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Comparison of the morphogenesis of three genotypes of pea (Pisum sativum) grown in pure stands and wheat-based intercrops

机译:纯林和小麦间作中豌豆(Pisum sativum)三种基因型的形态发生比较

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摘要

Cereal–legume intercrops represent a promising way of combining high productivity and agriculture sustainability. The benefits of cereal–legume mixtures are highly affected by species morphology and functioning, which determine the balance between competition and complementarity for resource acquisition. Studying species morphogenesis, which controls plant architecture, is therefore of major interest. The morphogenesis of cultivated species has been mainly described in mono-specific growing conditions, although morphogenetic plasticity can occur in multi-specific stands. The aim of the present study was therefore to characterize the variability of the morphogenesis of pea plants grown either in pure stands or mixed with wheat. This was achieved through a field experiment that included three pea cultivars with contrasting earliness (hr and HR type) and branching patterns. Results show that most of the assessed parameters of pea morphogenesis (phenology, branching, final number of vegetative organs and their kinetics of appearance) were mainly dependent on the considered genotype, which highlights the importance of the choice of cultivars in intercropping systems. There was however a low variability of pea morphogenesis between sole and mixed stands except for plant height and branching of the long-cycle cultivar. The information provided in the present study at stand and plant scale can be used to build up structural–functional models. These models can contribute to improving the understanding of the functioning of cereal–legume intercrops and also to the definition of plant ideotypes adapted to the growth in intercrops.
机译:谷物-豆类间作代表了将高生产率与农业可持续性相结合的有前途的方式。谷物-豆类混合物的益处在很大程度上受到物种形态和功能的影响,而物种形态和功能决定了资源获取的竞争性和互补性之间的平衡。因此,研究控制植物结构的物种形态发生非常重要。尽管在多特异性林分中可能发生形态发生可塑性,但主要在单特异性生长条件下描述了栽培物种的形态发生。因此,本研究的目的是表征纯种或与小麦混合种植的豌豆植物形态发生的变异性。这是通过田间试验实现的,该试验包括三个豌豆品种,其早熟(hr和HR类型)和分支模式形成鲜明对比。结果表明,豌豆形态发生的大多数评估参数(物候,分支,营养器官的最终数量及其外观动力学)主要取决于所考虑的基因型,这突出说明了在间作系统中选择品种的重要性。然而,除了植株高度和长周期品种的分枝以外,单一和混合林之间豌豆形态发生的变异性很低。本研究在林分和植物规模上提供的信息可用于建立结构功能模型。这些模型可以有助于增进对谷物-豆类间作功能的理解,也有助于定义适合间作生长的植物表型。

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