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Above- and below-ground interactions between Lotus tenuis and Cynodon dactylon under different fertilization levels

机译:在不同施肥水平下,莲花宗和Cynodon Dactylon之间的地上和地下相互作用

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Llobet, M., Vignolio, O. R., Save, R. and Biel, C. 2012. Above- and below-ground interactions between Lotus tennis and Cynodon dactylon under different fertilization levels. Can. J. Plant Sci. 92: 45-53. Mixtures of legumes and grasses are recommend for xeric garden fields, landscape restorations and to improve productivity, digestibility and quality of grasslands and pastures, due to the complementarity in the use of resources, their resistance to wide edaphoclimatic conditions and the nitrogen-fixing ability of the legume. However, legumes persistence is poor. Two greenhouse studies examined the relative importance of above- and below-ground competition and root physiological attributes between a legume Lotus tenuis and a grass bermudagrass (Cynocion dactylon) under two fertilization levels. The plants were arranged using the "Divided pot" technique during 34 wk. Root competition was more important on the performance of both species than shoot competition. Cynodon dactylon had greater nutrient use efficiency than L. tennis. The low root hydraulic resistance and high specific root length of C. dactylon could enhance its ability to explore the soil and compete for water and nutrients more efficiently than L. tennis, which compensates for these characteristics with a higher root:shoot ratio than C. clactylon. Although mechanisms involved in root competition between species are not fully understood, our results show that root physiological and morphologic traits contribute to understanding the responses of the species in mixture.
机译:Llobet,M.,Vignolio,O. R.,Save,R.和Biel,C. 2012。在不同施肥水平下,莲花网球和Cynodon Dactylon之间的地面和低于地面和低于地面的地面相互作用。能。 J.植物SCI。 92:45-53。由于资源使用的互补性,抗胶木状况和氮气定位能力,建议豆类和草地的混合物,景观修复田地,景观修复,并提高草地和牧场的生产力,消化率和质量,造成的抗抚养条件和氮固定能力豆类。但是,豆类持久性很差。两个温室研究审查了豆类莲花植物和草百慕大(愤怒Dactylon)在两种施肥水平之间进行了上述和低于地面竞争和根生理属性的相对重要性。在34周期下使用“分开的罐”技术排列植物。根本竞争对两种物种的表现比拍摄竞争更重要。 Cynodon Dactylon的营养利用效率比L.网球更高。 C.Dactylon的低根液压抗性和高特异性根长度可以提高其探索土壤的能力,比L.网球更有效地竞争水和营养素,这补偿了较高根的这些特性:芽比比C更高克拉克朗。尽管涉及物种之间的根竞争的机制尚未完全明白,但我们的结果表明,根本生理和形态学性状有助于了解物种在混合物中的反应。

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