Wright State University, 3640 Colonel Glenn Hwy, Dayton, OH, 45435, USA.
The Bartlett Tree Research Laboratories and The Morton Arboretum, 4100 IL-53, Lisle, IL, 60532, USA.
J Chem Ecol. 2020 Dec;46(11-12):1117-1130. doi: 10.1007/s10886-020-01223-0. Epub 2020 Oct 10.
White fringetree is a host for the invasive emerald ash borer (EAB) but is of lower quality than the related and highly susceptible black ash. Field observations suggest that host trees grown in full sun are more resistant to EAB than those in shade, however the impact of light limitation on chemical defenses has not been assessed. We quantified constitutive and jasmonate-induced phloem defenses and growth patterns of white fringetree and black ash under differential light conditions and related them to EAB larval performance. White fringetree had significantly lower constitutive and induced activities of peroxidase, polyphenol oxidase, β-glucosidase, chitinase and lignin content, but significantly higher gallic acid equivalent soluble phenolic, soluble sugar, and oleuropein concentrations compared to black ash. Multivariate analyses based on tissue chemical attributes displayed clear separation of species and induced defense responses. Further, EAB performed significantly worse on white fringetree than black ash, consistent with previous studies. Light limitation did not impact measured defenses or EAB larval performance, but it did decrease current year growth and increase photosynthetic efficiency. Overall our results suggest that phenolic profiles, metabolite abundance, and growth traits are important in mediating white fringetree resistance to EAB, and that short-term light limitation does not influence phloem chemistry or larval success.
白蜡树是入侵性的绿斑萤叶甲(EAB)的寄主,但比相关的高度易感的黑灰树质量差。田间观察表明,全日照生长的寄主树木比遮荫树木更能抵抗 EAB,但光照限制对化学防御的影响尚未评估。我们量化了白蜡树和黑灰树在不同光照条件下的组成型和茉莉酸诱导的韧皮部防御和生长模式,并将其与 EAB 幼虫的表现相关联。与黑灰树相比,白蜡树的过氧化物酶、多酚氧化酶、β-葡萄糖苷酶、几丁质酶和木质素含量的组成型和诱导型活性显著降低,但没食子酸当量可溶性酚、可溶性糖和橄榄苦苷浓度显著升高。基于组织化学属性的多元分析显示出物种和诱导防御反应的明显分离。此外,EAB 在白蜡树上的表现明显比在黑灰树上差,这与以前的研究一致。光照限制没有影响测定的防御措施或 EAB 幼虫的表现,但它确实减少了当年的生长并提高了光合作用效率。总的来说,我们的研究结果表明,酚类特征、代谢物丰度和生长特性在介导白蜡树对 EAB 的抗性方面很重要,短期光照限制不会影响韧皮部化学物质或幼虫的成功。