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首页> 外文期刊>Soil Biology & Biochemistry >Interaction between legume and arbuscular mycorrhizal fungi identity alters the competitive ability of warm-season grass species in a grassland community
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Interaction between legume and arbuscular mycorrhizal fungi identity alters the competitive ability of warm-season grass species in a grassland community

机译:豆科植物与丛枝菌根真菌身份之间的相互作用改变了草原社区暖季草物种的竞争能力

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摘要

Arbuscular mycorrhizal fungi (AMF) and N-2-fixing legumes can alter the community structure of grasses. However, the effect of AMF, N-2-fixing legumes, and their interaction on the dynamics of prairie grass communities remains unclear. The aim of this study was to clarify the influence of two AMF (Glomus cubense and Glomus sp.) and two legumes (Medicago sativa and Dalea purpurea) on the competitive relationship between three native cool-season (Elymus canadensis, Elymus trachycaulus ssp. subsecundus, and Elymus lanceolatus ssp. lanceolatus) and two native warm-season species of grasses (Schizachyrium scoparium and Bouteloua gracilis). Results show that AMF and legumes altered the community structure of the grasses. G. cubense favoured the productivity of warm-season B. gracilis when growing with M. sativa. This might be related to a negative impact of G. cubense on the nitrogen-fixing activity of M. sativa and to a lower N-use efficiency of E. canadensis and E. lanceolatus ssp. lanceolatus under competition. This suggested an increased ability of B. gracilis to use the available N resource as affected by more competitive species, whereas Glomus sp. reduced the competitive ability of this grass when associated with M. sativa. The decrease in B. gracilis biomass was thus likely caused by enhancement of P uptake by M. sativa over this grass. Glomus sp. was beneficial to S. scoparium, another warm-season species, in the absence of legumes, and this may be attributed to improved P-use efficiency of this grass under competition with cool season-grasses. In contrast, AMP and legumes were not beneficial for the cool season grasses. G. cube rise depressed the growth of E. trachycaulus ssp. subsecundus, and M. sativa decreased nutrient uptake by cool-season native grasses. This study shows that beneficial effect of the arbuscular mycorrhizal symbiosis on the coexistence of warm-season grasses with more competitive cool-season grasses depends on the identity of the AMF symbiont, the presence of legume species, and nitrogen resource availability that was affected by the most competitive species or P-use efficiency of warm season species
机译:丛枝菌根真菌(AMF)和固定N-2的豆类可以改变草的群落结构。然而,AMF,N-2固定豆类及其相互作用对草原草群落动态的影响尚不清楚。本研究的目的是弄清两种AMF(格罗姆斯立方体和Glomus sp。)和两种豆类(苜蓿和Dalea purpurea)对三种本地凉季(Elymus canadensis,Elymus trachycaulus ssp。subsecundus)之间竞争关系的影响。 ,和Elymus lanceolatus ssp。lanceolatus)和两种本地暖季草(Schizachyrium scoparium和Bouteloua gracilis)。结果表明,AMF和豆类改变了草的群落结构。当与紫花苜蓿一起生长时,丁香锥菌偏爱暖季型粉虱的生产力。这可能与立方丁香球菌对苜蓿固氮菌的固氮活性产生负面影响,以及加拿大小肠埃希菌和蓝叶小肠埃希菌的较低的氮利用效率有关。 lanceolatus在竞争中。这表明,由于竞争性较强的物种的影响,细纹芽孢杆菌利用可用氮资源的能力增强,而Glomus sp。当与苜蓿结合时,降低了这种草的竞争能力。因此,纤毛芽孢杆菌生物量的减少可能是由于该草上的苜蓿分支杆菌对磷的吸收增加所致。 Glomus sp。在没有豆科植物的情况下,对另一种暖季种S. scoparium有利,这可能归因于在与凉爽的季节草竞争下该草的磷利用效率提高。相比之下,AMP和豆类作物对凉季草不利。 G. cube上升抑制了E. trachycaulus ssp的生长。亚次生,和苜蓿降低了凉季本地草对养分的吸收。这项研究表明,丛枝菌根共生对暖季草与竞争性强的凉季草并存的有益影响取决于AMF共生体的身份,豆类种类的存在以及受氮肥影响的氮资源可用性。最具竞争性的物种或暖季物种的磷利用效率

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