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Interannual variation in precipitation and other planting conditions impacts seedling establishment in sown plant communities

机译:降水和其他种植条件的年际变化影响播种植物群落的幼苗生长

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Ecological restoration can reverse biodiversity loss worldwide, yet restoration goals and outcomes vary widely, which limits this potential. Divergent restoration outcomes may stem from variation in conditions at the outset of restoration, but empirical evidence is lacking and typically confounded with site differences. Additionally, precipitation is usually cited as the source of this variation, although a wide range of conditions can vary annually. We tested for effects of planting year on seedling establishment by installing identical restorations in three different years. Within those years, we manipulated rainfall with rain-out shelters to disentangle the effects of precipitation from other annually variable conditions. Additionally, we tested whether increasing seed mix richness buffers against adverse planting conditions. For the first growing season after planting, we followed emergence and survival of sown prairie species and nonsown weed species to determine how planting year conditions influence an establishing plant community, if at all. We found that seedling establishment differed across planting years and precipitation treatments, and that varying emergence patterns by species led to differences in the composition of the first-year community. We also found significant variation in sown species establishment across years when precipitation was held constant, illustrating the previously overlooked role of nonprecipitation drivers on planting year effects. Higher seed mix richness did not consistently improve establishment of sown species under different planting conditions. This research provides important experimental evidence for effects of interannual variation in planting conditions on first-year establishment. Future work will examine how these initial changes affect longer-term assembly dynamics.
机译:生态恢复可以逆转全球范围内的生物多样性丧失,但是恢复的目标和结果差异很大,这限制了这一潜力。不同的修复结果可能源于修复开始时的状况变化,但是缺乏经验证据,并且通常与现场差异混淆。此外,通常认为降水是造成这种变化的原因,尽管各种条件每年都会变化。通过在三个不同的年份安装相同的修复体,我们测试了种植年限对幼苗生长的影响。在那些年中,我们利用防雨棚操纵了降雨,以消除降水与其他每年变化的条件的影响。此外,我们测试了增加种子混合料丰富度是否可以应对不利的种植条件。在播种后的第一个生长季节,我们跟踪播种的草原物种和非播种的杂草物种的出现和存活情况,以确定播种年份的条件如何影响建立的植物群落(如果有的话)。我们发现,在不同的种植年限和不同的降水处理方式下,苗木的建立也各不相同,并且不同物种的出苗方式导致第一年群落组成的差异。我们还发现,当降水保持恒定时,播种物种建立的显着变化贯穿多年,这说明了以前非降水驱动因素对播种年份影响的作用被忽略了。在不同种植条件下,较高的种子混合丰富度并不能持续改善播种的建立。该研究为种植条件年际变化对第一年生长期的影响提供了重要的实验证据。未来的工作将研究这些初始变化如何影响长期组装动力。

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