火后除草剂的使用减少了阿特沃特草原鸡栖息地的马卡尼玫瑰

IF 2.4 3区 环境科学与生态学 Q2 ECOLOGY
Catherine V. Lechnar , George K. Gyan , Robert Puckett , Robert D. Cox , Blake A. Grisham , Nathan S. Gill
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引用次数: 0

摘要

沿海草原的规定火维持了生境多样性,改善了养分循环,减少了入侵物种的影响。然而,一些入侵物种在受到干扰后茁壮成长,需要更细致的管理策略。阿特沃特山鸡国家野生动物保护区的管理人员使用规定的火和除草剂的组合来控制马卡尼玫瑰(Rosa bracteata)的蔓延。然而,文献表明,这种策略的效果并不一致,可能是由于除草剂和焚烧处理的季节时间和频率的差异。我们通过监测160个 × 100 m2带状样带,比较了除草剂施用时间与规定火灾的关系及其对马卡尼玫瑰的影响,这些样带分布在四种处理策略中:火灾前除草剂、火灾后除草剂、两者都使用除草剂或不使用除草剂(仅使用火灾)。在2021年12月至2022年1月的规定火灾之后进行了火前除草剂的施用,并在2022年4月至5月进行了火后除草剂的施用。我们进行了植物调查,并在每次处理之间和之后测量了马戛尔尼月季的密度和覆盖度。处理结束后,采用扫网法采集节肢动物,并对节肢动物进行目级鉴定。我们还用诱饵采集了蚂蚁,随后在显微镜下对红火蚁进行了鉴定和计数。我们发现,在火灾前后施用除草剂的样带中,马戛尔尼玫瑰的密度下降了约40%,盖度下降了5倍,而无论除草剂处理如何,植物和节肢动物的多样性都没有变化。规定的火灾和除草剂应用是现代沿海草原管理的基本工具,但应考虑这些工具可能组合的不同方式的细微差别,以优化入侵物种控制,同时限制不良影响。在本研究中,马戛尔尼玫瑰的减少最为显著,而植物和节肢动物的多样性则采用了不同于大多数常见做法的火与除草剂结合策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Postfire Herbicide Application Reduces Macartney Rose in Attwater's Prairie-Chicken Habitat
Prescribed fire in coastal prairies maintains habitat diversity, improves nutrient cycling, and reduces impacts of invasive species. However, some invasive species thrive after disturbance, necessitating more nuanced management strategies. Managers in the Attwater Prairie Chicken National Wildlife Refuge use combinations of prescribed fire and herbicide to control the spread of Macartney rose (Rosa bracteata). However, literature suggests that the efficacy of such a strategy has been inconsistent, perhaps owing to differences in the seasonal timing and frequency of herbicide and burning treatments. We compared the timing of herbicide applications in relation to prescribed fire and their effects on Macartney rose by monitoring 160  ×  100 m2 belt transects distributed among four categories of treatment strategy: prefire herbicide, postfire herbicide, both, or no herbicide (fire only). Prefire herbicide applications were conducted followed by prescribed fires in December 2021–January 2022, and postfire herbicide was applied in April–May 2022. We conducted plant surveys and measured Macartney rose density and cover in between and after each treatment. After all treatments, we collected arthropods by sweep netting and identified them to the order level. We also baited and collected ants and later identified and counted red imported fire ants under a microscope. We found that Macartney rose density declined by ∼40% and cover exhibited a five-fold decrease in transects that received herbicide both before and after fire, whereas plant and arthropod diversity were unchanged regardless of herbicide treatment. Prescribed fire and herbicide application are essential tools for modern coastal prairie management, but nuances regarding the different ways these tools might be combined should be considered to optimize invasive species control while limiting undesirable effects. In the case presented in this study, Macartney rose was most significantly reduced, and plant and arthropod diversity were maintained using strategies that combined fire and herbicide differently than most common practice.
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来源期刊
Rangeland Ecology & Management
Rangeland Ecology & Management 农林科学-环境科学
CiteScore
4.60
自引率
13.00%
发文量
87
审稿时长
12-24 weeks
期刊介绍: Rangeland Ecology & Management publishes all topics-including ecology, management, socioeconomic and policy-pertaining to global rangelands. The journal''s mission is to inform academics, ecosystem managers and policy makers of science-based information to promote sound rangeland stewardship. Author submissions are published in five manuscript categories: original research papers, high-profile forum topics, concept syntheses, as well as research and technical notes. Rangelands represent approximately 50% of the Earth''s land area and provision multiple ecosystem services for large human populations. This expansive and diverse land area functions as coupled human-ecological systems. Knowledge of both social and biophysical system components and their interactions represent the foundation for informed rangeland stewardship. Rangeland Ecology & Management uniquely integrates information from multiple system components to address current and pending challenges confronting global rangelands.
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