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A threefold difference in plant growth response to nitrogen addition between the laboratory and field experiments

机译:实验室和田间试验之间,植物生长对氮添加的响应增加了三倍

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Quantifying the magnitude of plant response to nitrogen (N) addition is critical in improving our understanding of vegetation productivity in terrestrial ecosystems. Numerous studies under both the laboratory (hereafter lab) and field conditions have shown significant increases in plant growth by N addition. However, differences exist when we integrate or compare the results between N‐addition experiments under the lab and field conditions. Here, we performed a meta‐analysis on observations from 139 field and 127 lab experiments to identify their differences and similarities in the N response of plant growth. Overall, there was a threefold difference in the N effect on plant biomass between the lab (+63.1%) and field (+22.2%) experiments. The magnitude of the lab–field difference varied among plant categories and plant tissues. For example, the larger N effect in the lab than field conditions was about twofold for the herbaceous plant but fourfold for the woody species. Furthermore, the N‐induced increase in biomass was allocated more to above‐ground parts in the field but equally to above‐ and below‐ground parts under the lab conditions. We further showed that these differences were jointly attributed to the differential abiotic (i.e., environmental condition and N application methods) and biotic (i.e., interspecific interaction, age, and functional types) factors under these two experimental conditions. These findings highlight more attention should be paid when the results from the lab experiments are translated to understand the N response of the natural plants.
机译:量化植物对氮(N)添加反应的幅度对于增进我们对陆地生态系统中植被生产力的理解至关重要。在实验室(以下称实验室)和田间条件下的大量研究表明,通过添加氮,植物的生长显着增加。但是,当我们在实验室和野外条件下进行N次加法实验之间的积分或比较结果时,存在差异。在这里,我们对来自139个田间实验和127个实验室实验的观察结果进行了荟萃分析,以确定它们在植物生长的N反应中的异同。总体而言,实验室(+ 63.1%)和田间(+ 22.2%)实验对氮对植物生物量的影响有三倍的差异。不同植物类别和植物组织之间的实验室-场差异的大小也有所不同。例如,在实验室中,比田间条件下更大的氮效应对于草本植物而言约为两倍,而对于木本植物而言则为四倍。此外,在实验室条件下,氮诱导的生物量增加更多地分配给了田间的地上部分,但均分配给了地上和地下的部分。我们进一步表明,这些差异共同归因于这两个实验条件下的差异性非生物因素(即环境条件和氮施用方法)和生物因素(即种间相互作用,年龄和功能类型)。这些发现强调,将实验室实验的结果转换为理解天然植物的N反应时,应更加注意。

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