首页> 外文期刊>Zoomorphology >Is there correlation between photophobia and troglomorphism in Neotropical cave millipedes (Spirostreptida, Pseudonannolenidae)?
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Is there correlation between photophobia and troglomorphism in Neotropical cave millipedes (Spirostreptida, Pseudonannolenidae)?

机译:彩色洞穴山脉千里足(SpsoStrida,假瘤醇仁)之间的镜片和颅代术之间存在相关性吗?

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摘要

Absence of light, typical of the subterranean environment can lead to the loss of synchronizers of physiological and behavioral activities, mainly those related to photoperiods and light perception. Cave-dwelling species present phototactic responses that vary from photonegative to photopositive ones. There are few studies focusing on reaction to light in millipedes and the most studied species are considered photophobic. In this study, we analyzed the phototactic response of cave-dwelling and epigean millipedes of the genus Pseudonannolene (Spirostreptida, Pseudonannolenidae). For this, the chamber choice method was used. We related the phototatic reactions to morphological characters that indicate troglomorphisms (e.g., eyes and melanic pigmentation). The eight-studied operational taxonomic unit (OTU) showed photophobic reaction to all light intensities tested (150, 500 and 1000 lx) and photophobia can be considered a plesiomorphic character in the group. The morphological analysis showed that the light response is negatively correlated to the number of ommatidia and ocular area, that is, the larger the area and the number of ommatidia, the more negative is the light response (photonegative), suggesting that the eyes are the main sensory organs in the perception of light and, apparently, the integument of Pseudonannolene is not related to light sensitivity, opposite to that observed for other millipede species.
机译:缺乏光线,典型的地下环境可能导致生理和行为活动的同步丧失,主要是与光周期和光感染有关的。洞穴住宅物种存在光学响应,其从光学阳性与光电阳性值不同。很少有研究专注于对千足碱的光反应,并且最多研究的物种被认为是料理的。在这项研究中,我们分析了洞穴栖息地和外膜千里皮的光电响应(Speigonannolene(Spigostrida,假瘤醇尼西亚)。为此,使用腔室选择方法。我们将光学反应与形态特征的光电子反应相关,所述形态学性状(例如,眼睛和黑色色素沉着)。八学研究的运营分类单位(OTU)向所有测试(150,500和1000 Lx)和镜片中的所有光强度显示出光学反应,可以被认为是该组中的Plesiomorphic特征。形态学分析表明,光响应与OMMATIDIA和眼面积的数量负相关,即面积越大和OMMATIDIA的数量,越负是光响应(光敏),表明眼睛是主要感觉器官在光明的感知中,显然,假脉控制器的单位与光敏感性无关,与其他千足动物物种相反。

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