Ecology and Evolutionary Biology, Cornell University, E443 Corson Hall, Ithaca, NY 14853, USA.
Department of Environmental Studies and Sciences, Ithaca College, 252 CNS, Ithaca, NY 14850, USA.
New Phytol. 2011 Jul;191(2):528-535. doi: 10.1111/j.1469-8137.2011.03701.x. Epub 2011 Mar 28.
Herbivory is thought to be detrimental to plant fitness and commonly results in a metabolic shift in the plant: photosynthetic processes are typically down-regulated, while resource allocation to defenses is increased in herbivore-attacked plants, resulting in fitness costs of induced plant responses. Wild tobacco, Nicotiana attenuata, attacked by Tupiocoris notatus mirid bugs becomes resistant against more damaging herbivores through mirid-induced direct and indirect defenses. However, mirid-induced resistance and tissue loss do not result in a reduction of plant fitness. These findings suggest induced metabolic responses allowing the plant to compensate for the lost tissue and resources allocated to defenses. While feeding by Manduca sexta larvae results in a strong down-regulation of photosynthesis, we demonstrate a specific induction of elevated photosynthetic activity in N. attenuata leaves by elicitors in mirid salivary secretions. The elevated CO(2) assimilation rate is sufficient to compensate for the loss of photosynthetically active tissue and balances the net photosynthesis of infested leaves. We discuss the observed increase in the plant's primary metabolic activity as a mechanism that allows plants to alleviate negative fitness effects of mirid attack and mediates the vaccination effects that result in a net benefit in environments with multiple herbivores.
食草作用被认为对植物的适应性有害,通常会导致植物的代谢转变:在受到草食动物攻击的植物中,光合作用过程通常会下调,而资源分配给防御的比例会增加,从而导致植物对诱导反应的适应代价。野生烟草 Nicotiana attenuata 受到 Tupiocoris notatus 盲蝽的攻击,通过盲蝽诱导的直接和间接防御,变得对更具破坏性的草食动物具有抗性。然而,盲蝽诱导的抗性和组织损失并不会导致植物适应性降低。这些发现表明,诱导的代谢反应允许植物补偿失去的组织和分配给防御的资源。虽然 Manduca sexta 幼虫的取食会强烈地下调光合作用,但我们证明了在 N. attenuata 叶片中,由盲蝽唾液分泌物中的激发子引起的光合作用活性的特定诱导。升高的 CO2 同化率足以补偿有活性的组织损失,并平衡受侵染叶片的净光合作用。我们讨论了观察到的植物初级代谢活性的增加,作为一种机制,使植物能够减轻盲蝽攻击的负面适应代价,并介导接种效应,从而在有多种草食动物的环境中获得净收益。