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在种群爆发期间,食叶昆虫的免疫防御与诱导的植物防御相互作用。

Defoliating insect immune defense interacts with induced plant defense during a population outbreak.

作者信息

Kapari Lauri, Haukioja Erkki, Rantala Markus J, Ruuhola Teija

机构信息

Section of Ecology, Department of Biology, University of Turku, Finland.

出版信息

Ecology. 2006 Feb;87(2):291-6. doi: 10.1890/05-0362.

Abstract

During population outbreaks, top-down and bottom-up factors are unable to control defoliator numbers. To our knowledge, details of biotic interactions leading to increased population density have not been studied during real population outbreaks. We experimentally assessed the strength of plant defenses and of insect immunocompetence, assumed to contribute to active insect resistance against parasitoids and pathogens, in the geometrid Epirrita autumnata during a steep increase in population density. We demonstrated rapid (same-season) induced resistance in the foliage of its host, mountain birch. The response was systemic, spreading throughout the tree, and retarded larval growth rate by approximately 10%. On the other hand, no direct delayed carry-over effects were found in the next season in larval growth rate, mortality, or pupal mass. Larval damage to a tree during the previous year, however, significantly (by approximately 13%) accelerated the advance of the immune response (measured as melanization of an implant inserted into the pupal hemocoel). The encapsulation rate correlated positively with larval mortality in trees in which larvae had been introduced the previous year, but not in control trees. Both of these observations suggest that induced plant defense was associated with an increased insect immunocompetence during the population increase.

摘要

在虫口爆发期间,自上而下和自下而上的因素都无法控制食叶害虫的数量。据我们所知,在实际的虫口爆发期间,导致种群密度增加的生物相互作用的细节尚未得到研究。我们通过实验评估了在种群密度急剧增加期间,尺蛾Epirrita autumnata中植物防御和昆虫免疫能力的强度,假设这些因素有助于昆虫对寄生蜂和病原体产生主动抗性。我们证明了其寄主山桦的叶片存在快速(同季节)诱导抗性。这种反应是系统性的,会扩散到整棵树,并使幼虫生长速率降低约10%。另一方面,在下一季中,未发现幼虫生长速率、死亡率或蛹重存在直接的延迟遗留效应。然而,前一年幼虫对树木造成的损害显著(约13%)加速了免疫反应的进程(通过插入蛹血腔的植入物黑化来衡量)。在前一年引入幼虫的树木中,包囊化率与幼虫死亡率呈正相关,但在对照树木中并非如此。这两个观察结果都表明,在种群增长期间,诱导植物防御与昆虫免疫能力的增强有关。

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