Rigsby Chad M, Kinahan Ian G, May Amelia, Kostka Amy, Houseman Nick, Savage Suzanne K, Whitney Elizabeth R, Preisser Evan L
Department of Biological Sciences, The University of Rhode Island, Kingston, RI.
Environ Entomol. 2020 Oct 17;49(5):1226-1231. doi: 10.1093/ee/nvaa104.
Hemlock woolly adelgid is an invasive piercing-sucking insect in eastern North America, which upon infestation of its main host, eastern hemlock ('hemlock'), improves attraction and performance of folivorous insects on hemlock. This increased performance may be mediated by hemlock woolly adelgid feeding causing antagonism between the the jasmonic acid and other hormone pathways. In a common garden experiments using hemlock woolly adelgid infestation and induction with methyl jasmonate (MeJA) and measures of secondary metabolite contents and defense-associated enzyme activities, we explored the impact of hemlock woolly adelgid feeding on the local and systemic induction of jasmonic acid (JA)-elicited defenses. We found that in local tissue hemlock woolly adelgid or MeJA exposure resulted in unique induced phenotypes, whereas the combined treatment resulted in an induced phenotype that was a mixture of the two individual treatments. We also found that if the plant was infested with hemlock woolly adelgid, the systemic response of the plant was dominated by hemlock woolly adelgid, regardless of whether MeJA was applied. Interestingly, in the absence of hemlock woolly adelgid, hemlock plants had a very weak systemic response to MeJA. We conclude that hemlock woolly adelgid infestation prevents systemic induction of JA-elicited defenses. Taken together, compromised local JA-elicited defenses combined with weak systemic induction could be major contributors to increased folivore performance on hemlock woolly adelgid-infested hemlock.
铁杉球蚜是北美东部一种具有入侵性的刺吸式昆虫,它在侵染其主要寄主——东部铁杉(“铁杉”)后,会增强食叶昆虫对铁杉的吸引力及在铁杉上的生存能力。这种生存能力的增强可能是由铁杉球蚜取食导致茉莉酸与其他激素途径之间产生拮抗作用介导的。在一项利用铁杉球蚜侵染、茉莉酸甲酯(MeJA)诱导以及测量次生代谢物含量和防御相关酶活性的普通花园实验中,我们探究了铁杉球蚜取食对茉莉酸(JA)诱导防御的局部和系统诱导的影响。我们发现,在局部组织中,铁杉球蚜或MeJA处理会导致独特的诱导表型,而联合处理则导致一种介于两种单独处理之间的诱导表型。我们还发现,如果植物被铁杉球蚜侵染,无论是否施用MeJA,植物的系统反应都以铁杉球蚜为主导。有趣的是,在没有铁杉球蚜的情况下,铁杉植物对MeJA的系统反应非常微弱。我们得出结论,铁杉球蚜侵染会阻止JA诱导防御的系统诱导。综上所述,局部JA诱导防御受损以及系统诱导微弱可能是导致食叶动物在被铁杉球蚜侵染的铁杉上生存能力增强的主要因素。