Optimal seasonal schedule for producing biogenic volatile organic compounds for tree defense

IF 1.9 4区 数学 Q2 BIOLOGY
Yoh Iwasa, Rena Hayashi, Akiko Satake
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引用次数: 0

Abstract

The leaves of many trees emit biogenic volatile organic compounds (BVOCs) that protect them from various threats, including herbivory, pathogens, and heat stress. In a previous study, we analyzed the optimal seasonal schedule for producing isoprene, a highly volatile BVOC, in leaves to mitigate heat damage and maximize net carbon gain. In this paper, we investigate the seasonal production schedule of BVOCs stored in leaves, such as monoterpenes and sesquiterpenes, which decay slowly. When the leaves are bitten, these chemicals are emitted and help to prevent further herbivory. The optimal seasonal schedule, analyzed using Pontryagin’s maximum principle, includes a period of singular control. Producing BVOCs for defense is advantageous if their decay rate is slow and the photosynthetic rate is fast. The amount of BVOCs produced increases with slower decay rate and faster photosynthetic rate. But it does not increase monotonically with the magnitude of the threat. BVOCs are produced earlier than the peak period of the threat for which the chemicals are intended. Based on the results of the model, we discuss the reported variations in BVOC production among different chemical species and tree species, as well as the seasonal patterns of gene expression in different pathways for BVOC production.
生产用于树木防御的生物挥发性有机化合物的最佳季节安排。
许多树木的叶子会释放生物挥发性有机化合物(BVOCs),保护它们免受各种威胁,包括草食性动物、病原体和热应力。在之前的一项研究中,我们分析了叶片产生异戊二烯(一种高挥发性生物挥发性有机化合物)的最佳季节安排,以减轻热损伤并最大限度地增加净碳增量。在本文中,我们研究了储存在叶片中的 BVOC(如单萜烯和倍半萜烯)的季节生产计划,这些 BVOC 腐烂速度较慢。当树叶被咬时,这些化学物质就会释放出来,有助于防止进一步的食草动物侵害。根据庞特里亚金的最大原则分析,最佳季节安排包括一个单一控制期。如果 BVOCs 的衰减速度慢而光合作用速度快,则产生 BVOCs 进行防御是有利的。产生的 BVOC 量会随着衰变速度的减慢和光合作用速度的加快而增加。但它并不随威胁程度的增加而单调增加。BVOC 的产生早于化学品所针对的威胁的高峰期。根据该模型的结果,我们讨论了不同化学品种类和树种之间 BVOC 生成量的变化,以及 BVOC 生成不同途径中基因表达的季节性模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
4.20
自引率
5.00%
发文量
218
审稿时长
51 days
期刊介绍: The Journal of Theoretical Biology is the leading forum for theoretical perspectives that give insight into biological processes. It covers a very wide range of topics and is of interest to biologists in many areas of research, including: • Brain and Neuroscience • Cancer Growth and Treatment • Cell Biology • Developmental Biology • Ecology • Evolution • Immunology, • Infectious and non-infectious Diseases, • Mathematical, Computational, Biophysical and Statistical Modeling • Microbiology, Molecular Biology, and Biochemistry • Networks and Complex Systems • Physiology • Pharmacodynamics • Animal Behavior and Game Theory Acceptable papers are those that bear significant importance on the biology per se being presented, and not on the mathematical analysis. Papers that include some data or experimental material bearing on theory will be considered, including those that contain comparative study, statistical data analysis, mathematical proof, computer simulations, experiments, field observations, or even philosophical arguments, which are all methods to support or reject theoretical ideas. However, there should be a concerted effort to make papers intelligible to biologists in the chosen field.
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