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Responses of plant productivity and soil nutrient concentrations to different alpine grassland degradation levels

机译:植物生产力和土壤养分浓度对不同高寒草地退化水平的响应

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摘要

Although grassland degradation simultaneously affects plant productivity and soil nutrient concentrations, the relationship between plant productivity and soil nutrient concentrations during the process of grassland degradation is not yet well documented. A 4-year survey in the Qinghai-Tibetan Plateau was conducted to simultaneously investigate the relationships between plant productivity and soil nutrient concentrations in an alpine grassland at an overall degradation level and individual degradation levels. Our results showed that the total plant, sedge, and forb biomasses decreased, whereas the grass and legume biomasses first increased and then decreased as the level of alpine grassland degradation increased. Soil organic carbon (C), total nitrogen (N), total phosphorus (P), available N, and available P concentrations also decreased with the increase in degradation level. Our results also showed that plant productivity was positively correlated with soil nutrient concentrations (soil organic C, total T, total P, available N, available P) at an overall degradation level, whereas plant productivity was positively correlated with only the soil organic C concentration at each degradation level. Our findings suggested that the alpine grassland degradation conditions had different effects on the plant productivity of four functional groups (sedges, grasses, legumes, forbs) and affected the relationship between plant productivity and soil nutrient concentrations.
机译:尽管草地退化同时影响植物的生产力和土壤养分浓度,但是在草地退化过程中植物生产力和土壤养分浓度之间的关系尚未得到充分记载。在青藏高原进行了为期四年的调查,以同时调查总体退化水平和个体退化水平下高寒草原植物生产力与土壤养分浓度之间的关系。我们的结果表明,总植物,莎草和Forb的生物量减少,而草和豆类的生物量先增加,然后随着高山草地退化程度的增加而减少。土壤有机碳(C),总氮(N),总磷(P),有效氮和有效磷浓度也随着降解水平的提高而降低。我们的结果还表明,在整体退化水平下,植物生产力与土壤养分浓度(土壤有机碳,总T,总磷,有效氮,有效磷)呈正相关,而植物生产力仅与土壤有机碳浓度呈正相关。在每个降级级别。我们的研究结果表明,高寒草地退化条件对四个功能组(莎草,草,豆类,forbs)的植物生产力具有不同的影响,并影响植物生产力与土壤养分浓度之间的关系。

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