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首页> 外文期刊>Australian Journal of Zoology >Spatial trade-offs in the digestive and reproductive systems of grape phylloxera. (Special Issue: Nutritional ecology: patterns and processes.)
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Spatial trade-offs in the digestive and reproductive systems of grape phylloxera. (Special Issue: Nutritional ecology: patterns and processes.)

机译:葡萄根瘤菌消化系统和生殖系统的空间平衡。 (特刊:营养生态学:模式和过程。)

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摘要

Trade-offs between reproduction and other energy-requiring activities are present in insects. However, feeding and reproduction are not often thought to be trade-offs, although in small insects space may be limiting for both ingestion of food and egg development. This study characterised the structure of the digestive system of radicicolae Daktulosphaira vitifoliae (Hemiptera: Phylloxeridae) to investigate how feeding and egg development occur in this species. Using light and electron microscopy, the midgut of D. vitifoliae was observed to be composed of anterior and posterior regions, separated by a hindgut connection. The midgut is compressed during the development of parthenogenetically produced eggs in adults; individual eggs are ~30% of the adult length and in volume internally occupy 3-5% of the body cavity. The midgut posterior chamber is suggested to be essential for the continual supply of energy during periods of reduced food intake. The presence of the hindgut and an anal opening indicated that waste excretion through the anus was physiologically possible, although honeydew excretion was not observed. The structure of the digestive system of radicicolae D. vitifoliae is atypical, containing adaptations that may assist the survival of the monophagous insect during dispersal events to a new Vitis food source.
机译:昆虫存在繁殖与其他需要能量的活动之间的权衡。然而,尽管在小昆虫中,空间的摄取和卵的发育都可能受到限制,但喂养和繁殖通常不被认为是权衡取舍。这项研究的特点是萝卜ci(半翅目:Phylloxeridae)的消化系统的结构,以研究该物种如何发生摄食和卵子发育。使用光镜和电子显微镜,观察中肠。观察到vitifoliae由前部和后部区域组成,并由后肠连接隔开。在成虫孤雌卵发育过程中,中肠受压;单个卵约占成年蛋长度的30%,内部占卵腔的3-5%。建议中肠后房对于减少食物摄入期间的持续能量供应至关重要。后肠和肛门开口的存在表明,尽管未观察到蜜露的排泄,但从生理上可能会通过肛门排泄废物。萝卜丝消化系统的结构。 vitifoliae 是非典型的,其适应性可能有助于单食性昆虫在向新的 食物来源扩散事件中的生存。

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