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Nectar chemistry is tailored for both attraction of mutualists and protection from exploiters

机译:花蜜化学是专为吸引共产主义者和免受剥削者而设计的

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摘要

Plants produce nectar to attract pollinators in the case of floral nectar (FN) and defenders in the case of extrafloral nectar (EFN). Whereas nectars must function in the context of plant-animal mutualisms, their chemical composition makes them also attractive for non-mutualistic, exploiting organisms: nectar robbers and nectar-infesting microorganisms. We reviewed the chemical composition of both FNs and EFNs and found that nectar composition appears tailored to fulfil these ambivalent roles. Carbohydrates and amino acids usually function in the attraction of mutualists and appear adapted to the physiological needs of the respective mutualists. Volatiles are a further group of compounds that serves in the attractive function of nectars. By contrast, secondary compounds such as alkaloids and phenols serve the protection from nectar robbers, and most nectar proteins that have been characterised to date protect FN and EFN from microbial infestation. Nectar components serve both in attraction and the protection of nectar.
机译:在花蜜(FN)的情况下,植物产生花蜜来吸引传粉媒介,在花蜜(EFN)的情况下,植物产生防御者。尽管花蜜必须在植物-动物共生的环境中发挥作用,但其化学成分也使它们对非互惠的,正在利用的生物体也很有吸引力:花蜜强盗和侵害花蜜的微生物。我们审查了FN和EFN的化学成分,发现花蜜成分似乎是为满足这些矛盾角色而量身定制的。碳水化合物和氨基酸通常起到吸引共生者的作用,并且看起来适合于各个共生者的生理需要。挥发物是另一组可发挥花蜜吸引力的化合物。相比之下,诸如生物碱和苯酚之类的次要化合物则可保护免受花蜜强盗侵害,迄今已表征的大多数花蜜蛋白质可保护FN和EFN免受微生物侵染。花蜜成分既能吸引花蜜,又能保护花蜜。

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