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首页> 外文期刊>Journal of plant nutrition and soil science >What root traits determine grass resistance to phosphorus deficiency in production grassland?
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What root traits determine grass resistance to phosphorus deficiency in production grassland?

机译:根特征确定生产草原缺乏磷缺乏的特征?

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摘要

Grasslands are a major form of agricultural land use worldwide. Current and future declines of phosphorus (P) inputs into production grasslands necessitate a shift towards selecting grass species based on high efficiency under suboptimal, rather than optimal P conditions. It is therefore imperative to identify key root traits that determine P acquisition of grasses in soils with a low P status. In a 9-month greenhouse experiment, we grew eight common grass species and cultivars on a soil with a low P status and related root morphological traits to their performance under P-limiting conditions. We applied (P1) or withheld (P0) P fertilization while providing adequate amounts of all other nutrients. Omitting P fertilization greatly reduced yield and nutrient acquisition for the various grass species. Biomass production differed significantly (P 0.1%) among species and P fertilization treatments, varying from 17.1 to 72.1 g pot(-1) in the P0 treatment and from 33.4 to 85.8 g pot(-1) in the P1 treatment. Root traits were species-specific and unresponsive to P fertilization, but overall we observed a trade-off between root biomass and specific root length. Structural equation modeling identified total root length as key factor with respect to resistance to P deficiency, especially when roots explored the subsoil. Optimizing root length and subsoil exploration could be the key to maintaining high productivity of production grasslands with decreasing P availability. This is relevant for both plant breeding programs and for composing seed mixtures.
机译:草原是全球农业用地的主要形式。当前和未来的磷(P)投入到生产草地上的投入需要转向基于次优的高效率的基于高效率的转变,而不是最佳P条件。因此,必须识别键根特征,以确定具有低P状态的土壤中草的P。在9个月的温室实验中,我们在P限制条件下,在P型状态下,在土壤中占八种常见的草地和品种,并在P限制性条件下对其性能进行了相关的根形态特征。我们施用(P1)或拒绝(P0)P施肥,同时提供足量的所有其他营养素。省略P施肥大大降低了各种草种的产量和营养收集。物种和P施肥治疗中的生物质产生显着(P <0.1%),P0处理中的17.1至72.1g罐(-1),P1处理中的33.4至85.8g罐(-1)。根部性状是特异性的,对P施肥无响应,但总体而言,我们观察到根生物质和特定根长之间的权衡。结构方程模型将总根长度鉴定为抗P缺乏抗性的关键因素,尤其是当根探索底土时。优化根长度和底土勘探可能是维持生产草原高生产率的关键,随着P的可用性降低。这与植物育种计划和组成种子混合物相关。

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