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Egg load dynamics and the risk of egg and time limitation experienced by an aphid parasitoid in the field

机译:田间蚜虫寄生的卵负荷动态以及卵和时间限制的风险

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AbstractInsect parasitoids and herbivores must balance the risk of egg limitation and time limitation in order to maximize reproductive success. Egg and time limitation are mediated by oviposition and egg maturation rates as well as by starvation risk and other determinants of adult lifespan. Here, we assessed egg load and nutritional state in the soybean aphid parasitoid Binodoxys communis under field conditions to estimate its risk of becoming either egg- or time-limited. The majority of female B. communis showed no signs of egg limitation. Experimental field manipulations of B. communis females suggested that an average of 4–8 eggs were matured per hour over the course of a day. Regardless, egg loads remained constant over the course of the day at approximately 80 eggs, suggesting that egg maturation compensates for oviposition. This is the first case of such “egg load buffering” documented for a parasitoid in the field. Despite this buffering, egg loads dropped slightly with increasing host (aphid) density. This suggests that egg limitation could occur at very high host densities as experienced in outbreak years in some locations in the Midwestern USA. Biochemical analyses of sugar profiles showed that parasitoids fed upon sugar in the field at a remarkably high rate. Time limitation through starvation thus seems to be very low and aphid honeydew is most likely a source of dietary sugar for these parasitoids. This latter supposition is supported by the fact that body sugar levels increase with host (aphid) density. Together, these results suggest that fecundity of B. communis benefits from both dynamic egg maturation strategies and sugar-feeding.
机译:摘要昆虫的拟寄生虫和草食动物必须平衡限制卵子的风险和限制时间,以最大程度地提高繁殖成功率。产卵和时间限制由产卵和卵成熟率以及饥饿风险和成年寿命的其他决定因素介导。在这里,我们评估了田间条件下大豆蚜虫类寄生虫Binodoxys communis的鸡蛋负荷和营养状况,以估计其成为鸡蛋或时间限制的风险。大多数雌性B.communis均未显示卵子受限制的迹象。对野双歧夜蛾雌性进行的野外实验表明,一天中平均每小时每小时成熟4至8个卵。无论如何,在一天的过程中,大约80个鸡蛋的鸡蛋负载量保持恒定,这表明鸡蛋成熟可以补偿产卵。这是在现场针对寄生虫记录的这种“鸡蛋负载缓冲”的第一种情况。尽管有这种缓冲作用,但随着寄主(蚜虫)密度的增加,鸡蛋的负荷也略有下降。这表明,在美国中西部某些地区,在爆发年份经历的很高的寄主密度下,可能会发生卵子限制。糖分布图的生化分析表明,寄生虫以极高的速度在田间以糖为食。因此,由于饥饿造成的时间限制非常低,蚜虫蜜露最有可能是这些寄生虫的饮食糖。体内糖水平随宿主(蚜虫)密度增加而增加的事实支持了后一种假设。总之,这些结果表明,动卵成熟策略和食糖都能使B.communis的繁殖力受益。

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