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Yield and Soil Carbon Sequestration in Grazed Pastures Sown with Two or Five Forage Species

机译:两种或五种牧草播种的放牧草地的产量和土壤碳固存

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摘要

Increasing plant species richness is often associated with an increase in productivity and associated ecosystem services such as soil C sequestration. Here we report on a 9-yr experiment to evaluate the forage production and C sequestration potential of grazed pastures sown to either a two-species cool-season grass-legume mixture or a five-species mixture of grasses, legumes, and a non-legume forb. We hypothesized that forage production and soil C sequestration would be greater in the five-species compared with the two-species mixture. We also evaluated the effects of rainfall and temperature on the difference in forage production between mixtures. When averaged across years, the five-species mixture produced 31% more forage biomass than the two-species mixture, and the difference between mixtures tended to be greater in wet than in dry summers (R2 = 0.42, P = 0.06). There was no relationship between growing season temperature and differences in biomass production. Soil C accumulation to 100 cm depth in the five-species mixture was 1.80 vs. 0.50 Mg haa?’1 yra?’1 for the two-species mixture (P = 0.15) with significant increases in the five-species mixture occurring at the 10 to 20 cm (P = 0.06) and 20 to 30 cm (P = 0.03) depths. Increased productivity in the five-species mixture persisted throughout the experiment despite changes in species composition that resulted in similar composition between the mixtures by the last 2 yr of the study. Increased soil C possibly had a positive feedback effect on forage production permitting the five-species mixture to out-yield the two-species mixture even after differences in species composition had largely disappeared.
机译:植物物种丰富度的提高通常与生产力的提高和相关的生态系统服务(例如固碳)有关。在这里,我们报告了一个为期9年的实验,以评估两种类型的凉季草-豆类混合物或五种草,豆类和非草种混合物中放牧的草场的牧草产量和碳固存潜力豆科植物forb。我们假设五种植物的草料生产和土壤固碳比两种植物的混合物要高。我们还评估了降雨和温度对混合物之间草料产量差异的影响。当按多年平均时,五种混合物产生的牧草生物量比两种物种多31%,并且在湿润情况下混合物之间的差异倾向于比在干燥的夏季更大(R2 = 0.42,P = 0.06)。生长季节的温度与生物量生产的差异之间没有关系。五种混合物中土壤C累积至100 cm深度为1.80 vs.两种混合物的0.50 Mg haa?'1 yra?'1(P = 0.15),在5种混合物中发生的五种混合物显着增加。 10至20厘米(P = 0.06)和20至30厘米(P = 0.03)深度。尽管物种组成发生了变化,导致在研究的最后2年中混合物之间的组成相似,但五种混合物在整个实验过程中仍保持着提高的生产率。土壤C的增加可能对草料生产产生积极的反馈作用,即使在物种组成的差异已基本​​消失后,五种混合物也能超过两种物种的产量。

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