Department of Vertebrate Zoology, Faculty of Biology, Lomonosov Moscow State University, Moscow, 119234, Russia.
Department of Vertebrate Zoology, Faculty of Biology, Lomonosov Moscow State University, Moscow, 119234, Russia; Department of Behaviour and Behavioural Ecology of Mammals, A.N. Severtsov Institute of Ecology and Evolution, Russian Academy of Sciences, Moscow, 119071, Russia.
Behav Brain Res. 2021 Aug 27;412:113430. doi: 10.1016/j.bbr.2021.113430. Epub 2021 Jun 25.
This study discovered a novel acoustic phenotype in Calsyntenin2 deficient knockout (Clstn2-KO) pups in the neurodevelopment period of 5-9 postnatal days (PND 5-9). The narrowband ultrasonic calls (nUSVs) were less complex (mostly one-note, shorter in duration and higher in peak frequency) in Clsnt2-KO than in wild-type (WT) C57BL/6 J pups. The wideband ultrasonic calls (wUSVs) were produced substantially more often by Clstn2-KO than WT pups. The clicks were longer in duration and higher in peak frequency and power quartiles in Clstn2-KO pups. The elevated discomfort due to additional two-minute maternal separation coupled with experimenter's touch, resulted in significantly higher call rates of both nUSVs and clicks in pups of both genotypes and sexes compared to the previous two-minute maternal separation, whereas the call rate of wUSVs was not affected. In Clstn2-KO pups, the prevalence of emission of wUSVs retained at both sex and both degrees of discomfort, thus providing a reliable quantitative acoustic indicator for this genetic line. Besides the acoustic differences, we also detected the increased head-to-body ratio in Clstn2-KO pups. Altogether, this study demonstrated that lack of such synaptic adhesion protein as calsyntenin2 affects neurodevelopment of vocalization in a mouse as a model organism.
本研究在神经发育期(5-9 日龄)发现了 Calsyntenin2 缺陷型敲除(Clstn2-KO)幼鼠的新型声学表型。与野生型(WT)C57BL/6J 幼鼠相比,Clsnt2-KO 幼鼠的窄带超声发声(nUSVs)更简单(大多为单音,持续时间更短,峰值频率更高)。宽带超声发声(wUSVs)在 Clstn2-KO 幼鼠中产生的次数显著多于 WT 幼鼠。Clstn2-KO 幼鼠的咔哒声持续时间更长,峰值频率和功率四分位数更高。由于额外的两分钟母体分离和实验者的触摸,导致幼鼠的不适程度增加,与之前的两分钟母体分离相比,两种基因型和性别的 nUSVs 和咔哒声的呼叫率显著升高,而 wUSVs 的呼叫率不受影响。在 Clstn2-KO 幼鼠中,wUSVs 的发射率在两性和两种不适程度下均保持不变,因此为这种遗传系提供了可靠的定量声学指标。除了声学差异,我们还检测到 Clstn2-KO 幼鼠的头身比增加。总的来说,这项研究表明,作为一种模式生物,缺乏这种突触黏附蛋白 calsyntenin2 会影响发声的神经发育。