国际社会通过多尺度方法了解向日葵-传粉者相互作用的进展

OCL Pub Date : 2023-01-01 DOI:10.1051/ocl/2023012
O. Catrice, Srinidhi V. Holalu, S. Terzić, M. Todesco, N. Creux, N. Langlade
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引用次数: 0

摘要

首届关于向日葵与传粉者相互作用的网络会议聚集了国际社会围绕向日葵生产力和生态系统生物多样性的主要主题。昆虫传粉对葵花籽产量的提高具有重要意义,但传粉过程受环境因素的影响较大。气候变化可以通过影响植物和传粉者的行为来影响向日葵与传粉者的相互作用。自然或人为升高的环境温度似乎加速了小花的发育,并提前了花粉呈现的时间,以与传粉者的活动一致。干旱对花药和花冠长度等形态性状没有显著影响,但显著减少了花蜜和花粉的产量。黄酮醇-糖苷结合较低的头部蒸腾,从而减轻非生物胁迫的有害影响。野生传粉者在向日葵品种中表现出精细的尺度偏好,可能是由于野生蜜蜂和管理蜜蜂的资源重点不同。种植花带为野生传粉媒介提供筑巢场所,或在作物地块上增设蜂箱等农业做法,可对昆虫介导的传粉效率产生积极影响,并确保最佳产量。总之,最近关于向日葵-传粉媒介相互作用的研究结果为开发更有利于传粉媒介生物多样性的品种和相应的种植制度铺平了道路,同时在气候变化的背景下保持高产。
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Progresses of the international community to understand sunflower–pollinator interactions through multiscale approaches
The first web conference on sunflower–pollinator interactions gathered the international community around a major topic for sunflower productivity and ecosystemic biodiversity. Insect-mediated pollination is important for increasing sunflower seed yield, but is dependent on environmental factors. Climate change can impact sunflower-pollinator interactions by influencing both plant and pollinator behavior. Natural or artificially elevated ambient temperatures appear to accelerate floret development and advance the timing of pollen presentation to coincide with pollinator activities. Drought showed no major effect on morphological traits such anther or corolla length, but dramatically reduced nectar and pollen productions. Flavonol-glycoside conjugates lower head transpiration thereby mitigating deleterious effects of abiotic stresses. Wild pollinators show fine scale preferences among sunflower varieties, likely due to the different resource focus of wild and managed honeybees. Agricultural practices such as planting flower strips to provide nesting sites for wild pollinators, or supplementing crop plots with hives, can have a positive effect on insect-mediated pollination efficiency and ensure optimal yields. All together, recent results on sunflower–pollinator interactions pave the way to develop varieties and corresponding cropping systems more favorable to pollinator biodiversity while maintaining high yields in the context of climate change.
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