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Just ten percent of the global terrestrial protected area network is structurally connected via intact land

机译:仅限全球陆地保护区网络的百分之几是通过完整的土地在结构上连接

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Land free of direct anthropogenic disturbance is considered essential for achieving biodiversity conservation outcomes but is rapidly eroding. In response, many nations are increasing their protected area (PA) estates, but little consideration is given to the context of the surrounding landscape. This is despite the fact that structural connectivity between PAs is critical in a changing climate and mandated by international conservation targets. Using a high-resolution assessment of human pressure, we show that while ~40% of the terrestrial planet is intact, only 9.7% of Earth’s terrestrial protected network can be considered structurally connected. On average, 11% of each country or territory’s PA estate can be considered connected. As the global community commits to bolder action on abating biodiversity loss, placement of future PAs will be critical, as will an increased focus on landscape-scale habitat retention and restoration efforts to ensure those important areas set aside for conservation outcomes will remain (or become) connected. The effectiveness of protected areas depends not only on whether they are intact, but also on whether they are mutually connected. Here the authors examine the structural connectivity of terrestrial protected areas globally, finding that less than 10% of the protected network can be considered connected.
机译:没有直接人体扰动的土地被认为是实现生物多样性保护成果,但正在迅速侵蚀。作为回应,许多国家正在增加受保护的区域(PA)遗产,但对周围景观的背景施加了很少的考虑因素。尽管PAS之间的结构连接在不断变化的气候和国际保护目标的授权方面是至关重要的。利用高分辨率的人力压力评估,我们表明,虽然〜40%的地球周球完好无损,但只有9.7%的地球的地面保护网络可以被认为是结构连接的。平均而言,每个国家/地区的PA庄园的11%都可以被视为联系。随着全球社会对减少生物多样性损失的更大胆的行动,将未来的PAS放置至关重要,随着景观规模的栖息地保留和恢复努力的增加,以确保为保护成果预留的重要领域将留下(或成为) 连接的。保护区的有效性不仅取决于它们是否完整,而且还取决于它们是否相互连接。在这里,作者将在全球范围内检查地面保护区域的结构性连接,发现可以考虑不到10%的受保护网络。

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