1 State Key Laboratory for Integrated Management of Pest Insects and Rodents, Institute of Zoology, Chinese Academy of Sciences , Beijing 100101 , People's Republic of China.
2 College of Life Sciences, University of Chinese Academy of Sciences , Beijing 100049 , People's Republic of China.
Philos Trans R Soc Lond B Biol Sci. 2019 Mar 4;374(1767):20180306. doi: 10.1098/rstb.2018.0306.
Biotic signalling refers to species or phylogenetic-clade-specific signals that elicit adaptive and acceptable responses within and among organisms. It is not only the molecular basis of the ecological relationships among different species, such as parasitism, symbiosis and predation, but also serves as ideal targets that can be used to manipulate these ecological relationships. This concept was proposed by a group of scientists from the Chinese Academy of Sciences (CAS) and actively pursued in a five-year research project in 2014 funded by the CAS ($40 million), entitled 'Decoding biotic interactions and mechanism for target management of agricultural pests'. The multi-disciplinary project aimed at a systematic investigation of the intra-species and inter-species and interactions via biotic signalling, with the ultimate goal being the development of novel methods to manage the pest insects and diseases. We hereby propose a topic 'Biotic signalling sheds light on smart pest control' as a theme issue for the Philosophical Transactions of the Royal Society B. It contains a total of 18 reviews and research articles under the topic of signalling manipulation for pest management. Unravelling these complex interactions among plants, microbial pathogens and insects holds promise for developing novel strategies to protect crop plants without compromising agricultural productivity and environmental health. This article is part of the theme issue 'Biotic signalling sheds light on smart pest management'.
生物信号是指物种或系统发育枝特有的信号,可在生物体内和生物之间引发适应性和可接受的反应。它不仅是不同物种之间如寄生、共生和捕食等生态关系的分子基础,而且还是可以用来操纵这些生态关系的理想目标。这一概念是由中国科学院(CAS)的一组科学家提出的,并在 2014 年由 CAS 资助的一个为期五年的研究项目(4000 万美元)中积极推进,该项目名为“解码生物相互作用和农业害虫靶标管理的机制”。这个多学科项目旨在系统研究物种内和物种间通过生物信号进行的相互作用,最终目标是开发管理害虫昆虫和疾病的新方法。我们在此提出一个主题“生物信号揭示智能害虫控制”作为英国皇家学会哲学汇刊 B 的一个主题问题。它包含了 18 篇综述和研究文章,主题是害虫管理中的信号操纵。揭示这些植物、微生物病原体和昆虫之间的复杂相互作用,有望开发出在不损害农业生产力和环境健康的情况下保护作物的新策略。本文是主题问题“生物信号揭示智能害虫管理”的一部分。