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Formation of Rigid Non-Flight Forewings (Elytra) of a Beetle Requires Two Major Cuticular Proteins

机译:甲虫的刚性非飞行前翅(鞘翅目)的形成需要两种主要的表皮蛋白

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摘要

Insect cuticle is composed primarily of chitin and structural proteins. To study the function of structural cuticular proteins, we focused on the proteins present in elytra (modified forewings that become highly sclerotized and pigmented covers for the hindwings) of the red flour beetle, Tribolium castaneum. We identified two highly abundant proteins, TcCPR27 (10 kDa) and TcCPR18 (20 kDa), which are also present in pronotum and ventral abdominal cuticles. Both are members of the Rebers and Riddiford family of cuticular proteins and contain RR2 motifs. Transcripts for both genes dramatically increase in abundance at the pharate adult stage and then decline quickly thereafter. Injection of specific double-stranded RNAs for each gene into penultimate or last instar larvae had no effect on larval–larval, larval–pupal, or pupal–adult molting. The elytra of the resulting adults, however, were shorter, wrinkled, warped, fenestrated, and less rigid than those from control insects. TcCPR27-deficient insects could not fold their hindwings properly and died prematurely approximately one week after eclosion, probably because of dehydration. TcCPR18-deficient insects exhibited a similar but less dramatic phenotype. Immunolocalization studies confirmed the presence of TcCPR27 in the elytral cuticle. These results demonstrate that TcCPR27 and TcCPR18 are major structural proteins in the rigid elytral, dorsal thoracic, and ventral abdominal cuticles of the red flour beetle, and that both proteins are required for morphogenesis of the beetle's elytra.
机译:昆虫表皮主要由几丁质和结构蛋白组成。为了研究结构性表皮蛋白的功能,我们重点研究了红粉甲虫Tribolium castaneum的鞘翅目(改良后的前翅变得高度硬化,后翅的色素覆盖)中存在的蛋白质。我们鉴定了两种高度丰富的蛋白质,TcCPR27(10 kDa)和TcCPR18(20 kDa),它们也存在于前胸膜和腹侧腹皮中。两者都是表皮蛋白的Rebers和Riddiford家族的成员,并含有RR2基序。这两个基因的转录本在成年阶段阶段的丰度急剧增加,然后迅速下降。将每个基因的特定双链RNA注入倒数第二或最后一个成年幼虫对幼虫-幼虫,幼虫-pu或pu-成虫的蜕皮没有影响。然而,与对照昆虫相比,所得成虫的鞘翅较短,起皱,翘曲,有窗孔且刚性较低。缺乏TcCPR27的昆虫无法正确折叠其后翅,并在封堵后大约一周后过早死亡,这可能是由于脱水造成的。缺乏TcCPR18的昆虫表现出相似但不那么明显的表型。免疫定位研究证实了Ectral角质层中存在TcCPR27。这些结果表明,TcCPR27和TcCPR18是红色面粉甲虫的硬翅,背胸壁和腹腹角质层中的主要结构蛋白,并且这两种蛋白都是甲壳虫的形态发生所必需的。

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