Gradowski Tomasz, Thomas Sean C
Department of Renewable Resources, University of Alberta, Edmonton, AB T6G 2M7, Canada.
Tree Physiol. 2008 Feb;28(2):173-85. doi: 10.1093/treephys/28.2.173.
Heavy atmospheric nitrogen (N) deposition has been associated with altered nutrient cycling, and even N saturation, in forest ecosystems previously thought to be N-limited. This observation has prompted application to such forests of non-N mineral nutrients as a mitigation measure. We examined leaf gas-exchange, leaf chemistry and leaf and shoot morphological responses of Acer saccharum Marsh. saplings and mature trees to experimental additions of non-nitrogenous mineral nutrients (dolomitic lime, phosphorus + potassium (P + K) and lime plus P + K) over 2 years in the Haliburton region of central Ontario, which receives some of the largest annual N inputs in North America. Nutrients were adsorbed in the mineral soil and taken up by A. saccharum trees within 1 year of fertilizer application; however, contrary to expectation, liming had no effect on soil P availability. Saplings and canopy trees showed significant responses to both P + K fertilization and liming, including increased foliar nutrient concentration, leaf size and shoot extension growth; however, no treatment effects on leaf gas-exchange parameters were detected. Increases in shoot extension preceded increases in diameter growth in saplings and canopy trees. Vector analysis of shoot extension growth and nutrient content was consistent with sufficiency of N but marked limitation of P, with co-limitation by calcium (Ca) in saplings and by Ca, Mg and K in canopy trees.
大量的大气氮(N)沉降与森林生态系统中养分循环的改变甚至氮饱和有关,而这些森林生态系统以前被认为是受氮限制的。这一观察结果促使人们将非氮矿质养分应用于此类森林作为一种缓解措施。我们在安大略省中部哈利伯顿地区对糖枫(Acer saccharum Marsh.)幼树和成年树木进行了为期两年的实验,实验添加了非氮矿质养分(白云石粉、磷 + 钾(P + K)以及白云石粉加P + K),该地区是北美每年氮输入量最大的地区之一。施肥后1年内,养分被吸附在矿质土壤中并被糖枫吸收;然而,与预期相反,施用白云石粉对土壤有效磷没有影响。幼树和冠层树木对P + K施肥和施用白云石粉均表现出显著响应,包括叶片养分浓度增加、叶片大小增大以及新梢伸长生长加快;然而,未检测到处理对叶片气体交换参数有影响。幼树和冠层树木新梢伸长的增加先于直径生长的增加。新梢伸长生长和养分含量的向量分析表明氮充足但磷明显受限,幼树中钙(Ca)共同限制,冠层树木中钙、镁和钾共同限制。