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Grass and forbs respond differently to nitrogen addition: a meta-analysis of global grassland ecosystems

机译:草和Forbs对氮添加的反应不同:对全球草地生态系统的荟萃分析

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摘要

Nitrogen (N) deposition has increased globally and has profoundly influenced the structure and function of grasslands. Previous studies have discussed how N addition affects aboveground biomass (AGB), but the effects of N addition on the AGB of different functional groups in grasslands remain unclear. We conducted a meta-analysis to identify the responses of AGB and the AGB of grasses (AGBgrass) and forbs (AGBforb) to N addition across global grasslands. Our results showed that N addition significantly increased AGB and AGBgrass by 31 and 79%, respectively, but had no significant effect on AGBforb. The effects of N addition on AGB and AGBgrass increased with increasing N addition rates, but which on AGBforb decreased. Although study durations did not regulate the response ratio of N addition for AGB, which for AGBgrass increased and for AGBforb decreased with increasing study durations. Furthermore, the N addition response ratios for AGB and AGBgrass increased more strongly when the mean annual precipitation (MAP) was 300–600 mm but decreased with an increase in the mean annual temperature (MAT). AGBforb was only slightly affected by MAP and MAT. Our findings suggest that an acceleration of N deposition will increase grassland AGB by altering species composition.
机译:全球氮素沉积增加,并深刻影响了草原的结构和功能。先前的研究已经讨论了氮的添加如何影响地上生物量(AGB),但是目前尚不清楚氮的添加对草原不同功能群的AGB的影响。我们进行了荟萃分析,以确定全球草地上AGB和AGB草(AGBgrass)和Forbs(AGBforb)对氮添加的响应。我们的结果表明,氮的添加分别使AGB和AGBgrass分别增加31%和79%,但对AGBforb无明显影响。氮的添加量随氮添加量的增加而增加,对AGB和AGBgrass的影响增加,而对AGBforb的影响则减少。尽管研究持续时间并未调节AGB的氮添加响应率,但随着研究持续时间的增加,AGB禾本科草的添加量和AGBforb有所降低。此外,当年平均降水量(MAP)为300-600 mm时,AGB和AGBgrass的氮添加响应比增加更强烈,但随着年平均温度(MAT)的增加而降低。 AGBforb仅受到MAP和MAT的轻微影响。我们的发现表明,氮沉积的加速将通过改变物种组成而增加草地AGB。

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