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首页> 外文期刊>Canadian Journal of Soil Science >Biochar enhances seedling growth and alters root symbioses and properties of sub-boreal forest soils.
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Biochar enhances seedling growth and alters root symbioses and properties of sub-boreal forest soils.

机译:生物炭可促进幼苗生长并改变亚北方森林土壤的根共生和特性。

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摘要

Biochar application may enhance soil properties, improve plant productivity, and increase long-term carbon storage, but impacts of biochar on plant-microbe symbioses mediating plant nutrient uptake in temperate or boreal soils are not well known. We planted lodgepole pine (Pinus contorta var. latifolia) or sitka alder (Alnus viridis ssp. sinuata) seeds in pots containing field-collected forest soils (from central British Columbia) amended with 0, 5, or 10% (dry mass basis) biochar with and without urea fertilizer (150 mg N kg-1). Pine seedlings were harvested at 4 mo and roots were assessed for abundance and diversity of ectomycorrhizal (ECM) morphotypes using light microscopy and DNA sequencing. Biochar raised soil pH, exchangeable cations and cation exchange capacity in some treatments in both soils. Pine had greater biomass in biochar+fertilizer treatments compared to control and fertilizer-only treatments; this corresponded in part to an increase in abundance of some ECMs. Alder seedlings were harvested at 2, 3 and 4 mo to measure N fixation in root nodules using acetylene reductase assay (ARA). Alder seedlings had greater shoot biomass when grown in biochar-amended soils compared with unamended control. Although mean ARA rates (at 4 mo) were greater in biochar-amended soils compared with controls, the data showed great variation and differences were not statistically significant (P
机译:生物炭的施用可以增强土壤特性,提高植物的生产力,并增加长期碳存储量,但是生物炭对介导温带或北方土壤中植物养分吸收的植物-微生物共生体的影响尚不清楚。我们种植了五倍子松( contorta 变种 latifolia )或西特卡der木( Alnus viridis ssp。 sinuata )种子在装有田间采集到的森林土壤(不列颠哥伦比亚省中部地区)的花盆中,添加和不添加尿素肥料(150 mg N kg -1 )的生物炭含量为0、5%或10%。在4 mo收获松树幼苗,并使用光学显微镜和DNA测序评估根系外生菌根(ECM)形态型的丰度和多样性。在某些处理中,生物炭都能提高土壤的pH值,可交换阳离子和阳离子交换能力。与对照和仅施肥相比,松木在生物炭+肥料处理中具有更高的生物量。这部分地对应于某些ECM数量的增加。在第2、3和4月收获木幼苗,使用乙炔还原酶测定(ARA)测量根瘤中的N固定。与未经改良的对照相比,在经过生物炭改良的土壤中生长时,der木幼苗的茎生物量更高。尽管与对照相比,生物炭改良土壤的平均ARA率(4 mo)更高,但数据显示差异很大,差异无统计学意义( P

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