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Biological control of plant invaders: Regional patterns, field experiments, and structured population models

机译:植物入侵者的生物防治:区域模式,田间试验和结构化种群模型

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The traditional ways to design biological control systems for plant invaders include (in order of decreasing emphasis) introducing, augmenting, or conserving natural enemies. Manipulating consumer-resource relationships in this way (1) emphasizes top-down control of the invader by consumers rather than bottom-up control of the invader by limiting resources, and (2) contributes to a rising number of control organisms introduced to North America that is creating complexity, redundancy, and risk. New concepts and methods have started to transform the way biological control organisms are found and developed by (1) combining herbivore and resource limitation of plant population growth and (2) using targeted life-cycle disruption, which involves identifying plant life-cycle transitions that are both amenable to manipulation and influential on population growth, and then targeting these for control. To illustrate these developments, we outline an experimental and computational approach for measuring how the processes of disturbance, colonization, and organism interactions (plant competition and herbivory) manifest their influence on weed life cycles and population growth of ragwort Senecio jacobaea, a biennial or short-lived perennial herb. Manipulating these forces may lead to designs of biological control systems that are parsimonious, potent, and pose minimum risk to non-target organisms.
机译:设计用于植物入侵者的生物控制系统的传统方法包括(以减轻重点的方式)引入,扩大或保护天敌。以这种方式操纵消费者与资源的关系(1)强调由消费者自上而下控制入侵者,而不是通过限制资源自下而上地控制入侵者,并且(2)导致引入北美的控制生物数量增加这造成了复杂性,冗余和风险。新的概念和方法已经开始改变生物控制生物的发现和开发方式,方法是:(1)结合食草动物和植物种群增长的资源限制,(2)使用有针对性的生命周期破坏,其中包括确定植物生命周期的转变,既可以操纵,又可以影响人口增长,然后将其作为控制目标。为了说明这些进展,我们概述了一种实验和计算方法,用于测量干扰,定植和生物相互作用(植物竞争和草食)的过程如何显示其对每两年或短期的芦笋千里光杂草生命周期和种群增长的影响。多年生草本。操纵这些力可能会导致生物控制系统的设计简单,有效,并且对非目标生物的危害最小。

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