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Root growth dynamics of Nicotiana attenuata seedlings are affected by simulated herbivore attack

机译:模拟草食动物攻击影响了烟草弱苗的根系生长动力学

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摘要

Many studies demonstrate resource-based trade-offs between growth and defence on a large timescale. Yet, the short-term dynamics of this growth reaction are still completely unclear, making it difficult to explain growth-defence trade-offs mechanistically. In this study, image-based non-destructive methods were used to quantify root growth reactions happening within hours following simulated herbivore attack. The induction of wound reactions in Nicotiana attenuata in the seedling stage led to transiently decreased root growth rates. Application of the oral secretion of the specialist herbivore Manduca sexta to the leaves led to a transient decrease in root growth that was more pronounced than if a mere mechanical wounding was imposed. Root growth reduction was more pronounced than leaf growth reduction. When fatty acid-amino acid conjugates (FACs) were applied to wounds, root growth reduction occurred in the same intensity as when oral secretion was applied. Timing of the transient growth reduction coincided with endogenous bursts of jasmonate (JA) and ethylene emissions reported in literature. Simulation of a wound response by applying methyl jasmonate (MeJA) led to more prolonged negative effects on root growth. Increased nicotine concentrations, trichome lengths and densities were observed within 72 h in seedlings that were treated with MeJA or that were mechanically wounded. Overall, these reactions indicate that even in a very early developmental stage, the diversion of plant metabolism from primary (growth-sustaining) to secondary (defence-related) metabolism can cause profound alterations of plant growth performance.
机译:许多研究表明,在较长的时间范围内,增长与国防之间基于资源的权衡取舍。然而,这种增长反应的短期动力仍然是完全不清楚的,因此很难用机械方法来解释增长与防御之间的权衡。在这项研究中,基于图像的非破坏性方法被用于量化模拟食草动物攻击后数小时内发生的根部生长反应。苗期烟草中的伤口反应的诱导导致根部生长速率瞬时降低。在叶子上施用草食性特殊食草动物曼杜卡六倍体的口腔分泌物会导致根系生长的短暂减少,这比仅施加机械性伤口的情况更为明显。减少根生长比减少叶生长更为明显。将脂肪酸-氨基酸共轭物(FAC)应用于伤口时,根部生长减少的强度与口服分泌物时的强度相同。瞬态生长降低的时机与文献报道的内源性茉莉酸酯(JA)爆发和乙烯排放同时发生。通过应用茉莉酸甲酯(MeJA)模拟伤口反应导致对根部生长的负面影响更长。在用MeJA处理或机械损伤的幼苗中,在72小时内观察到烟碱浓度,毛状体长度和密度增加。总体而言,这些反应表明,即使在非常早期的发育阶段,植物新陈代谢从初级(维持生长)向次级(与防御相关的)代谢的转移也可能导致植物生长性能的显着改变。

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