Department of Biology, Virginia Polytechnic Institute and State University, Blacksburg, VA 24061.
Department of Biological Sciences, University of Illinois at Chicago, Chicago, IL 60607.
Proc Natl Acad Sci U S A. 2023 Dec 5;120(49):e2313224120. doi: 10.1073/pnas.2313224120. Epub 2023 Nov 28.
The decision to stop growing and mature into an adult is a critical point in development that determines adult body size, impacting multiple aspects of an adult's biology. In many animals, growth cessation is a consequence of hormone release that appears to be tied to the attainment of a particular body size or condition. Nevertheless, the size-sensing mechanism animals use to initiate hormone synthesis is poorly understood. Here, we develop a simple mathematical model of growth cessation in , which is ostensibly triggered by the attainment of a critical weight (CW) early in the last instar. Attainment of CW is correlated with the synthesis of the steroid hormone ecdysone, which causes a larva to stop growing, pupate, and metamorphose into the adult form. Our model suggests that, contrary to expectation, the size-sensing mechanism that initiates metamorphosis occurs before the larva reaches CW; that is, the critical-weight phenomenon is a downstream consequence of an earlier size-dependent developmental decision, not a decision point itself. Further, this size-sensing mechanism does not require a direct assessment of body size but emerges from the interactions between body size, ecdysone, and nutritional signaling. Because many aspects of our model are evolutionarily conserved among all animals, the model may provide a general framework for understanding how animals commit to maturing from their juvenile to adult form.
停止生长并成熟为成年人是发育的一个关键点,决定了成年后的体型,影响成年人生物学的多个方面。在许多动物中,生长停止是激素释放的结果,似乎与达到特定的体型或状态有关。然而,动物用来启动激素合成的体型感知机制还了解甚少。在这里,我们建立了一个简单的数学模型,用于解释 的生长停止,其表面上是由最后一龄早期达到一个临界体重 (CW) 触发的。达到 CW 与类固醇激素蜕皮激素的合成有关,蜕皮激素会导致幼虫停止生长、化蛹并变态为成虫形态。我们的模型表明,与预期相反,启动变态的体型感知机制发生在幼虫达到 CW 之前;也就是说,临界体重现象是早期依赖体型的发育决策的下游结果,而不是决策点本身。此外,这种体型感知机制不需要对体型进行直接评估,而是从体型、蜕皮激素和营养信号之间的相互作用中产生。由于我们模型的许多方面在所有动物中都具有进化保守性,因此该模型可能为理解动物如何从幼年发育到成年形态提供一个通用框架。