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首页> 外文期刊>Frontiers in zoology >Identification of a self-regulatory pheromone system that controls nymph aggregation behavior of rice spittlebug Callitettix versicolor
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Identification of a self-regulatory pheromone system that controls nymph aggregation behavior of rice spittlebug Callitettix versicolor

机译:自我控制信息素系统的识别,该系统可控制水稻食虫Callitettix versicolor的若虫聚集行为

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Background Nymphs of many spittlebug species are known to aggregate in one spittle mass, a behavior which greatly benefits the survival of the developing nymphs. Little is known, however, about the precise mechanisms that induce and regulate aggregation. Here, we investigated the aggregation behavior of nymphs of the rice spittlebug Callitettix versicolor, and analyzed the chemical composition of spittle masses. Results We identified six n-alkane compounds, namely un-, do-, tri-, tetra-, penta- and hexadecane in the spittle mass. Importantly, we showed that solitary spittle mass (SSM) and aggregation spittle mass (ASM) differed significantly in the amounts and composition of these compounds. While un-, do-, tri-, tetra-and hexadecane were overrepresented in SSM, pentadecane was found at significantly higher levels in ASM. Electrophysiological experiments showed that antennae responses to these six compounds were significantly higher than to both the hexane and the docosane control, which suggests a specific role of the six volatile alkanes as pheromones. In agreement with this hypothesis, behavioral tests revealed that five of the six compounds (e.g. un-, do-, tri-, tetra-, and hexadecane) acted as attractants across a wide concentration range. Thus, these five compounds allow recruitment of additional nymphs to a growing spittle mass. The sixth compound, pentadecane, attracted nymphs at low doses, whereas at higher doses, this effect vanished, suggesting that this alkane functioned as a repellent, thus preventing recruitment of additional individuals to a full aggregation in a spittle mass. Conclusions In summary, our study identified a simple, yet fully functional feedback mechanism which allows aggregation at low nymph numbers, while preventing over-crowding beyond a set number of nymphs within one spittle mass. In conclusion, our study provides new insights into C. versicolor development and behavior that should greatly facilitate the identification of new approaches for pheromonal control of this pest.
机译:背景技术已知许多幼虫的若虫会聚集在一个幼虫中,这种行为极大地促进了发育中的若虫的生存。然而,关于诱导和调节聚集的精确机制知之甚少。在这里,我们调查了水稻瓢虫Callitettix versicolor的若虫的聚集行为,并分析了臭虫团块的化学组成。结果我们在喷口中鉴定出六个正构烷烃化合物,分别为十一,十一,十二,十三,十四,十五和十六烷。重要的是,我们证明了这些化合物的量和组成上的单独唾液质量(SSM)和聚集唾液质量(ASM)都存在显着差异。虽然SSM中过十六烷的含量不高,但十二烷在ASM中的含量高得多。电生理实验表明,对这六种化合物的触角响应明显高于对己烷和二十二烷对照的触角响应,这表明这六种挥发性烷烃作为信息素具有特殊作用。与此假设相符,行为测试表明,六种化合物中的五种(例如十一,十二,三,四和十六烷)在很宽的浓度范围内起引诱剂的作用。因此,这五种化合物允许补充更多的若虫以增加唾液质量。第六种化合物十五烷在低剂量时会吸引若虫,而在高剂量时,这种作用消失了,这表明该烷烃具有驱避作用,从而阻止了额外的个体募集到唾液中。结论总而言之,我们的研究确定了一种简单但功能齐全的反馈机制,该机制允许在低若虫数量下聚集,同时防止在一个唾液团块内过度拥挤超过一定数量的若虫。总而言之,我们的研究为杂色衣藻的发育和行为提供了新的见识,这将极大地促进识别该病虫的信息素控制新方法。

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