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Wind intensity affects fine root morphological traits with consequences for plant-soil feedback effects

机译:风强度影响植物土反馈效果的后果,影响细根形态特征

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Wind influences the development, architecture and morphology of plant roots and may modify subsequent interactions between plants and soil (plant–soil feedbacks—PSFs). However, information on wind effects on fine root morphology is scarce and the extent to which wind changes plant–soil interactions remains unclear. Therefore, we investigated the effects of two wind intensity levels by manipulating surrounding vegetation height in a grassland PSF field experiment. We grew four common plant species (two grasses and two non-leguminous forbs) with soil biota either previously conditioned by these or other species and tested the effect of wind on root:shoot ratio, fine root morphological traits as well as the outcome for PSFs. Wind intensity did not affect biomass allocation (i.e. root:shoot ratio) in any species. However, fine-root morphology of all species changed under high wind intensity. High wind intensity increased specific root length and surface area and decreased root tissue density, especially in the two grasses. Similarly, the direction of PSFs changed under high wind intensity in all four species, but differences in biomass production on the different soils between high and low wind intensity were marginal and most pronounced when comparing grasses with forbs. Because soils did not differ in plant-available nor total nutrient content, the results suggest that wind-induced changes in root morphology have the potential to influence plant–soil interactions. Linking wind-induced changes in fine-root morphology to effects on PSF improves our understanding of plant–soil interactions under changing environmental conditions.
机译:风影响的发展,建筑和植物根系的形态和可修改植物和土壤(植物 - 土壤反馈,专业服务公司)之间的后续交互。然而,在细根形态风影响的信息是匮乏和到风改变植物 - 土壤相互作用的程度仍不清楚。因此,我们通过在草原PSF现场实验操纵周围植被高度调查两个风力强度水平的影响。我们长大与土壤生物或者先前由这些或其他物种空调四种常见的植物物种(二草和两个非豆科杂类)和测试风在根上的效果:根冠比,细根形态性状以及结果为的PSF 。风强度不影响生物量分配:在任何物种(即根冠比)。然而,所有种类的细根形态高风强度下改变。高风强度的增加比根长和表面积和降低的根组织密度,尤其是在两个草。类似地,在所有四种高风强度下改变的PSF,但在高和低风强度之间的不同的土壤生物量产生差异的方向为边缘和与杂类禾草比较时最显着。由于土壤没有在植物可利用的还是总养分含量的不同,结果表明,在根风引起的变化形态具有影响植物 - 土壤相互作用的可能性。链接在细根形态的风引起的变化来对PSF提高了我们在不断变化的环境条件下植物 - 土壤相互作用的了解。

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