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Cover crop mixture diversity biomass productivity weed suppression and stability

机译:涵盖作物混合物的多样性生物量生产力杂草抑制和稳定性

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摘要

The diversity-productivity, diversity-invasibility, and diversity-stability hypotheses propose that increasing species diversity should lead, respectively, to increased average biomass productivity, invasion resistance, and stability. We tested these three hypotheses in the context of cover crop mixtures, evaluating the effects of increasing cover crop mixture diversity on aboveground biomass, weed suppression, and biomass stability. Twenty to forty cover crop treatments were replicated three or four times at eleven sites using eighteen species representing three cover crop species each from six pre-defined functional groups: cool-season grasses, cool-season legumes, cool-season brassicas, warm-season grasses, warm-season legumes, and warm-season broadleaves. Each species was seeded as a pure stand, and the most diverse treatment contained all eighteen species. Remaining treatments included treatments representing intermediate levels of cover crop species and functional richness and a no cover crop control. Cover crop seeding dates ranged from late July to late September with both cover crop and weed aboveground biomass being sampled prior to winterkill. Stability was assessed by evaluating the variability in cover crop biomass for each treatment across plots within each site. While increasing cover crop mixture diversity was associated with increased average aboveground biomass, we assert that this was the result of the average biomass of the pure stands being drawn down by low biomass species rather than due to niche complementarity or increased resource use efficiency. At no site did the highest biomass mixture produce more than the highest biomass pure stand. Furthermore, while increases in cover crop mixture diversity were correlated with increases in weed suppression and biomass stability, we argue that this was largely the result of diversity co-varying with aboveground biomass, and that differences in aboveground biomass rather than differences in diversity drove the differences observed in weed suppression and stability.
机译:多样性生产力,多样性入侵性和多样性稳定性假说提出,物种多样性的增加应分别导致平均生物量生产力,入侵抗性和稳定性的增加。我们在覆盖作物混合物的背景下测试了这三个假设,评估了增加覆盖作物混合物多样性对地上生物量,杂草抑制和生物量稳定性的影响。在11个地点重复20到40次覆盖作物的处理,重复处理三到四次,使用代表六个预定功能组的三种覆盖作物物种的18种植物:凉季草,凉季豆类,凉季芸苔,暖季草,暖季豆类和暖季阔叶植物。每个物种的种子都是纯种,最多样化的处理方法包括所有18个物种。其余的处理包括代表中等水平的覆盖作物物种和功能丰富性以及无覆盖作物控制的处理。覆盖作物的播种日期为7月下旬至9月下旬,在冬季杀灭之前对覆盖作物和杂草地上生物量进行采样。通过评估每个站点内各个地块上每种处理的覆盖作物生物量的变异性来评估稳定性。虽然覆盖作物混合物多样性的增加与平均地上生物量的增加有关,但我们认为这是纯林分的平均生物量被低生物量物种吸收的结果,而不是由于生态位互补性或资源利用效率的提高。在最高的生物量混合物中,没有任何一个地方比最高的生物量纯林分产生更多的产量。此外,虽然覆盖作物混合物多样性的增加与杂草抑制和生物量稳定性的增加相关,但我们认为这主要是多样性与地上生物量共同变化的结果,地上生物量的差异而不是多样性的差异驱动了地表生物量的增加。杂草抑制和稳定性方面的差异。

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