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首页> 外文期刊>European Journal of Agronomy >California processing tomatoes: morphological, physiological and phenological traits associated with crop improvement during the last 80 years.
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California processing tomatoes: morphological, physiological and phenological traits associated with crop improvement during the last 80 years.

机译:加利福尼亚加工西红柿:过去80年与作物改良相关的形态,生理和物候特性。

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摘要

Breeding has greatly increased yields of many crops, but the contributions of particular morphological, phenological and physiological traits to these higher yields are rarely well understood. In the past 50 years, California processing tomato yields per hectare have more than doubled. This study evaluated a group of important processing tomato cultivars released over the past 80 years in California. The objective was to assess how a suite of traits might be associated with genetic improvement for yield gains. A wide array of morphological, physiological and phenological traits and relevant environmental variables was evaluated in the field for a discrete set of eight cultivars originating from a common ancestor. Multivariate statistics were used to analyze the set of 95 variables to understand how cultivars became adapted to a more mechanized agronomic management while also producing higher yields. No single trait seems to have driven yield increases. Instead, distinct assemblies of traits characterize the processing tomato cultivars in different eras. For instance, certain phenological traits (early flowering and concentrated fruit set) were associated with a set of morphological traits (smaller canopies and low vegetative biomass), along with gains in physiological traits (biomass N concentration and photosynthetic rates) in modern varieties. These results provide a platform to examine new suites of traits that could be relevant for future breeding and crop improvement.
机译:育种极大地提高了许多农作物的产量,但是很少有人了解特定形态,物候和生理特性对这些较高产量的贡献。在过去的50年中,加利福尼亚州每公顷加工番茄的单产增加了一倍以上。这项研究评估了过去80年来在加利福尼亚发布的一组重要的加工番茄品种。目的是评估一系列性状如何与遗传改良相关联以增加产量。在野外评估了一组来自共同祖先的八个品种的形态,生理和物候特性以及相关的环境变量。多变量统计数据用于分析95个变量的集合,以了解品种如何适应更机械化的农艺管理,同时还能产生更高的产量。似乎没有单一的性状推动产量增加。取而代之的是,不同时期的性状组合表征了正在加工的番茄品种。例如,某些物候性状(早开花期和浓缩果期)与一系列形态性状(较小的冠层和低营养生物量)相关联,同时在现代品种中生理性状(生物量氮浓度和光合速率)也有所提高。这些结果提供了一个平台,用于研究可能与将来的育种和作物改良有关的新特性。

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