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首页> 外文期刊>Acta oecologica >Plasticity in R/S ratio, morphology and fitness-related traits in response to reciprocal patchiness of light and nutrients in the stoloniferous herb, Glechoma longituba L
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Plasticity in R/S ratio, morphology and fitness-related traits in response to reciprocal patchiness of light and nutrients in the stoloniferous herb, Glechoma longituba L

机译:R / S比,形态和与健身相关的性状的可塑性,响应于lon茎草(Glechoma longituba L)中光和养分的相互补充

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摘要

Clonal fragments of the stoloniferous herb Glechoma longituba were subjected to a complementary patchiness of light and soil nutrients including two spatially homogeneous treatments (SR-SR and IP-IP) and two spatially heterogeneous treatments (IP-SR and SR-IP). SR and IP indicate patches (shaded, rich) with low light intensity (shaded, S), high nutrient availability (rich, R) and patches (illuminated, poor) with high light intensity (illuminated, I) and low nutrient availability (poor, P), respectively. Plasticity of the species in root-shoot ratio, fitness-related traits (biomass, number of ramets and dry weight per ramet) and clonal morphological traits (length and specific length of stolon intemodes, area and specific area of laminae, length and specific length of petioles) were experimentally examined. The aim is to understand adaptation of G. longituba to the environment with reciprocal patches of light and soil nutrients by plasticities both in root-shoot ratio and in (clonal) morphology. Our experiment revealed performance of the clonal fragments growing from patches with high light intensity and low soil nutrient availability into the adjacent opposite patches was increased in terms of the fitness-related characters. R/S ratio and clonal morphology were plastic. Meanwhile, the capture of light resource from the light-rich patches was enhanced while the capture of soil nutrients from either the nutrient-rich or the nutrient-poor patches was not. Analysis of cost and benefit disclosed positive effects of clonal integration on biomass production of ramets in the patches with low light intensity and high soil nutrient availability. These results suggest an existence of reciprocal translocation of assimilates and nutrients between the interconnected ramets. The reinforced performance of the clonal fragments seems to be related with specialization of clonal morphology in the species. (C) 2003 Editions scientitiques et medicales Elsevier SAS. All rights reserved. [References: 33]
机译:茎草香菇的克隆片段经历了光和土壤养分的补充斑块,包括两种空间均质处理(SR-SR和IP-IP)和两种空间异质处理(IP-SR和SR-IP)。 SR和IP表示光强度低(阴影,S),养分利用率高(丰富,R)的斑块(阴影,丰富)和光强度高(照明,I)和养分利用率低(差)的斑块(光照,差) ,P)。该物种的可塑性,包括根茎比率,适应性相关性状(生物量,分株数和每ra的干重)和克隆形态性状(茎中间模的长度和特定长度,薄片的面积和特定区域,长度和特定长度)对叶柄进行了实验研究。目的是通过根冠比和(克隆)形态的可塑性来了解长白杜鹃对光和土壤养分的互作的环境适应性。我们的实验表明,在适应性相关的特征方面,克隆片段从具有高光强度和低土壤养分利用率的斑块生长到相邻的相反斑块中的性能有所提高。 R / S比和克隆形态是可塑性的。同时,增强了从富含光的斑块中捕获光资源的能力,而没有从富含养分的或缺乏养分的斑块中捕获土壤养分。成本和收益分析揭示了克隆整合对光强度低和土壤养分利用率高的斑块中分株生物量生产的积极影响。这些结果表明在相互联系的分株之间存在同化物和养分的相互易位。克隆片段的增强性能似乎与物种中克隆形态的特殊化有关。 (C)2003版《科学与医学》 Elsevier SAS。版权所有。 [参考:33]

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