Sugiura Shinji, Hayashi Masakazu
Graduate School of Agricultural Science, Kobe University, Kobe, Hyogo, Japan.
Hoshizaki Green Foundation, Izumo, Shimane, Japan.
PeerJ. 2025 Sep 9;13:e19942. doi: 10.7717/peerj.19942. eCollection 2025.
Defensive mimicry encompasses a continuum ranging from Batesian to Müllerian mimicry. Batesian mimicry involves antagonistic interactions between undefended and defended species, whereas Müllerian mimicry represents mutualistic interactions between species with comparable levels of defense. When mimicry occurs between species with unequal defensive abilities, it is termed quasi-Batesian mimicry, though whether such interactions are antagonistic or mutualistic remains debated. Despite their common occurrence in nature, few quasi-Batesian mimicry systems have been experimentally studied. Here, we investigated the mimetic interaction between two chemically defended insect species, the rove beetle Curtis, 1826 (Coleoptera: Staphylinidae) and the assassin bug (Stål, 1855) (Hemiptera: Reduviidae), through behavioral assays with their potential predator, the pond frog (Hallowell, 1861) (Anura: Ranidae), which naturally co-occurs with these insects in Japan. Adult . resemble . nymphs in their conspicuous reddish-orange and black coloration. Under laboratory conditions, 45.8% of pond frogs rejected . adults, whereas 70.8% rejected . nymphs, suggesting that the assassin bug nymphs are better defended. Prior exposure to increased frog rejection of , whereas exposure to slightly reduced rejection of . These results indicate that adult . may gain protective benefits from mimicry of . nymphs, while the latter may incur a small cost.
防御性拟态涵盖了一个从贝氏拟态到缪勒氏拟态的连续统。贝氏拟态涉及无防御能力物种与有防御能力物种之间的对抗性相互作用,而缪勒氏拟态则代表具有相当防御水平的物种之间的互利相互作用。当防御能力不等的物种之间发生拟态时,被称为准贝氏拟态,不过这种相互作用是对抗性还是互利性仍存在争议。尽管它们在自然界中普遍存在,但很少有准贝氏拟态系统得到实验研究。在这里,我们通过与它们的潜在捕食者——日本自然与这些昆虫共生的泽蛙(哈洛威尔,1861年)(无尾目:蛙科)进行行为测定,研究了两种具有化学防御能力的昆虫物种之间的拟态相互作用,即隐翅虫(柯蒂斯,1826年)(鞘翅目:隐翅虫科)和猎蝽(斯塔尔,1855年)(半翅目:猎蝽科)。成年猎蝽在显眼的红橙色和黑色体色上与猎蝽若虫相似。在实验室条件下,45.8%的泽蛙拒绝捕食成年猎蝽,而70.8%的泽蛙拒绝捕食猎蝽若虫,这表明猎蝽若虫的防御能力更强。事先接触猎蝽会增加泽蛙对隐翅虫的拒绝率,而接触隐翅虫则会略微降低泽蛙对猎蝽的拒绝率。这些结果表明,成年隐翅虫可能通过模仿猎蝽若虫而获得保护益处,而后者可能会付出较小的代价。