Weatherall A, Proe M F, Craig J, Cameron A D, Midwood A J
The Macaulay Institute, Craigiebuckler, Aberdeen AB15 8QH, UK.
Tree Physiol. 2006 May;26(5):673-80. doi: 10.1093/treephys/26.5.673.
Potassium (K) and magnesium (Mg) are essential macro-nutrients, but little is known about how they are cycled within plants. Stable isotope studies have shown that the internal cycling of nitrogen (N) is independent of current nutrient supply in temperate tree species. This is ecologically significant because it allows trees to produce rapid shoot growth in spring independent of current soil N uptake. We used stable isotopes to quantify N, K and Mg in new shoots of Sitka spruce (Picea sitchensis (Bong.) Carr.) seedlings and to compare the relative contributions from current uptake and internal cycling. Two-year-old Sitka spruce seedlings were labeled with (15)N, (41)K and (26)Mg in an abundant or a limited supply for one growing season. The trees were repotted in the subsequent dormant season to prevent further root uptake of enriched isotopes and provided with an abundant or a limited supply of unlabeled nutrients until they were harvested in early summer of the following year. The supply was switched for half the trees in the second year to create four nutrient regimes. Enrichment of (15)N, (41)K and (26)Mg in current-year growth was attributed to internally cycled N, K and Mg uptake from the previous year. The internal cycling of N, K and Mg in new growth was significantly affected by the first-year nutrient treatments. The second-year nutrient supply affected the growth rates of the trees, but had no effect on the amounts of N, K or Mg contributed from internal cycling. Thus, internal cycling of K and Mg in Sitka spruce are, like that of N, independent of current nutrient supply.
钾(K)和镁(Mg)是必需的大量营养素,但对于它们在植物体内如何循环却知之甚少。稳定同位素研究表明,温带树种中氮(N)的内部循环独立于当前的养分供应。这在生态上具有重要意义,因为它使树木能够在春季独立于当前土壤氮吸收量而快速长出新梢。我们使用稳定同位素对西加云杉(Picea sitchensis (Bong.) Carr.)幼苗新梢中的氮、钾和镁进行定量,并比较当前吸收和内部循环的相对贡献。将两年生的西加云杉幼苗在一个生长季节中用充足或有限供应的(15)N、(41)K和(26)Mg进行标记。在随后的休眠季节将树木重新盆栽,以防止根系进一步吸收富集的同位素,并为其提供充足或有限供应的未标记养分,直到次年夏初收获。在第二年,对一半的树木切换供应,以创建四种养分处理方式。当年生长中(15)N、(41)K和(26)Mg的富集归因于上一年内部循环的氮、钾和镁的吸收。新梢中氮、钾和镁的内部循环受到第一年养分处理的显著影响。第二年的养分供应影响了树木的生长速率,但对内部循环贡献的氮、钾或镁的量没有影响。因此,西加云杉中钾和镁的内部循环与氮一样,独立于当前的养分供应。