Sun Qian, Haynes Kenneth F, Hampton Jordan D, Zhou Xuguo
Department of Entomology, University of Kentucky, S-225 Agricultural Science Center North, Lexington, KY, 40546-0091, USA.
Naturwissenschaften. 2017 Sep 6;104(9-10):79. doi: 10.1007/s00114-017-1501-5.
In social insects, the postembryonic development of individuals exhibits strong phenotypic plasticity in response to the environment, thus generating the caste system. Different from eusocial Hymenoptera, in which queens dominate reproduction and inhibit worker fertility, the primary reproductive caste in termites (kings and queens) can be replaced by neotenic reproductives derived from functionally sterile individuals. Feedback regulation of nestmate differentiation into reproductives has been suggested, but the sex specificity remains inconclusive. In the eastern subterranean termite, Reticulitermes flavipes, we tested the hypothesis that neotenic reproductives regulate worker-reproductive transition in a sex-specific manner. With this R. flavipes system, we demonstrate a sex-specific regulatory mechanism with both inhibitory and stimulatory functions. Neotenics inhibit workers of the same sex from differentiating into additional reproductives but stimulate workers of the opposite sex to undergo this transition. Furthermore, this process is not affected by the presence of soldiers. Our results highlight the reproductive plasticity of termites in response to social cues and provide insights into the regulation of reproductive division of labor in a hemimetabolous social insect.
在社会性昆虫中,个体的胚后发育表现出对环境的强烈表型可塑性,从而产生了等级制度。与雌性独居的膜翅目昆虫不同,在膜翅目昆虫中,蚁后主导繁殖并抑制工蚁的繁殖力,而白蚁中的主要生殖等级(蚁王和蚁后)可被源自功能性不育个体的幼态生殖蚁所取代。已有研究提出了对巢友分化为生殖蚁的反馈调节,但性别特异性仍无定论。在东方土白蚁(Reticulitermes flavipes)中,我们检验了幼态生殖蚁以性别特异性方式调节工蚁向生殖蚁转变的假设。利用这种东方土白蚁系统,我们证明了一种具有抑制和刺激功能的性别特异性调节机制。幼态生殖蚁抑制同性工蚁分化为额外的生殖蚁,但刺激异性工蚁进行这种转变。此外,这一过程不受兵蚁存在与否的影响。我们的研究结果突出了白蚁对社会信号的生殖可塑性,并为半变态社会性昆虫的生殖分工调节提供了见解。