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植物、昆虫和微生物之间的相互作用:农业生态学中种间化学通讯的阐明。

Interactions Among Plants, Insects, and Microbes: Elucidation of Inter-Organismal Chemical Communications in Agricultural Ecology.

机构信息

Chemistry Research Unit, Center for Medical, Agricultural and Veterinary Entomology, Agricultural Research Service , U.S. Department of Agriculture , 1700 SW 23rd Drive , Gainesville , Florida 32608 , United States.

Center for Chemical Ecology , Penn State University , University Park , Pennsylvania 16802 , United States.

出版信息

J Agric Food Chem. 2018 Jul 5;66(26):6663-6674. doi: 10.1021/acs.jafc.8b01763. Epub 2018 Jun 25.

Abstract

The last 2 decades have witnessed a sustained increase in the study of plant-emitted volatiles and their role in plant-insect, plant-microbe, and plant-plant interactions. While each of these binary systems involves complex chemical and biochemical processes between two organisms, the progression of increasing complexity of a ternary system (i.e., plant-insect-microbe), and the study of a ternary system requires nontrivial planning. This planning can include an experimental design that factors in potential overarching ecological interactions regarding the binary or ternary system, correctly identifying and understanding unexpected observations that may occur during the experiment and thorough interpretation of the resultant data. This challenge of planning, performing, and interpreting a plant's defensive response to multiple biotic stressors will be even greater when abiotic stressors (i.e., temperature or water) are factored into the system. To fully understand the system, we need to not only continue to investigate and understand the volatile profiles but also include and understand the biochemistry of the plant's response to these stressors. In this review, we provide examples and discuss interaction considerations with respect to how readers and future authors of the Journal of Agricultural and Food Chemistry can contribute their expertise toward the extraction and interpretation of chemical information exchanged between agricultural commodities and their associated pests. This holistic, multidisciplinary, and thoughtful approach to interactions of plants, insects, and microbes, and the resultant response of the plants can lead to a better understanding of agricultural ecology, in turn leading to practical and viable solutions to agricultural problems.

摘要

在过去的 20 年中,人们对植物挥发物及其在植物-昆虫、植物-微生物和植物-植物相互作用中的作用进行了持续的研究。虽然这些二元系统中的每一个都涉及到两种生物之间复杂的化学和生化过程,但三元系统(即植物-昆虫-微生物)的复杂性不断增加的进展,以及三元系统的研究需要进行大量的规划。这种规划可以包括一个实验设计,其中考虑了关于二元或三元系统的潜在总体生态相互作用,正确识别和理解实验过程中可能出现的意外观察结果,并对产生的数据进行彻底解释。当将非生物胁迫因子(如温度或水)纳入系统时,规划、执行和解释植物对多种生物胁迫因子的防御反应的挑战将会更大。为了全面了解这个系统,我们不仅需要继续调查和了解挥发物的特征,还需要包括并理解植物对这些胁迫因子的生化反应。在这篇综述中,我们提供了一些例子,并讨论了与读者和《农业与食品化学杂志》未来作者如何利用他们的专业知识来提取和解释农业商品与其相关害虫之间交换的化学信息有关的相互作用考虑因素。这种对植物、昆虫和微生物相互作用以及植物的反应的整体、多学科和深思熟虑的方法,可以促进对农业生态学的更好理解,从而为农业问题提供实际可行的解决方案。

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