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代谢或行为:解释蚜虫在一年生黑麦草(多花黑麦草)中产生生物碱的真菌内生菌上的表现。

Metabolism or behavior: explaining the performance of aphids on alkaloid-producing fungal endophytes in annual ryegrass (Lolium multiflorum).

作者信息

Bastias Daniel A, Ueno Andrea C, Machado Assefh Cristina R, Alvarez Adriana E, Young Carolyn A, Gundel Pedro E

机构信息

IFEVA, Consejo Nacional de Investigaciones Científicas y Técnicas, Universidad de Buenos Aires, Av. San Martín 4453, C1417DSE, Buenos Aires, Argentina.

CONICET-CCT Salta, Avda. Bolivia 5150, A4408FVY, Salta, Argentina.

出版信息

Oecologia. 2017 Oct;185(2):245-256. doi: 10.1007/s00442-017-3940-2. Epub 2017 Sep 6.

DOI:10.1007/s00442-017-3940-2
PMID:28879573
Abstract

Plant-herbivore interactions are often mediated by plant microorganisms, and the "defensive mutualism" of epichloid fungal endophytes of grasses is an example. These endophytes synthesize bioactive alkaloids that generally have detrimental effects on the performance of insect herbivores, but the underlying mechanisms are not well understood. Our objective was to determine whether changes in the physiology and/or behavior of aphids explain the changes in performance of insects feeding on endophytic plants. We studied the interaction between the aphid Rhopalosiphum padi and the annual ryegrass Lolium multiflorum symbiotic (E+) or not symbiotic (E-) with the fungus Epichloë occultans that can synthesize loline alkaloids. We hypothesized that aphids feeding on E+ plants have higher energetic demands for detoxification of fungal alkaloids, thereby negatively impacting the individual performance, population growth, and structure. Aphids growing on E+ plants had lower values in morphometric and functional variables of individual performance, displayed lower birth rate, smaller population size, and dramatic structural changes. However, aphids exhibited lower values of standard metabolic rate (SMR) on E+ plants, which suggests no high costs of detoxification. Behavioral variables during the first 8 h of feeding showed that aphids did not change the phloem sap ingestion with the presence of fungal endophytes. We hypothesize that aphids may maintain phloem sap ingestion according to their fungal alkaloid tolerance capacity. In other words, when alkaloid concentrations overcome tolerance threshold, ingestion of phloem should decrease, which may explain the observed lower values of SMR in E+ feeding aphids.

摘要

植物与食草动物之间的相互作用通常由植物微生物介导,禾本科植物内生真菌的“防御性共生”就是一个例子。这些内生真菌合成的生物活性生物碱通常对昆虫食草动物的表现有不利影响,但其潜在机制尚不清楚。我们的目标是确定蚜虫生理和/或行为的变化是否能解释取食内生植物的昆虫表现的变化。我们研究了蚜虫麦二叉蚜与一年生黑麦草多花黑麦草之间的相互作用,该黑麦草与能合成洛林生物碱的隐匿内脐蠕孢菌共生(E+)或不共生(E-)。我们假设取食E+植物的蚜虫对真菌生物碱解毒有更高的能量需求,从而对个体表现、种群增长和结构产生负面影响。在E+植物上生长的蚜虫在个体表现的形态测量和功能变量上的值较低,出生率较低,种群规模较小,且结构发生显著变化。然而,在E+植物上的蚜虫标准代谢率(SMR)值较低,这表明解毒成本不高。取食前8小时的行为变量表明,蚜虫在有真菌内生菌存在的情况下不会改变韧皮部汁液的摄取量。我们假设蚜虫可能根据其对真菌生物碱的耐受能力来维持韧皮部汁液的摄取量。换句话说,当生物碱浓度超过耐受阈值时,韧皮部的摄取量应该会减少,这可能解释了在E+植物上取食的蚜虫中观察到的较低SMR值。

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