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全球气候变化对植物-线虫相互作用连续体的广泛影响。

The pervasive impact of global climate change on plant-nematode interaction continuum.

作者信息

Dutta Tushar K, Phani Victor

机构信息

Division of Nematology, ICAR-Indian Agricultural Research Institute, New Delhi, India.

Department of Agricultural Entomology, College of Agriculture, Uttar Banga Krishi Viswavidyalaya, West Bengal, India.

出版信息

Front Plant Sci. 2023 Apr 6;14:1143889. doi: 10.3389/fpls.2023.1143889. eCollection 2023.

Abstract

Pest profiles in today's global food production system are continually affected by climate change and extreme weather. Under varying climatic conditions, plant-parasitic nematodes (PPNs) cause substantial economic damage to a wide variety of agricultural and horticultural commodities. In parallel, their herbivory also accredit to diverse ecosystem services such as nutrient cycling, allocation and turnover of plant biomass, shaping of vegetation community, and alteration of rhizospheric microorganism consortium by modifying the root exudation pattern. Thus PPNs, together with the vast majority of free-living nematodes, act as ecological drivers. Because of direct exposure to the open environment, PPN biology and physiology are largely governed by environmental factors including temperature, precipitation, humidity, atmospheric and soil carbon dioxide level, and weather extremes. The negative effects of climate change such as global warming, elevated CO, altered precipitation and the weather extremes including heat waves, droughts, floods, wildfires and storms greatly influence the biogeographic range, distribution, abundance, survival, fitness, reproduction, and parasitic potential of the PPNs. Changes in these biological and ecological parameters associated to the PPNs exert huge impact on agriculture. Yet, depending on how adaptable the species are according to their geo-spatial distribution, the consequences of climate change include both positive and negative effects on the PPN communities. While assorting the effects of climate change as a whole, it can be estimated that the changing environmental factors, on one hand, will aggravate the PPN damage by aiding to abundance, distribution, reproduction, generation, plant growth and reduced plant defense, but the phenomena like sex reversal, entering cryptobiosis, and reduced survival should act in counter direction. This seemingly creates a contraposition effect, where assessing any confluent trend is difficult. However, as the climate change effects will differ according to space and time it is apprehensible that the PPNs will react and adapt according to their location and species specificity. Nevertheless, the bio-ecological shifts in the PPNs will necessitate tweaking their management practices from the agri-horticultural perspective. In this regard, we must aim for a 'climate-smart' package that will take care of the food production, pest prevention and environment protection. Integrated nematode management involving precise monitoring and modeling-based studies of population dynamics in relation to climatic fluctuations with escalated reliance on biocontrol, host resistance, and other safer approaches like crop rotation, crop scheduling, cover cropping, biofumigation, use of farmyard manure (FYM) would surely prove to be viable options. Although the novel nematicidal molecules are target-specific and relatively less harmful to the environment, their application should not be promoted following the global aim to reduce pesticide usage in future agriculture. Thus, having a reliable risk assessment with scenario planning, the adaptive management strategies must be designed to cope with the impending situation and satisfy the farmers' need.

摘要

当今全球粮食生产系统中的害虫状况不断受到气候变化和极端天气的影响。在不同的气候条件下,植物寄生线虫(PPN)对多种农业和园艺商品造成了巨大的经济损失。与此同时,它们的取食活动也有助于实现多种生态系统服务,如养分循环、植物生物量的分配和周转、植被群落的形成,以及通过改变根系分泌物模式来改变根际微生物群落。因此,PPN与绝大多数自由生活线虫一样,都是生态驱动因素。由于直接暴露于开放环境中,PPN的生物学和生理学在很大程度上受环境因素的支配,这些因素包括温度、降水、湿度、大气和土壤中的二氧化碳水平以及极端天气。气候变化的负面影响,如全球变暖、二氧化碳浓度升高、降水变化以及包括热浪、干旱、洪水、野火和风暴在内的极端天气,极大地影响了PPN的生物地理范围、分布、丰度、生存、适应性、繁殖和寄生潜力。与PPN相关的这些生物学和生态学参数的变化对农业产生了巨大影响。然而,根据物种根据其地理空间分布的适应能力,气候变化的后果对PPN群落既有正面影响也有负面影响。在综合考虑气候变化的整体影响时,可以估计,一方面,不断变化的环境因素将通过促进PPN的数量、分布、繁殖、世代、植物生长以及降低植物防御能力来加剧PPN造成的损害,但诸如性别逆转、进入隐生状态和存活率降低等现象则会起到相反的作用。这似乎产生了一种对立效应,使得评估任何合并趋势都很困难。然而,由于气候变化的影响会因空间和时间而异,可以理解的是,PPN将根据其位置和物种特异性做出反应并进行适应。尽管如此,PPN的生物生态变化将需要从农业园艺角度调整其管理措施。在这方面,我们必须致力于制定一套“气候智能型”方案,以兼顾粮食生产、害虫防治和环境保护。涉及精确监测和基于模型研究与气候波动相关的种群动态,并更多地依赖生物防治、寄主抗性以及其他更安全的方法,如作物轮作、作物安排、覆盖作物种植、生物熏蒸、使用农家肥(FYM)的综合线虫管理肯定会被证明是可行的选择。尽管新型杀线虫分子具有靶标特异性且对环境危害相对较小,但按照未来农业减少农药使用的全球目标,不应推广其应用。因此,通过情景规划进行可靠的风险评估后,必须设计适应性管理策略来应对即将到来的情况并满足农民的需求。

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