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Changes in fluvial habitat conditions across a disturbance continuum: Implications for salmon restoration.

机译:整个干扰连续区河流栖息地条件的变化:对鲑鱼恢复的影响。

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摘要

A spatially explicit watershed and riparian habitat model was developed for quantifying site characteristics of riparian habitats of the lower Cedar River, Washington. The spatial complexity and distribution of combined habitat and anthropogenic landscape features were used to define habitat "indices" of the relative quality of riparian habitats. Patches of contiguous grid cells were measured in terms of their locations, sizes, and relative degree of fragmentation to estimate riparian restoration opportunities in the watershed. One key area was impacted by a channel-damming landslide on February 28, 2001 when a magnitude 6.8 earthquake hit the region, causing the river to occupy an existing floodplain side channel. The channel and floodplain ecosystem responded rapidly until the channel's geomorphology settled into a short-term dynamic equilibrium according to LeChatelier's General Law. Large trees recruited to the channel facilitated lateral channel expansion as well as bed topographic variability. One year of pre-disturbance data was compared with three years of post-disturbance data in a spatially explicit analysis of the complexity of channel form and bed surface elevations. The landslide disturbance changed reach-scale habitat conditions and distributions of sockeye salmon (Oncorhynchus nerka ). Annual changes in river habitat conditions and spawning distributions before and after the disturbance were evaluated with an exhaustive CHAID (chi-squared automatic interaction detection model. Before the landslide, the spatial and temporal patterns of sockeye distributions were heavily influenced by spawning locations of parental generations. Sockeye densities were highest in the upper-most river reaches where anthropogenic influences were least apparent. After the landslide, habitat complexity and fish densities increased in the lower river reaches that were directly affected by the landslide disturbance. The CHAID model analyses indicate fluvial habitat complexity, river discharge characteristics, and the fish density of respective parent generations were significant (P < 0.001), and explained spawning distributions by reach. Analyses of how changes in habitat complexity influence salmon populations at the reach-scale, inform questions of the magnitude and intensity of disturbance necessary to restore habitat functions of river landscapes that are vital to restoring imperiled salmon populations.
机译:建立了空间明确的分水岭和河岸生境模型,以量化华盛顿州下雪松河河岸生境的站点特征。栖息地和人为景观特征相结合的空间复杂性和分布被用于定义河岸栖息地相对质量的栖息地“指标”。测量了连续网格单元的位置,大小和碎片的相对程度,以估计分水岭的河岸恢复机会。 2001年2月28日,一个关键区域受到了河道筑坝的滑坡的影响,当时6.8级地震袭击了该地区,导致该河占用了现有的洪泛区侧河道。河道和洪泛区生态系统迅速做出反应,直到河道的地貌形态根据LeChatelier的《一般定律》确定为短期动态平衡。募集到河道的大树有利于横向河道的扩展以及床的地形变化。在对通道形式和床面高程的复杂性进行空间显式分析时,将扰动前一年的数据与扰动后三年的数据进行了比较。滑坡扰动改变了红鲑鲑(Oncorhynchus nerka)的规模生境条件和分布。利用详尽的CHAID(卡方自动交互检测模型)评估了扰动前后河流栖息地状况和产卵分布的年度变化。在滑坡发生之前,红娘分布的时空分布受到父母代产卵位置的严重影响在人为影响最不明显的最上游河段,红眼密度最高;滑坡发生后,受滑坡干扰直接影响的下游河段,栖息地复杂性和鱼类密度增加; CHAID模型分析表明河流生境复杂性,河流排放特征和各个亲代的鱼类密度均很显着(P <0.001),并解释了河段的产卵量分布。栖息地复杂性变化如何影响河段鲑鱼种群和干扰的强度是恢复河流景观的栖息地功能所必需的,这对于恢复濒临灭绝的鲑鱼种群至关重要。

著录项

  • 作者

    Timm, Raymond K., II.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Biology Ecology.;Geomorphology.;Biology Conservation.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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