Kijimoto Teiya, Moczek Armin P
Department of Biology, Indiana University, Bloomington, IN 47405; Division of Plant and Soil Sciences, West Virginia University, Morgantown, WV 26506
Department of Biology, Indiana University, Bloomington, IN 47405;
Proc Natl Acad Sci U S A. 2016 May 24;113(21):5982-7. doi: 10.1073/pnas.1601505113. Epub 2016 May 9.
The recruitment of modular developmental genetic components into new developmental contexts has been proposed as a central mechanism enabling the origin of novel traits and trait functions without necessitating the origin of novel pathways. Here, we investigate the function of the hedgehog (Hh) signaling pathway, a highly conserved pathway best understood for its role in patterning anterior/posterior (A/P) polarity of diverse traits, in the developmental evolution of beetle horns, an evolutionary novelty, and horn polyphenisms, a highly derived form of environment-responsive trait induction. We show that interactions among pathway members are conserved during development of Onthophagus horned beetles and have retained the ability to regulate A/P polarity in traditional appendages, such as legs. At the same time, the Hh signaling pathway has acquired a novel and highly unusual role in the nutrition-dependent regulation of horn polyphenisms by actively suppressing horn formation in low-nutrition males. Down-regulation of Hh signaling lifts this inhibition and returns a highly derived sigmoid horn body size allometry to its presumed ancestral, linear state. Our results suggest that recruitment of the Hh signaling pathway may have been a key step in the evolution of trait thresholds, such as those involved in horn polyphenisms and the corresponding origin of alternative phenotypes and complex allometries.
模块化发育遗传成分被招募到新的发育环境中,这一过程被认为是一种核心机制,能够在不产生新途径的情况下产生新的性状和性状功能。在此,我们研究了刺猬(Hh)信号通路的功能,这是一条高度保守的通路,因其在多种性状的前后(A/P)极性模式形成中的作用而为人熟知。我们研究该通路在甲虫角的发育进化过程中的作用,甲虫角是一种进化上的新特征,以及角多型现象,这是一种高度衍生的环境响应性状诱导形式。我们发现,在食粪角甲虫的发育过程中,通路成员之间的相互作用是保守的,并且保留了在传统附肢(如腿)中调节A/P极性的能力。同时,Hh信号通路在角多型现象的营养依赖性调节中获得了一种全新且非常特殊的作用,即通过积极抑制低营养雄性个体的角形成来实现。Hh信号通路的下调解除了这种抑制,使高度衍生的S形角体型异速生长恢复到其假定的祖先线性状态。我们的研究结果表明,Hh信号通路的招募可能是性状阈值进化中的关键一步,例如那些涉及角多型现象以及相应的替代表型和复杂异速生长起源的性状阈值。