Howard Hughes Medical Institute and Division of Biology, California Institute of Technology, Pasadena, California, United States of America.
PLoS Biol. 2012;10(4):e1001306. doi: 10.1371/journal.pbio.1001306. Epub 2012 Apr 10.
Many animals can choose between different developmental fates to maximize fitness. Despite the complexity of environmental cues and life history, different developmental fates are executed in a robust fashion. The nematode Caenorhabditis elegans serves as a powerful model to examine this phenomenon because it can adopt one of two developmental fates (adulthood or diapause) depending on environmental conditions. The steroid hormone dafachronic acid (DA) directs development to adulthood by regulating the transcriptional activity of the nuclear hormone receptor DAF-12. The known role of DA suggests that it may be the molecular mediator of environmental condition effects on the developmental fate decision, although the mechanism is yet unknown. We used a combination of physiological and molecular biology techniques to demonstrate that commitment to reproductive adult development occurs when DA levels, produced in the neuroendocrine XXX cells, exceed a threshold. Furthermore, imaging and cell ablation experiments demonstrate that the XXX cells act as a source of DA, which, upon commitment to adult development, is amplified and propagated in the epidermis in a DAF-12 dependent manner. This positive feedback loop increases DA levels and drives adult programs in the gonad and epidermis, thus conferring the irreversibility of the decision. We show that the positive feedback loop canalizes development by ensuring that sufficient amounts of DA are dispersed throughout the body and serves as a robust fate-locking mechanism to enforce an organism-wide binary decision, despite noisy and complex environmental cues. These mechanisms are not only relevant to C. elegans but may be extended to other hormonal-based decision-making mechanisms in insects and mammals.
许多动物可以在不同的发育命运之间做出选择,以最大限度地提高适应性。尽管环境线索和生活史非常复杂,但不同的发育命运还是以稳健的方式执行。线虫秀丽隐杆线虫是研究这种现象的有力模型,因为它可以根据环境条件选择两种发育命运之一(成虫或休眠)。类固醇激素 DAF-12 调节核激素受体 DAF-12 的转录活性,从而指导发育为成虫。DA 的已知作用表明,它可能是环境条件对发育命运决定的分子中介,尽管其机制尚不清楚。我们使用生理和分子生物学技术的组合证明,当神经内分泌 XXX 细胞产生的 DA 水平超过阈值时,生殖成虫发育的承诺就会发生。此外,成像和细胞消融实验表明,XXX 细胞作为 DA 的来源,一旦承诺进行成虫发育,DA 就会以依赖 DAF-12 的方式在表皮中放大和传播。这种正反馈回路增加了 DA 水平,并在性腺和表皮中驱动成虫程序,从而赋予该决定的不可逆性。我们表明,正反馈回路通过确保在整个生物体中分散足够量的 DA 来引导发育,并且作为一种强大的命运锁定机制,即使存在嘈杂和复杂的环境线索,也能执行全生物体的二元决策。这些机制不仅与秀丽隐杆线虫有关,而且可能扩展到昆虫和哺乳动物中其他基于激素的决策机制。