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Morphology and response of roots of pasture species to phosphorus and nitrogen nutrition.

机译:牧草种类根系的形态和对磷和氮营养的响应。

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摘要

The root morphology of ten temperate pasture species (four annual grasses, four perennial grasses and two annual dicots) was compared and their responses to P and N deficiency were characterised. Root morphologies differed markedly; some species had relatively fine and extensive root systems (Vulpia spp., Holcus lanatus L. and Lolium rigidum Gaudin), whilst others had relatively thick and small root systems (Trifolium subterraneum L. and Phalaris aquatica L.). Most species increased the proportion of dry matter allocated to the root system at low P and N, compared with that at optimal nutrient supply. Most species also decreased root diameter and increased specific root length in response to P deficiency. Only some of the species responded to N deficiency in this way. Root morphology was important for the acquisition of P, a nutrient for which supply to the plant depends on root exploration of soil and on diffusion to the root surface. Species with fine, extensive root systems had low external P requirements for maximum growth and those with thick, small root systems generally had high external P requirements. These intrinsic root characteristics were more important determinants of P requirement than changes in root morphology in response to P deficiency. Species with different N requirements could not be distinguished clearly by their root morphological attributes or their response to N deficiency, presumably because mass flow is relatively more important for N supply to roots in soil..
机译:比较了十个温带草种(四个一年生草,四个多年生草和两个一年生双子叶植物)的根系形态,并表征了它们对磷和氮缺乏的响应。根的形态差异显着。一些物种的根系相对较细和广泛(Vulpia spp。,Holcus lanatus L.和黑麦草刚性高迪),而另一些物种则具有较粗和小的根系(Trifolium subterraneum L.和Phalaris aquatica L.)。与最佳养分供应相比,低磷和低氮条件下,大多数物种增加了分配给根系的干物质的比例。大多数物种还响应磷缺乏而降低了根径,增加了比根长。只有一些物种以这种方式对氮缺乏做出反应。根系形态对于磷的获取很重要,磷是一种营养素,植物对磷的供应取决于土壤对根的探索以及对根表面的扩散。具有良好,广泛的根系的物种对外部磷的需求较低,以实现最大的生长;而具有较粗,较小的根系的物种通常具有较高的外部磷的需求。这些内在的根系特征是磷需求量的重要决定因素,而不是根系对磷缺乏的响应而改变根系形态。氮需求不同的物种无法通过根的形态特征或对氮缺乏的反应来区分,这大概是因为质量流量对于土壤中根的氮供应相对而言更为重要。

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