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Maximizing oyster-reef growth supports green infrastructure with accelerating sea-level rise

机译:最大限度地扩大牡蛎礁的生长,通过加速海平面上升来支持绿色基础设施

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Within intertidal communities, aerial exposure (emergence during the tidal cycle) generates strong vertical zonation patterns with distinct growth boundaries regulated by physiological and external stressors. Forecasted accelerations in sea-level rise (SLR) will shift the position of these critical boundaries in ways we cannot yet fully predict, but landward migration will be impaired by coastal development, amplifying the importance of foundation species’ ability to maintain their position relative to rising sea levels via vertical growth. Here we show the effects of emergence on vertical oyster-reef growth by determining the conditions at which intertidal reefs thrive and the sharp boundaries where reefs fail, which shift with changes in sea level. We found that oyster reef growth is unimodal relative to emergence, with greatest growth rates occurring between 20–40% exposure, and zero-growth boundaries at 10% and 55% exposures. Notably, along the lower growth boundary (10%), increased rates of SLR would outpace reef accretion, thereby reducing the depth range of substrate suitable for reef maintenance and formation, and exacerbating habitat loss along developed shorelines. Our results identify where, within intertidal areas, constructed or natural oyster reefs will persist and function best as green infrastructure to enhance coastal resiliency under conditions of accelerating SLR.
机译:在潮间带群落中,空中暴露(潮气周期出现)产生了强烈的垂直带状分布,其生境受到生理和外部压力源的调节。预计海平面上升(SLR)的加速将以我们尚无法完全预测的方式改变这些关键边界的位置,但沿海发展将损害陆上迁徙,这放大了基础物种相对于其维持其位置的能力的重要性。通过垂直增长使海平面上升。在这里,我们通过确定潮间礁繁盛的条件和礁石破裂的尖锐边界(随海平面变化而变化)来显示出牡蛎对垂直牡蛎礁生长的影响。我们发现牡蛎礁的生长相对于出现是单峰的,最大的生长率发生在20-40%的暴露之间,而零增长边界发生在10%和55%的暴露之间。值得注意的是,沿着较低的生长边界(10%),SLR的增加速率将超过礁石的积聚,从而减小了适合礁石维护和形成的基质的深度范围,并加剧了沿发达海岸线的生境丧失。我们的研究结果表明,在潮间带内,人造或天然牡蛎礁将在哪里生存并在绿色基础设施中发挥最佳作用,以在单反加速的条件下增强沿海弹性。

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