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与滞育期科罗拉多马铃薯甲虫(Leptinotarsa decemlineata)气体交换模式相关的鞘翅下腔开闭节律

The opening-closing rhythms of the subelytral cavity associated with gas exchange patterns in diapausing Colorado potato beetle, Leptinotarsa decemlineata.

作者信息

Kuusik Aare, Jõgar Katrin, Metspalu Luule, Ploomi Angela, Merivee Enno, Must Anne, Williams Ingrid H, Hiiesaar Külli, Sibul Ivar, Mänd Marika

机构信息

Department of Plant Protection, Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Kreutzwaldi 1, Tartu 51014, Estonia.

Department of Plant Protection, Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Kreutzwaldi 1, Tartu 51014, Estonia

出版信息

J Exp Biol. 2016 Nov 1;219(Pt 21):3412-3419. doi: 10.1242/jeb.142489. Epub 2016 Sep 8.

Abstract

The opening-closing rhythms of the subelytral cavity and associated gas exchange patterns were monitored in diapausing Leptinotarsa decemlineata beetles. Measurements were made by means of a flow-through CO analyser and a coulometric respirometer. Under the elytra of these beetles there is a more or less tightly enclosed space, the subelytral cavity (SEC). When the cavity was tightly closed, air pressure inside was sub-atmospheric, as a result of oxygen uptake into the tracheae by the beetle. In about half of the beetles, regular opening-closing rhythms of the SEC were observed visually and also recorded; these beetles displayed a discontinuous gas exchange pattern. The SEC opened at the start of the CO burst and was immediately closed. On opening, a rapid passive suction inflow of atmospheric air into the SEC occurred, recorded coulometrically as a sharp upward peak. As the CO burst lasted beyond the closure of the SEC, we suggest that most of the CO was expelled through the mesothoracic spiracles. In the remaining beetles, the SEC was continually semi-open, and cyclic gas exchange was exhibited. The locking mechanisms and structures between the elytra and between the elytra and the body were examined under a stereomicroscope and by means of microphotography. We conclude that at least some of the L. decemlineata diapausing beetles were able to close their subelytral cavity tightly, and that the cavity then served as a water-saving device.

摘要

对处于滞育期的马铃薯甲虫的鞘下腔开闭节律及相关气体交换模式进行了监测。测量是通过流通式一氧化碳分析仪和库仑计呼吸仪进行的。在这些甲虫的鞘翅下有一个或多或少紧密封闭的空间,即鞘下腔(SEC)。当腔紧密关闭时,由于甲虫将氧气吸入气管,腔内气压低于大气压。在大约一半的甲虫中,肉眼观察到并记录了鞘下腔有规律的开闭节律;这些甲虫表现出不连续的气体交换模式。鞘下腔在一氧化碳爆发开始时打开,然后立即关闭。打开时,大气中的空气迅速被动吸入鞘下腔,库仑计记录为一个尖锐的向上峰值。由于一氧化碳爆发持续到鞘下腔关闭之后,我们认为大部分一氧化碳是通过中胸气门排出的。在其余的甲虫中,鞘下腔持续半开放,并呈现出周期性气体交换。在体视显微镜下并借助显微摄影检查了鞘翅之间以及鞘翅与身体之间的锁定机制和结构。我们得出结论,至少一些处于滞育期的马铃薯甲虫能够紧密关闭其鞘下腔,并且该腔随后起到了节水装置的作用。

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