Woody plant reinvasion shortens the lifespan of grassland restoration treatments

IF 8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Journal of Environmental Management Pub Date : 2025-02-01 DOI:10.1016/j.jenvman.2024.124020
Dillon T. Fogarty , Michele Beadle , Craig R. Allen , Christine Bielski , Dirac Twidwell
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Abstract

An important question in restoration ecology is whether restored ecological regimes are more vulnerable to transitions back to a degraded state. In woody-invaded grasslands, high-intensity fire can collapse woody plant communities and induce a shift back to a grass-dominated regime. Yet, legacies from woody-dominated regimes often persist and it remains unclear whether restored regimes are at heightened vulnerability to reinvasion. In this study, we utilize a 17-year history of fire-based restoration in Nebraska's Loess Canyons Experimental Landscape to determine whether restored grassland regimes experience faster rates of Juniperus virginiana (eastern redcedar) reinvasion compared to the initial invasion process in adjacent grasslands. In addition, we examine whether reinvasion and invasion patterns are clearly differentiated based on former ecotonal boundaries between grassland and woodland regimes. Our results show that J. virginiana reinvasion of restored grassland regimes outpaced the initial invasion process in adjacent grasslands, providing evidence that restored grassland regimes are more vulnerable to transitions back to woody dominance. J. virginiana seedlings established sooner and increased faster in density and cover during reinvasion compared to the initial invasion process. Seedlings established 1-year post-fire in restored grassland regimes compared to 14-years post-fire in adjacent grasslands that were >40 m from the former grassland-woodland boundary. Reinvasion was initially easy to differentiate from invasion based on former ecotonal boundaries between grassland and woodland; however, reestablished juniper woodlands eventually began to expand into adjacent grasslands. Our findings demonstrate clear differences between reinvasion and invasion and highlight the need for management frameworks that explicitly account for reinvasion.
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木本植物的再入侵缩短了草地恢复处理的寿命。
恢复生态学中的一个重要问题是,恢复的生态制度是否更容易过渡到退化状态。在树木入侵的草原上,高强度的火灾可以使木本植物群落崩溃,并诱导其回到以草为主的状态。然而,由木材统治的政权留下的遗产往往会持续存在,目前尚不清楚恢复的政权是否更容易受到再次入侵。在本研究中,我们利用内布拉斯加州黄土峡谷实验景观17年的火灾恢复历史来确定恢复的草地制度是否比邻近草地的初始入侵过程更快地经历了弗吉尼亚杜松(东部红杉)的再入侵速度。此外,我们还研究了再入侵和入侵模式是否在草地和林地的原生态边界上有明显的区分。研究结果表明,恢复后的维吉尼亚树再次入侵的速度超过了邻近草地的初始入侵速度,这表明恢复后的草地更容易向木质优势过渡。与初始入侵过程相比,再入侵过程中维吉尼亚树苗建立更快,密度和覆盖增加更快。与火灾发生后14年,距离原草地-林地边界约40 m的相邻草地相比,恢复草地火灾后1年的幼苗成活率较高。再入侵最初很容易与基于原草地和林地边界的入侵区分;然而,重建的杜松林地最终开始扩展到邻近的草原。我们的研究结果显示了再入侵和入侵之间的明显差异,并强调了明确解释再入侵的管理框架的必要性。
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来源期刊
Journal of Environmental Management
Journal of Environmental Management 环境科学-环境科学
CiteScore
13.70
自引率
5.70%
发文量
2477
审稿时长
84 days
期刊介绍: The Journal of Environmental Management is a journal for the publication of peer reviewed, original research for all aspects of management and the managed use of the environment, both natural and man-made.Critical review articles are also welcome; submission of these is strongly encouraged.
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