Graduate School of Environmental Science, Okayama University, Okayama 700-8530, Japan.
Proc Natl Acad Sci U S A. 2010 Jul 20;107(29):12963-8. doi: 10.1073/pnas.1004675107. Epub 2010 Jul 6.
The hallmark of social insects is their caste system: reproduction is primarily monopolized by queens, whereas workers specialize in the other tasks required for colony growth and survival. Pheromones produced by reigning queens have long been believed to be the prime factor inhibiting the differentiation of new reproductive individuals. However, there has been very little progress in the chemical identification of such inhibitory pheromones. Here we report the identification of a volatile inhibitory pheromone produced by female neotenics (secondary queens) that acts directly on target individuals to suppress the differentiation of new female neotenics and identify n-butyl-n-butyrate and 2-methyl-1-butanol as the active components of the inhibitory pheromone. An artificial pheromone blend consisting of these two compounds had a strong inhibitory effect similar to live neotenics. Surprisingly, the same two volatiles are also emitted by eggs, playing a role both as an attractant to workers and an inhibitor of reproductive differentiation. This dual production of an inhibitory pheromone by female reproductives and eggs probably reflects the recruitment of an attractant pheromone as an inhibitory pheromone and may provide a mechanism ensuring honest signaling of reproductive status with a tight coupling between fertility and inhibitory power. Identification of a volatile pheromone regulating caste differentiation in a termite provides insights into the functioning of social insect colonies and opens important avenues for elucidating the developmental pathways leading to reproductive and nonreproductive castes.
繁殖主要由蚁后垄断,而工蚁则专门从事蚁群生长和生存所需的其他任务。长期以来,统治蚁后的信息素被认为是抑制新生殖个体分化的主要因素。然而,在化学识别这种抑制性信息素方面几乎没有取得什么进展。在这里,我们报告了一种由雌性幼态持续(次生蚁后)产生的挥发性抑制性信息素的鉴定,它直接作用于目标个体,抑制新雌性幼态持续的分化,并确定丁酸正丁酯和 2-甲基-1-丁醇为抑制性信息素的活性成分。由这两种化合物组成的人工信息素混合物具有很强的抑制作用,类似于活体幼态持续。令人惊讶的是,这两种相同的挥发物也存在于卵中,作为工蚁的吸引剂和生殖分化抑制剂发挥作用。雌性生殖体和卵同时产生抑制性信息素可能反映了将一种引诱信息素作为抑制性信息素的招募,并且可能提供了一种确保生殖状态诚实信号的机制,同时将生育力和抑制力紧密结合在一起。在白蚁中鉴定出一种调节等级分化的挥发性信息素,为研究社会性昆虫群体的功能提供了线索,并为阐明导致生殖和非生殖等级的发育途径开辟了重要途径。