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Density may alter diversity-productivity relationships in experimental plant communities.

机译:密度可能会改变实验植物群落中的多样性-生产力关系。

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Contemporary biodiversity experiments, in which plant species richness is manipulated and aboveground productivity of the system measured, generally demonstrate that lowering plant species richness reduces productivity. However, we propose that community density may in part compensate for this reduction of productivity at low diversity. We conducted a factorial experiment in which plant functional group richness was held constant at 3, while plant species richness increased from 3 to 6 to 12 species and community density from 440 to 1050 to 2525 seedlings m-2. Response variables included density, evenness and above- and belowground biomass at harvest. The density gradient converged slightly during the course of the experiment due to ~10% mortality at the highest sowing density. Evenness measured in terms of aboveground biomass at harvest significantly declined with density, but the effect was weak. Overall, aboveground, belowground and total biomass increased significantly with species richness and community density. However, a significant interaction between species richness and community density occurred for both total and aboveground biomass, indicating that the diversity-productivity relationship was flatter at higher than at lower density. Thus, high species richness enabled low-density communities to reach productivity levels otherwise seen only at high density. The relative contributions of the three functional groups C3 (Abutilon theophrasti, Ambrosia artemisiifolia, Chenopodium album, Conyza canadensis, Ipomoea hederacea [Pharbitis hederacea], Poa annua, Plantago lanceolata and Bromus commutatus), C4 (Amaranthus retroflexus, Setaria glauca [S. pumila], S. faberi and S. italica) and nitrogen-fixers (Vicia cracca, Trifolium pratense and T. dubium) to aboveground biomass were less influenced by community density at high than at low species richness. We interpret the interaction effects between community density and species richness on community biomass by expanding findings about constant yield and size variation from monocultures to plant mixtures..
机译:当代生物多样性实验中,操纵植物物种丰富度并测量系统的地上生产力,通常证明降低植物物种丰富度会降低生产力。但是,我们建议社区密度可以部分弥补低多样性时生产力的下降。我们进行了一项析因实验,其中植物功能基团的丰富度保持不变,为3,而植物物种的丰富度从3种增加到6种到12种,群落密度从440到1050到2525苗m-2。响应变量包括收获时的密度,均匀度以及地上和地下生物量。由于在最高播种密度下约10%的死亡率,在实验过程中密度梯度略有收敛。收获时以地上生物量计的均匀度随密度显着下降,但效果较弱。总体而言,地上,地下和总生物量随物种丰富度和群落密度显着增加。然而,总生物量和地上生物量都发生了物种丰富度与群落密度之间的显着相互作用,这表明在较高密度下与较低密度下的多样性-生产力关系较为平坦。因此,高物种丰富度使低密度社区能够达到原本只能在高密度下才能看到的生产力水平。三个功能组的相对贡献(C3(Abutilon theophrasti,Ambrosia artemisiifolia,Chenopodium album,Conyza canadensis),Ipomoea hederacea [Pharbitis hederacea],Poa annua,Plantago lanceolata and Bromus commutatus),C4(Amaranthus retroflexus,Set。地上生物量的高密度群落对小地上链球菌和斜纹葡萄球菌以及固氮菌(野豌豆(Vicia cracca),p叶白三叶(Trifolium pratense)和杜氏烟草(T. dubium))的影响较小。我们通过扩大关于恒定产量和从单一栽培到植物混合物的大小变化的发现,来解释群落密度和物种丰富度对群落生物量之间的相互作用。

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