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Flux Control in a Defense Pathway in Arabidopsis thaliana Is Robust to Environmental Perturbations and Controls Variation in Adaptive Traits

机译:拟南芥防御途径中的通量控制对环境扰动具有鲁棒性并能控制适应性状的变异

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摘要

The connections leading from genotype to fitness are not well understood, yet they are crucial for a diverse set of disciplines. Uncovering the general properties of biochemical pathways that influence ecologically important traits is an effective way to understand these connections. Enzyme flux control (or, control over pathway output) is one such pathway property. The flux-controlling enzyme in the antiherbivory aliphatic glucosinolate pathway of Arabidopsis thaliana has majority flux control under benign greenhouse conditions and has evidence of nonneutral evolution. However, it is unknown how patterns of flux control may change in different environments, or if insect herbivores respond to differences in pathway flux. We test this, first through genetic manipulation of the loci that code for the aliphatic glucosinolate pathway enzymes under a variety of environments (reduced water, reduced soil nutrients, leaf wounding and methyl jasmonate treatments), and find that flux control is consistently in the first enzyme of the pathway. We also find that a generalist herbivore, Trichoplusia ni, modifies its feeding behavior depending on the flux through the glucosinolate pathway. The influence over herbivore behavior combined with the consistency of flux control suggests that genes controlling flux might be repeatedly targeted by natural selection in diverse environments and species.
机译:从基因型到适应性之间的联系尚未得到很好的理解,但是它们对于多种学科至关重要。揭示影响生态重要特征的生化途径的一般特性是了解这些联系的有效方法。酶通量控制(或控制途径输出)就是这样一种途径特性。拟南芥抗草食性脂肪族芥子油苷途径中的通量控制酶在温室良性条件下具有多数通量控制,并且具有非中性进化的证据。然而,未知的是通量控制的模式在不同的环境中会如何改变,或者昆虫食草动物是否对途径通量的差异做出响应。我们首先通过在各种环境下(减少水,减少土壤养分,叶片受伤和茉莉酸甲酯处理)对脂肪族芥子油苷途径酶编码的基因座进行遗传操作来进行测试,然后发现通量控制始终如一途径的酶。我们还发现,通才的草食性毛癣菌Trichoplusia ni会根据通过芥子油苷途径的通量来改变其摄食行为。对草食动物行为的影响以及通量控制的一致性表明,控制通量的基因可能会在不同的环境和物种中被自然选择反复地作为目标。

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