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Comparison of growth characteristics and tolerance to serpentine soil of three ectomycorrhizal spruce seedlings in northern Japan.

机译:日本北部3种外生菌根云杉幼苗的生长特性和对蛇形土壤的耐受性比较。

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摘要

Picea glehnii is distributed widely on serpentine soils in northern Japan. Serpentine soil is characterised by the presence of heavy metals (Ni, Cr) and excessive Mg; these elements often suppress plant growth. We have examined the tolerance to serpentine soil and its effects on growth of P. glehnii, P. jezoensis (distributed in the same region) and P. abies (planted for timber production). The dry mass of each organ was not reduced in P. glehnii planted in serpentine soil contained nursery (serpentine nursery). In contrast, growth of P. jezoensis and P. abies was suppressed. Concentrations of Ni and Mg in needles and roots of P. glehnii planted in serpentine nursery were the lowest of the three species. Moreover, the photosynthetic rate of P. glehnii planted in the serpentine nursery was not reduced. P. glehnii has high capability to maintain low concentration of Ni, and ectomycorrhizal symbiosis may have a positive effect to excluding Ni. As a result, P. glehnii has a high tolerance against Ni toxicity, and its photosynthetic capacity is not suppressed by accumulation of Ni..
机译:云杉云杉广泛分布于日本北部的蛇形土壤中。蛇形土壤的特征是存在重金属(Ni,Cr)和过量的Mg。这些元素通常会抑制植物的生长。我们已经检查了对蛇纹土的耐受性及其对P. glehnii,P。jezoensis(分布在同一地区)和P. abies(种植木材)的生长的影响。在含有蛇纹土的苗圃(蛇苗圃)中种植的P. glehnii中,每个器官的干重都没有减少。相比之下,空竹假单胞菌和冷杉的生长受到抑制。在蛇形苗圃中种植的P. glehnii的针和根中,Ni和Mg的含量是这三个物种中最低的。而且,在蛇形苗圃中种植的格氏假单胞菌的光合速率没有降低。格氏疟原虫具有高的能力来维持低浓度的镍,而外生菌根共生对排除镍可能具有积极作用。结果,格氏假单胞菌具有对Ni毒性的高耐受性,并且其光合能力没有被Ni的积累所抑制。

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