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Photosynthesis, nitrogen allocation and specific leaf area in invasive Eupatorium adenophorum and native Eupatorium japonicum grown at different irradiances

机译:在不同辐照度下生长的入侵紫茎泽兰和日本原生紫茎泽兰的光合作用,氮分配和比叶面积

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The mechanisms underlying biological invasions are still not well elucidated. In this study, ecophysiological traits of invasive Eupatorium adenophorum and native E. japonicum were compared at 10 irradiances in field. I hypothesized that the invader may allocate a higher fraction of leaf nitrogen (N) to photosynthesis and have higher light-saturated photosynthetic rate (P-max) and specific leaf area (SLA) than E. japonicum. The invader had a significantly higher ability to acclimate to high irradiance than E. japonicum, while it showed a similar shade-tolerant ability. The invader indeed allocated a higher fraction of leaf N to photosynthesis than E. japonicum, which, with its high leaf N content (N-A), resulted in a higher N content in photosynthesis (N-P), contributing to its higher biochemical capacity for photosynthesis and P-max. However, the invader had a significantly lower SLA than E. japonicum, contributing to its higher P-max but increasing its area-based leaf construction cost. The abilities to acclimate to a wider range of irradiance and to allocate a higher fraction of leaf N to photosynthesis, and the higher P-max, N-A, N-P and leaf area ratio may contribute to the invasion of the invader. High SLA is not always necessary for invasive species.
机译:尚未充分阐明生物学入侵的潜在机制。在这项研究中,比较了野外紫茎泽兰和日本大肠埃希菌在10个光照下的生理生态特性。我假设入侵者可能比日本粳稻分配更多的叶氮(N)进行光合作用,并具有更高的光饱和光合速率(P-max)和比叶面积(SLA)。入侵者具有比日本大肠埃希菌更高的适应高辐照度的能力,而它表现出相似的耐荫能力。入侵者确实比日本粳稻分配了更高比例的叶片N用于光合作用,日本粳稻具有较高的叶片N含量(NA),导致其光合作用(NP)中的N含量更高,从而有助于其更高的光合作用和生化能力。最大P但是,入侵者的SLA明显低于日本粳稻,因此导致其P-max更高,但增加了其基于面积的叶片建造成本。适应更大范围的辐照和分配较高比例的叶片N进行光合作用的能力以及较高的P-max,N-A,N-P和叶片面积比可能会导致入侵者入侵。对于入侵物种,并非总是需要高SLA。

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