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首页> 外文期刊>Forest Ecology and Management >Effect of Aporrectodea trapezoides activity on seedling growth Pseudotsuga menziesii, nutrient dynamics and microbial activity in different forest soils
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Effect of Aporrectodea trapezoides activity on seedling growth Pseudotsuga menziesii, nutrient dynamics and microbial activity in different forest soils

机译:梯形假单胞菌活性对不同森林土壤幼苗的生长,营养动态和微生物活性的影响

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摘要

The effect of the endogeic earthworm, Aporrectodea trapezoides on the growth of Douglas-fir seedlings grown in three different soils was studied. Soils from pure and mixed stands of Douglas-fir and paper birch were used. Seedlings were grown in earthworm-worked and control soils for 10 months in the laboratory. At 5 and 10 months, differences in plant growth, available N and P, mycorrhizal colonization, microbial functional diversity and microbial activity were assessed. Douglas-fir seedling root biomass was greater in worm-worked compared to control soils. Height of seedlings varied significantly during the 5-8 months period of growth with taller seedlings in worm-worked soils. Foliar calcium levels of seedlings were higher at 10 months in worm-worked soils compared to the control. Effects of A. trapezoides on pH were unclear due to a worm x soil type interaction. Worm-worked mineral soil generally had higher organic matter levels compared to control soils but few differences were apparent in the forest floor layer. Average available NO3- and -NH4+ levels were higher in worm-worked forest floor at 10 months yet there were no differences in the mineral soil at this time. The effect of A. trapezoides on mycorrhizal colonization of Douglas-fir seedling roots differed with the different soil types whereby seedlings grown in pure and mixed birch soils were less colonized compared to the control. Average total bacterial activity, substrate richness and diversity were consistently higher in worm-worked forest floor and mineral soil compared to the control treatment. The trend in microbial respiration in worm-worked forest floor and mineral soil was not clear while effects on microbial biomass in the mineral soil were confounded by a worm x soil type interaction. The metabolic quotient was generally lower in worm-worked soils compared to control soils. Douglas-fir seedlings grown in pure worm-worked fir soils were often affected differently or more dramatically compared to seedlings grown in pure birch or mixed soils. The results of the experiment indicate that A. trapezoides has the potential to enhance Douglas-fir seedling growth.
机译:研究了内生earth梯形假单胞菌对在三种不同土壤中生长的花旗松幼苗生长的影响。使用了道格拉斯冷杉和桦木纯林和混交林的土壤。在实验室工作的earth土壤和对照土壤中培育幼苗10个月。在5和10个月时,评估了植物生长,有效氮和磷,菌根定植,微生物功能多样性和微生物活性的差异。与蠕虫相比,花旗松幼苗的根部生物量更大。在5-8个月的生长期中,蠕虫处理过的土壤中幼苗的高度变化很大,而幼苗较高。与对照相比,在蠕虫土壤中10个月时幼苗的叶片钙含量更高。由于蠕虫x土壤类型的相互作用,梯形曲霉对pH的影响尚不清楚。与对照土壤相比,用蠕虫处理的矿物土壤通常具有较高的有机质含量,但在森林表层几乎没有明显差异。蠕虫工作的林地在10个月时的平均可用NO3-和-NH4 +水平较高,但此时的矿质土壤没有差异。梯形农杆菌对花旗松幼苗根的菌根定殖的影响因土壤类型的不同而不同,因此与对照相比,在纯桦木和混合桦树土壤中生长的幼苗定植的较少。与对照处理相比,在蠕虫工作的林地和矿质土壤中,平均总细菌活性,底物丰富度和多样性始终较高。在蠕虫工作的森林地面和矿质土壤中微生物呼吸的趋势尚不清楚,而蠕虫x土壤类型的相互作用会混淆对矿质土壤中微生物生物量的影响。与对照土壤相比,蠕虫土壤中的代谢商通常较低。与在纯桦木或混合土壤中生长的幼苗相比,在纯蠕虫工作的杉木土壤中生长的花旗松幼苗通常受到不同或更大的影响。实验结果表明梯形拟南芥具有增强花旗松幼苗生长的潜力。

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