首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Soil nutrient availability and microclimate are influenced more by genotype than by planting stock type in hybrid poplar bioenergy buffers on farmland
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Soil nutrient availability and microclimate are influenced more by genotype than by planting stock type in hybrid poplar bioenergy buffers on farmland

机译:土壤养分可用性和微气候受到基因型的更多影响,而不是通过在农田杂交杨树生物能量缓冲区种植股票类型

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摘要

Bioenergy buffers planted with fast-growing woody crops such as hybrid poplars (Populus spp.) are increasingly integrated into agricultural land to enhance the provision of ecosystem services. Genotype and planting stock type selection may influence buffer establishment success and soil properties, which may affect buffer functions such as soil nutrient removal, hydrological regulation (i.e. soil dewatering) or local climate regulation (i.e. temperature reduction). This farm-scale study tested the effects of two unrelated hybrid poplar genotypes (P. deltoides x P. nigra, genotype D x N-3570 and P. maximowiczii x P. balsamifera, genotype M x B-915311) and two planting stock types (unrooted whips and bare-root stocks) on biomass growth, soil nutrient availability and soil microclimate in 15 m wide bioenergy buffers located downslope of hayfields in the cold temperate region of southern Quebec, Canada. Poplar genotype had an important effect on biomass growth, soil microclimate and the supply rates of several macronutrients and micronutrients, while planting stock type had little effect on these variables. The P. maximowiczii x P. balsamifera genotype produced the highest biomass and had generally lower nutrient availability in the soil, but not for soil NO3, which was less available under the P. deltoides x P. nigra genotype. Compared to the hayfield soils, only the P. maximowiczii x P. balsamifera genotype maintained a lower supply rate of available P in the buffer soil. Compared to the hayfield soils, NH4 supply rates were lower in the buffers for both genotypes, while NO3 supply rates were similar or higher. Both genotypes had the capacity to maintain cooler soil temperatures and lower moisture content in the soil of the buffer compared to the adjacent hayfields, but this capacity was greater for the P. maximowiczii x P. balsamifera genotype. Because plant-soil interactions are strongly affected by hybrid poplar genetics, genotype selection is an important consideration in the design of multifunctional agricultural buffers. In temperate agroecosystems, future studies should try to identify productive poplar genotypes that would decrease topsoil NO3 and P availability and reduce soil water content in order to minimize potential N and P losses from buffer soils during runoff events.
机译:生物能量缓冲区种植,种植快速增长的木质作物,如杂交杨树(Populus SPP)越来越纳入农业土地,以加强提供生态系统服务。基因型和种植股票类型选择可能影响缓冲建立成功和土壤性质,这可能影响缓冲功能,如土壤养分去除,水文调节(即土壤脱水)或局部气候调节(即温度降低)。该农场规模研究检测了两个无关的杂交杨类基因型的影响(P. deltoides x p. nigra,基因型d x n-3570和p. maximowiczii x p.balsamifera,基因型m x b-915311)和两个种植股票类型(鞭子鞭子和裸动物股)对生物量生长,土壤养分可用性和土壤微动物在加拿大南魁北克南部寒气地区的海菲尔德地区的落后流域。杨树基因型对生物质生长,土壤微动物和几种常规营养素和微量营养素的供应率具有重要作用,而种植储存型对这些变量几乎没有影响。 P.MaximoWiCzii X P.Balsamifera基因型产生了最高的生物量,并且通常在土壤中养分可用性降低,但不适用于土壤No3,其在P. deltoides x p. nigra基因型下不太可用。与Hayfield土壤相比,只有P.MaximoWzii x P.Balsamifera基因型在缓冲液中保持了可用P的较低供应速率。与Hayfield土壤相比,除了基因型的缓冲液中,NH4供应率较低,而NO3供应率相似或更高。与相邻的海洋相比,两种基因型都具有维持较冷的土壤温度和降低缓冲液的土壤中的水分含量,但对于P.MaxImowiczii x P.Balsamifera基因型而言,这种能力更大。由于植物 - 土壤相互作用受杂交白杨遗传学的强烈影响,因此基因型选择是多功能农业缓冲区设计中的重要考虑因素。在温带农业系统中,未来的研究应该尝试识别生产性杨树基因型,这些基因型会降低表土NO3和P可用性,降低土壤含水量,以便在径流事件期间从缓冲区土壤中最小化潜在的N和P损失。

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