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首页> 外文期刊>Forest Ecology and Management >Are photosynthetic leaf traits related to the first-year growth of tropical tree seedlings? A light-induced plasticity test in a secondary forest enrichment planting
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Are photosynthetic leaf traits related to the first-year growth of tropical tree seedlings? A light-induced plasticity test in a secondary forest enrichment planting

机译:与热带树幼苗的第一年生长有关的光合叶状性状? 在次林富集种植中的光诱导可塑性试验

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摘要

Understanding light-induced plasticity of growth and its relationship with photosynthetic trait plasticity is central to the identification of the mechanisms associated with tropical tree seedling establishment in enrichment plantings. In a secondary forest submitted to silvicultural treatments - that manipulate light environment - and enriched with six tropical tree species we tested three main hypothesis. First, the growth of the six species are related to photosynthetic leaf traits; second, there is a relationship between the light-induced plasticity of growth and photosynthetic leaf traits and, finally, that growth plasticity is a subjacent mechanism of the growth-survival trade-off. Growth was analyzed as a biomass index that combines collar and height growth. Photosynthetic leaf traits were selected considering their significance in the photosynthetic process: light interception (specific leaf area, SLA), light absorption (chlorophyll a and b ratio, Chl(a/b)), light use (fluorescence parameters, F-v/F-m; PIabs, PItotal) biochemical limitations (light-saturated CO2 assimilation, A(sat)) and diffusive limitations (stomatal conductance, g(s)). The plasticity was represented by the slope of the relationship between the canopy light transmittance and growth and the photosynthetic leaf traits. At the end of the first year after planting, growth was related to almost all photosynthetic leaf traits, and the strongest relationships (high slope and R-2) were observed with A(sat), SLA and PItotal. Light-induced growth plasticity varied three times between species. The interspecific growth plasticity was related to SLA and F-v/F-m plasticity, which varied 4.9 and 2.4 times between species, respectively. Seedling mortality in the shaded understory and the growth in a high light environment were associated with growth plasticity. Photosynthetic leaf traits effectively represent the growth response mechanisms to silvicultural treatments that manipulate the light environment in enrichment plantings, and the subjacent mechanism of growth plasticity has an intrinsic effect on the growth-survival trade-off.
机译:生长与光合特性的可塑性关系的认识光诱发塑性是中央与热带树在种植富集幼苗建立相关机制的鉴定。在提交给造林治疗次生林 - 操纵光环境 - 并有六个热带树种丰富,我们测试了三种主要的假说。首先,六个品种的生长都与光合叶性状;第二,存在生长和光合叶性状和,的光诱发塑性的关系最后,生长可塑性生长生存折衷的下层机制。增长分析为结合领口和高增长的生物量指标。选择考虑它们在光合作用过程意义光合叶性状:光拦截(比叶面积,SLA),光吸收(叶绿素a和b比率,叶绿素(A / B)),光利用(荧光参数,FV / FM; PIabs,PItotal)生化限制(光饱和CO2同化,A(饱和))和扩散限​​制(气孔导度,得到了(S))。塑性是由天篷透光率和生长和光合叶性状之间的关系的斜率表示。在第一年的种植后结束时,生长相关的几乎所有光合叶性状,并且最强的关系(高斜率和R-2)与甲观察(饱和),SLA和PItotal。光诱导的生长可塑性变化物种之间三次。种间生长可塑性有关SLA和F-V / F-m的可塑性,这改变物种之间4.9和2.4倍。苗的死亡率在阴影下木和在高的光环境生长用生长可塑性相关联。光合叶片性状有效地代表对于生长响应机制,在富集种植操纵光环境造林护理和生长可塑性的下方机制对生长生存权衡的内在作用。

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