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首页> 外文期刊>Plant and Soil >Intraspecific and interspecific pair-wise seedling competition between exotic annual grasses and native perennials: plant–soil relationships
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Intraspecific and interspecific pair-wise seedling competition between exotic annual grasses and native perennials: plant–soil relationships

机译:种外和一年生多年生草之间的种内和种间成对幼苗竞争:植物与土壤的关系

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Few studies have examined plant–soil relationships in competitive arenas between exotic and native plants in the western United States. A pair-wise competitive design was used to evaluate plant–soil relationships between seedlings of the exotic annual grasses Bromus tectorum and Taeniatherium caput-medusae and the native perennial grasses Elymus elymoides and Pseudoroegneria spicata. Two soils were tested: an arid soil (argid) occupied by E. elymoides and presently invaded by B. tectorum and a high elevation, high organic matter, soil (aquept) where none of the tested species would typically occur. Plant growth proceeded for 85 days at which time above-ground biomass and tissue nutrient concentrations were quantified. Soil also was collected from the rooting zone beneath each species and analyzed for various nutrient pools. The exotic species had significantly greater above-ground biomass than the natives and grew far better in the aquept soil than the argid soil. Growth of B. tectorum, and to some degree, T. caput-medusae was suppressed in intraspecific competition and enhanced, especially in the aquept soil, when competing with the natives. Although not significant, biomass of natives strongly trended downward when competing with the exotic grasses. Overall, concentrations of tissue nutrients were minimally affected by competition, but natives tended to be more negatively affected by competition with exotics. Except for phosphorus (P), all species had significantly greater nutrient concentrations when growing in the aquept soil compared to the argid soil. In both soils, exotics had significant greater tissue concentrations of manganese (Mn), magnesium (Mg), and iron (Fe), while natives had significantly greater nitrogen (N). Species affects on soil nutrient pools occurred mostly in the aquept soil with exotic species significantly decreasing pools of available N, potentially available N, and soil-solution pools of calcium (Ca2+), potassium (K+), and magnesium (Mg2+) relative to natives. Overall, the data suggest that, in the seedling state, B. tectorum is a superior competitor. Moreover, when the natives compete intra- or interspecifically, particularly in the aquept soil, availability of N and other nutrients in their rooting zone is consistently greater than when they compete interspecifically with the exotic grasses. These data suggest the exotics are able to co-opt nutrients in the rooting zone of the natives and perhaps gain a competitive advantage. Keywords Bromus tectorum - Elymus elymoides - Intraspecific competition - Interspecific competition - Plant–soil relationships - Pseudoroegneria spicata - Taeniatherum caput-medusae Responsible Editor: Hans Lambers.
机译:很少有研究在美国西部外来植物和本土植物之间的竞争环境中研究植物与土壤的关系。采用成对竞争设计评估异国一年生禾草Bromus tectorum和Taeniatherium caput-medusae幼苗和本地多年生禾草Elymus elymoides和Pseudoroegneria spicata幼苗之间的植物-土壤关系。对两种土壤进行了测试:一种被沙棘肠杆菌(E. emomoides)占据,目前被线虫土壤杆菌(B. tectorum)入侵的干旱土壤(硬质)和一种高海拔,高有机质的土壤(水培),通常不会发生任何物种。植物生长进行了85天,此时定量了地上生物量和组织营养素的浓度。还从每个物种下面的生根区收集土壤,并分析各种养分库。外来物种的地上生物量要比本地人大得多,并且在共渗土壤中的生长要比固结土壤好得多。当与当地人竞争时,在种内竞争中抑制了鹤望兰的生长,并在一定程度上抑制了角杜鹃的生长,尤其是在水培土壤中。尽管不重要,但与外来草竞争时,本地生物量却呈强烈下降趋势。总体而言,组织营养素的浓度受竞争的影响很小,但本地人往往受到与外来物种竞争的负面影响更大。除磷(P)以外,与固态土壤相比,在水培土壤中生长的所有物种均具有明显更高的养分浓度。在两种土壤中,外来物种的组织中锰(Mn),镁(Mg)和铁(Fe)的浓度均显着较高,而本地人的氮(N)则显着较高。对土壤养分库的物种影响主要发生在水浸土中,其中外来物种显着减少了有效氮,潜在有效氮和钙(Ca 2 + ),钾(K < sup> + )和镁(Mg 2 + )。总体而言,数据表明,在幼苗状态下,鹤望兰是较优的竞争者。此外,当本地人在种内或种间竞争时,尤其是在水培土壤中,其生根区中氮和其他养分的利用率始终高于与异种草进行种间竞争时。这些数据表明,外来物种能够在当地人的生根区域选择养分,并可能获得竞争优势。关键词胸腺-披碱草-种内竞争-种间竞争-植物与土壤的关系-假单胞菌-Taeniatherum caput-medusae负责编辑:汉斯·兰伯斯。

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