Department of Environmental Science, University of Kashmir, Srinagar, 190006, India.
Department of Pharmaceutical Sciences, University of Kashmir, Srinagar, 190006, India.
Planta. 2023 Nov 13;258(6):117. doi: 10.1007/s00425-023-04267-0.
Environmental DNA-based monitoring provides critical insights for enhancing our understanding of plant-animal interactions in the context of worldwide biodiversity decrease for developing a global framework for effective plant biodiversity conservation. To understand the ecology and evolutionary patterns of plant-animal interactions (PAI) and their pivotal roles in ecosystem functioning advances in molecular ecology tools such as Environmental DNA (eDNA) provide unprecedented research avenues. These methods being non-destructive in comparison to traditional biodiversity monitoring methods, enhance the discernment of ecosystem health, integrity, and complex interactions. This review intends to offer a systematic and critical appraisal of the prospective of eDNA for investigating PAI. The review thoroughly discusses and analyzes the recent reports (2015-2022) employing preferred reporting items for systematic reviews and meta-analyses (PRISMA) to outline the recent progression in eDNA approaches for elucidating PAI. The current review envisages that eDNA has a significant potential to monitor both plants and associated cohort of prospective pollinators (avian species and flowering plants, bees and plants, arthropods and plants, bats and plants, etc.). Furthermore, a brief description of the factors that influence the utility and interpretation of PAI eDNA is also presented. The review establishes that factors such as biotic and abiotic, primer selection and taxonomic resolution, and indeterminate spatio-temporal scales impact the availability and longevity of eDNA. The study also identified the limitations that influence PAI detection and suggested possible solutions for better execution of these molecular approaches. Overcoming these research caveats will augment the assortment of PAI analysis through eDNA that could be vital for ecosystem health and integrity. This review forms a critical guide and offers prominent insights for ecologists, environmental managers and researchers to assess and evaluate plant-animal interaction through environmental DNA.
基于环境 DNA 的监测为增强我们对植物-动物相互作用的理解提供了关键见解,有助于在全球生物多样性减少的背景下制定有效的植物生物多样性保护全球框架。为了了解植物-动物相互作用(PAI)的生态学和进化模式及其在生态系统功能中的关键作用,分子生态学工具(如环境 DNA(eDNA))的进步提供了前所未有的研究途径。与传统的生物多样性监测方法相比,这些方法是非破坏性的,增强了对生态系统健康、完整性和复杂相互作用的识别。本综述旨在对 eDNA 调查 PAI 的前景进行系统和批判性评估。本综述深入讨论和分析了最近的报告(2015-2022 年),采用系统评价和荟萃分析的首选报告项目(PRISMA),概述了最近在利用 eDNA 方法阐明 PAI 方面的进展。本综述认为,eDNA 具有监测植物及其相关潜在授粉者(鸟类物种和开花植物、蜜蜂和植物、节肢动物和植物、蝙蝠和植物等)的巨大潜力。此外,还简要描述了影响 PAI eDNA 实用性和解释的因素。本综述认为,生物和非生物因素、引物选择和分类分辨率以及不确定的时空尺度等因素会影响 eDNA 的可用性和持久性。该研究还确定了影响 PAI 检测的限制因素,并提出了改进这些分子方法执行的可能解决方案。克服这些研究缺陷将通过 eDNA 增加 PAI 分析的种类,这对于生态系统的健康和完整性可能至关重要。本综述为生态学家、环境管理者和研究人员提供了一个批判性的指南,通过环境 DNA 评估和评估植物-动物相互作用。