首页> 外文期刊>Ecosphere >Migration efficiency sustains connectivity across agroecological networks supporting sandhill crane migration
【24h】

Migration efficiency sustains connectivity across agroecological networks supporting sandhill crane migration

机译:迁移效率维持支持Sandhill Crane迁移的农业生态网络的连接

获取原文
           

摘要

Preserving avian flyway connectivity has long been challenged by our capacity to meaningfully quantify continental habitat dynamics and bird movements at temporal and spatial scales underlying long‐distance migrations. Waterbirds migrating hundreds or thousands of kilometers depend on networks of wetland stopover sites to rest and refuel. Entire populations may rely on discrete wetland habitats, particularly in arid landscapes where the loss of limited stopover options can have disproportionately high impacts on migratory cost. Here, we examine flyway connectivity in water‐limited ecosystems of western North America using 108 GPS tagged greater sandhill cranes. Bird movements were used to reconstruct wetland stopover networks across three geographically unique sub‐populations spanning 12 U.S.–Mexican states and Canadian provinces. Networks were monitored with remote sensing to identify long‐term (1988–2019) trends in wetland and agricultural resources supporting migration and evaluated using network theory and centrality metrics as a measure of stopover site importance to flyway connectivity. Sandhill crane space use was analyzed in stopover locations to identify important ownership and landscape factors structuring bird distributions. Migratory efficiency was the primary mechanism underpinning network function. A small number of key stopover sites important to minimizing movement cost between summering and wintering locations were essential to preserving flyway connectivity. Localized efficiencies were apparent in stopover landscapes given prioritization of space use by birds where the proximity of agricultural food resources and flooded wetlands minimized daily movements. Model depictions showing wetland declines from 16% to 18% likely reflect a new normal in landscape drying that could decouple agriculture–waterbird relationships as water scarcity intensifies. Sustaining network resilience will require conservation strategies to balance water allocations preserving agricultural and wetlands on private lands that accounted for 67–96% of habitat use. Study outcomes provide new perspectives of agroecological relationships supporting continental waterbird migration needed to prioritize conservation of landscapes vital to maintaining flyway connectivity.
机译:维护禽流路连接长期以来,我们的能力已经有意义地量化大陆栖息地动力学和鸟儿在潜在的长距离迁移的空间和空间鳞片上的挑战。 Waterbirds迁移数百或数千公里依赖于湿地覆盖地点的网络休息和加油。整个人口可能依赖离散的湿地栖息地,特别是在干旱的景观中,丢失有限的中断选择可能对迁徙成本产生不成比例的影响。在这里,我们使用108个GPS标记的大型Sandhill起重机检查西北美国的水有限的生态系统中的涌通道连接。鸟类运动被用于在三个地理上独特的子人群中重建湿地遥远网络,跨越12个美国墨西哥国家和加拿大省。通过遥感监测网络,以确定湿地和农业资源的长期(1988-2019)趋势,支持迁移,并使用网络理论和中心度量评估,作为遥远的航线连接的衡量空间连接。在中途停留位置分析了Sandhill Crane空间使用,以确定构建鸟类分布的重要所有权和景观因素。迁移效率是基于网络功能的主要机制。少数关键的封锁网站,以最大限度地减少峰值和越冬位置之间的运动成本对于保持飞行率连接至关重要。局部效率在僻静的景观中显而易见,因为农业食品资源和洪水湿地靠近农业粮食资源和洪水最小化的日常运动,所以在鸟类的优先排序。显示湿地的模型描绘从16%下降到18%可能反映了景观干燥中的新正常,这可能将农业 - 水鸟关系解耦,因为水资源稀缺加剧。维持网络恢复力将需要保护策略,以平衡保存农业和湿地的水分配,私人土地上占栖息地使用的67-96%。研究结果提供了支持大陆水鸟迁移所需的农业生态关系的新观点,以优先考虑维持航路连接至关重要的景观。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号