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Altered leaf functional traits by nitrogen addition in a nutrient-poor pine plantation: A consequence of decreased phosphorus availability

机译:在营养不良的松树人工林中通过添加氮改变了叶片的功能性状:磷有效性降低的结果

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摘要

This study aimed to determine how specific leaf area (SLA) and leaf dry matter content (LDMC) respond to N addition and understory vegetation removal in a 13-year-old Mongolian pine (Pinus sylvestris var. mongolica) plantation. Traits (SLA, LDMC, individual needle dry weight, N and P concentrations) of different-aged needles and their crown-average values were measured, and their relationships with soil N and P availability were examined. N addition and understory removal reduced soil Olsen-P by 15–91%. At the crown level, N addition significantly reduced foliar P concentration (by 19%) and SLA (by 8%), and elevated N concentration (by 31%), LDMC (by 10%) and individual leaf dry weight (by 14%); understory removal did not have a significant effect on all leaf traits. At the needle age level, traits of the previous year’s needles responded more strongly to N addition and understory removal than the traits of current-year needles, particularly SLA and N concentration. SLA and LDMC correlated more closely with soil Olsen-P than with soil inorganic N, and LDMC correlated more closely with soil Olsen-P than SLA did. These results indicate that aggravated P limitation resulting from N addition and understory removal could constrain Mongolian pine growth through their effects on the leaf traits.
机译:这项研究旨在确定在13岁的蒙古松(Pinus sylvestris var.mongolica)人工林中,比叶面积(SLA)和叶干物质含量(LDMC)对氮添加和林下植被去除的反应。测量不同年龄针头的性状(SLA,LDMC,针头干重,氮和磷浓度)及其冠冠平均值,并检查其与土壤氮和磷有效性的关系。氮的添加和林下的去除使土壤Olsen-P降低15–91%。在树冠水平,氮的添加显着降低了叶面磷的浓度(降低了19%)和SLA(降低了8%),氮含量(降低了31%),LDMC(降低了10%)和单叶干重(降低了14%) );去除林下植物对所有叶片性状均无显着影响。在针龄方面,与当年针的性状相比,上一年针的性状对氮添加和下层去除的反应更为强烈,特别是SLA和氮浓度。 SLA和LDMC与土壤Olsen-P的关系比与土壤无机N的关系更紧密,而LDMC与土壤Olsen-P的关系比SLA更紧密。这些结果表明,由于氮素的添加和林下植物的去除而加剧的磷限制可能通过影响其叶片性状而限制蒙古松的生长。

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