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植物 - 昆虫相互作用进化动力学中的生态动荡:从防御到进攻

Ecological turmoil in evolutionary dynamics of plant-insect interactions: defense to offence.

作者信息

Mishra Manasi, Lomate Purushottam R, Joshi Rakesh S, Punekar Sachin A, Gupta Vidya S, Giri Ashok P

机构信息

Plant Molecular Biology Unit, Division of Biochemical Sciences, CSIR-National Chemical Laboratory, Dr. Homi Bhabha Road, Pune, 411 008, MS, India.

出版信息

Planta. 2015 Oct;242(4):761-71. doi: 10.1007/s00425-015-2364-7. Epub 2015 Jul 10.

Abstract

Available history manifests contemporary diversity that exists in plant-insect interactions. A radical thinking is necessary for developing strategies that can co-opt natural insect-plant mutualism, ecology and environmental safety for crop protection since current agricultural practices can reduce species richness and evenness. The global environmental changes, such as increased temperature, CO₂ and ozone levels, biological invasions, land-use change and habitat fragmentation together play a significant role in re-shaping the plant-insect multi-trophic interactions. Diverse natural products need to be studied and explored for their biological functions as insect pest control agents. In order to assure the success of an integrated pest management strategy, human activities need to be harmonized to minimize the global climate changes. Plant-insect interaction is one of the most primitive and co-evolved associations, often influenced by surrounding changes. In this review, we account the persistence and evolution of plant-insect interactions, with particular focus on the effect of climate change and human interference on these interactions. Plants and insects have been maintaining their existence through a mutual service-resource relationship while defending themselves. We provide a comprehensive catalog of various defense strategies employed by the plants and/or insects. Furthermore, several important factors such as accelerated diversification, imbalance in the mutualism, and chemical arms race between plants and insects as indirect consequences of human practices are highlighted. Inappropriate implementation of several modern agricultural practices has resulted in (i) endangered mutualisms, (ii) pest status and resistance in insects and (iii) ecological instability. Moreover, altered environmental conditions eventually triggered the resetting of plant-insect interactions. Hence, multitrophic approaches that can harmonize human activities and minimize their interference in native plant-insect interactions are needed to maintain natural balance between the existence of plants and insects.

摘要

现有记录表明植物与昆虫相互作用中存在当代多样性。鉴于当前农业实践会降低物种丰富度和均匀度,因此需要激进的思维来制定能够利用自然昆虫与植物的共生关系、生态学和环境安全来保护作物的策略。全球环境变化,如温度升高、二氧化碳和臭氧水平增加、生物入侵、土地利用变化和栖息地破碎化,共同在重塑植物 - 昆虫多营养级相互作用中发挥着重要作用。需要研究和探索各种天然产物作为害虫控制剂的生物学功能。为确保综合虫害管理策略的成功,人类活动需要协调一致,以尽量减少全球气候变化。植物与昆虫的相互作用是最原始且共同进化的关联之一,常受周围变化影响。在本综述中,我们阐述了植物与昆虫相互作用的持久性和进化,特别关注气候变化和人类干扰对这些相互作用的影响。植物和昆虫在自我防御的同时,通过相互的服务 - 资源关系维持自身生存。我们提供了植物和/或昆虫所采用的各种防御策略的综合目录。此外,还强调了一些重要因素,如加速多样化、共生关系失衡以及植物与昆虫之间的化学军备竞赛,这些都是人类活动的间接后果。一些现代农业实践的不当实施导致了(i)濒危的共生关系,(ii)昆虫的害虫地位和抗性,以及(iii)生态不稳定。此外,环境条件的改变最终引发了植物与昆虫相互作用的重新调整。因此,需要采用多营养级方法来协调人类活动,并尽量减少其对本地植物与昆虫相互作用的干扰,以维持植物和昆虫生存之间的自然平衡。

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