首页> 外文期刊>Trees. Structure and Function >Plant morphology and root hydraulics are altered by nutrient deficiency in Pistacia lentiscus (L.).
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Plant morphology and root hydraulics are altered by nutrient deficiency in Pistacia lentiscus (L.).

机译:黄连木(L.)的营养缺乏会改变植物的形态和根系水力。

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摘要

The plants in arid and semiarid areas are often limited by water and nutrients. Morpho-functional adjustments to improve nutrient capture may have important implications on plant water balance, and on plant capacity to withstand drought. Several studies have shown that N and P deficiencies may decrease plant hydraulic conductance. Surprisingly, studies on the implications of nutrient limitations on water use in xerophytes are scarce. We have evaluated the effects of strong reductions in nitrogen and phosphorus availability on morphological traits and hydraulic conductance in seedlings of a common Mediterranean shrub, Pistacia lentiscus L. Nitrogen deficiency resulted in a decrease in aboveground biomass accumulation, but it did not affect belowground biomass accumulation or root morphology. Phosphorus-deficient plants showed a decrease in leaf area, but no changes in aboveground biomass. Root length, root surface area, and specific root length were higher in phosphorus-deficient plants than in control plants. Nitrogen and phosphorus deficiency reduced both root hydraulic conductance and root hydraulic conductance scaled by total root surface area. On the other hand, nutrient limitations did not significantly affect root conductance per unit of foliar surface area. Thus, adaptation to low nutrient availability did not affect seedling capacity for maintaining water supply to leaves. The implications for drought resistance and survival during seedling establishment in semi-arid environments are discussed..
机译:干旱和半干旱地区的植物经常受到水分和养分的限制。进行形态功能调整以改善养分吸收可能对植物水分平衡以及植物抗旱能力具有重要影响。多项研究表明,氮和磷的缺乏可能会降低工厂的水力传导率。令人惊讶的是,关于营养限制对旱生植物用水的影响的研究很少。我们已经评估了氮和磷的有效利用量的大量减少对地中海常见灌木黄连木(Pistacia lentiscus L)幼苗的形态特征和水力传导的影响。氮缺乏导致地上生物量的积累减少,但并未影响地下生物量的积累或根形态。缺磷植物的叶面积减少,但地上生物量没有变化。缺磷植物的根长,根表面积和比根长均高​​于对照植物。氮和磷缺乏会降低根系水力传导率和根系总根表面积缩放的根系水力传导率。另一方面,养分限制并没有显着影响每单位叶表面积的根系电导。因此,适应低养分利用率不会影响幼苗维持叶片供水的能力。讨论了在半干旱环境中幼苗建立过程中抗旱性和存活的意义。

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