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Functional anatomy of the hypopharynx and the salivary pump in the feeding apparatus of the assassin bug Rhodnius prolixus (Reduviidae, Heteroptera)

机译:刺客臭虫Rhodnius prolixus(Reduviidae,Heteroptera)的进食装置中的下咽和唾液泵的功能解剖

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Focussing on the blood-feeding reduviid Rhodnius prolixus, we investigated the structure and function of the hypopharynx in (1) conducting the saliva towards the mouthparts and (2) bringing together the salivary pump and the stylets to ensure the difficult task of supplying the two closed antidromic streams of blood and saliva, while allowing the mouthparts to be moved forth and back during the feeding process. The distal apex of the hypopharynx forms a needle-like structure that is X-shaped in cross section. It arranges the interlocking of the maxillae in a manner resembling the fixed slider of a zip-lock. Further proximal, the hypopharynx extends into the maxillary food channel as a wide tongue. The salivary pump possesses two separate efferent ducts. The dorsal duct originates in the retrograde angle of the cupula (part of the salivarium) and conducts saliva directly into the maxillary salivary channel. The ventral duct originates at the distal opening of the cupula. It extends into a bag, the distal opening of which can be closed by a ventral bolster-like cuticle and opened by muscles. We show for the first time for heteropteran mouthparts that the saliva is not exclusively discharged into the maxillary salivary channel (via the dorsal efferent duct of the salivary pump), but that a large amount of saliva directly flows into the tube of the labium (via the ventral efferent duct of the salivary pump), which encloses the piercing stylets. However, within a short section, saliva may also pass from the ventral salivary duct into the maxillary salivary channel. Similar double salivary efferent ducts are present in the reduviids Triatoma dimidiata, T. infestans, Dipetalogaster maxima, Panstrongylus megistus, in the pyrrhocorid Pyrrhocoris apterus, and in the pentatomid Troilus luridus. It might thus be a more common feature of the Heteroptera.
机译:我们着眼于以血为食的褐红藻Rhodnius prolixus,研究了下咽的结构和功能:(1)将唾液引导至口器;(2)将唾液泵和管心针组合在一起,以确保同时提供这两种液体的艰巨任务封闭的抗血液和唾液流,同时在喂食过程中允许口器前后移动。下咽的远端顶点形成横截面为X形的针状结构。它以类似于拉链锁的固定滑块的方式布置上颌的互锁。下咽更近,以宽舌延伸入上颌食物通道。唾液泵具有两个独立的出气管道。背管起源于吸盘的逆行角(唾液的一部分),并将唾液直接导入上颌唾液通道。腹管起源于吸盘的远端开口。它延伸到一个袋子中,该袋子的远端开口可以由腹侧枕状角质层关闭,并由肌肉打开。我们首次显示了异翅类口器的唾液不是专门排入上颌唾液通道(通过唾液泵的背侧出气管),而是大量唾液直接流入到唇肌管中(通过唾液泵的腹腔出气管),该管围绕穿刺管心针。然而,在短时间内,唾液也可能从腹唾液管进入上颌唾液通道。类似的双唾液传出管也存在于reduviids triatoma dimidiata,T。infestans,Dipetalogaster maxima,Panstrongylus megistus,吡咯菌属Pyrrhocoris apterus以及五节类Troilus luridus中。因此,这可能是异翅目的一个更常见的特征。

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