样方案可以解决现有方案中固有的不确定性。它可以广泛应用于葡萄树和其他树木。

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