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Grazing-induced changes in plant species composition affect plant and soil properties of grassland mesocosms

机译:放牧引起的植物物种组成变化影响草地中生代的植物和土壤特性

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Grazing-induced floristic changes in plant communities may accelerate or reduce plant and soil processes through changes in litter quality. Here, we intended to elucidate if the joint action of live and senescing plant tissue of palatable and non-palatable species differentially influences soil processes and properties. We conducted a 1-year experiment with mesocosms from a subhumid grassland. Mesocosms were monocultures of palatable or non-palatable species and a multispecific control. Palatable species included a legume and annual and perennial grasses, whereas non-palatable species included a perennial grass and annual and perennial forbs. Palatable monocultures showed greater soil mineral nitrogen, soil bacterial diversity, and lower soil pH than non-palatable monocultures. These differences were not accounted for by differences in plant biomass. The multispecific control treatment only exhibited greater shoot biomass than the monocultures, and lower root biomass than the palatable monocultures. Our results suggest that the whole (live + dead plant tissue) had a specific imprint on soil system even when variation was not very apparent in terms of plant biomass, and that this effect was associated with plant palatability to domestic large herbivores.
机译:放牧引起的植物群落植物区系变化可能会通过凋落物质量的变化加速或减少植物和土壤的进程。在这里,我们打算阐明可口和不可口物种的活体和衰老植物组织的联合作用是否会不同地影响土壤的过程和特性。我们对半湿润草原的中观进行了为期一年的实验。介壳膜是可口或不可口物种的单一培养物和多特异性对照。适口的物种包括豆科植物和一年生和多年生的草,而不可口的物种包括多年生的草以及一年生的和多年生的草。可口的单一培养物比不可口的单一培养物显示出更大的土壤矿质氮,土壤细菌多样性和较低的土壤pH。这些差异不能通过植物生物量的差异来解释。多特异性对照处理仅显示出比单培养物更高的芽生物量,并且比可口的单培养物展现出更低的根生物量。我们的结果表明,即使在植物生物量方面变化不是很明显的情况下,整个(活的和死的植物组织)在土壤系统上都有特定的印记,并且这种影响与植物对国内大型草食动物的适口性有关。

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