耐受性-抗性权衡的分子约束:有成本吗?

Q3 Agricultural and Biological Sciences Plant-environment interactions (Hoboken, N.J.) Pub Date : 2023-10-25 DOI:10.1002/pei3.10125
J. Miles Mesa, Ken N. Paige
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引用次数: 0

摘要

植物对食草动物具有无数的防御能力,包括组成性和诱导性化合物以及被称为耐受性的再生策略。最近的研究表明,植物的耐受性和抗性是正相关的,因为它们在相同的分子途径中共定位,即氧化戊糖磷酸途径。然而,考虑到这两种防御策略都利用了氧化戊糖磷酸途径中共享资源池中的碳骨架,维持这两种抗性-耐受性策略可能需要成本。在这里,我们通过双敲除cyp79B2和cyp79B3来研究维持这两种策略的适应度成本。cyp79B2和cyp79B3是吲哚硫代葡萄糖苷生物合成过程中的关键酶,将色氨酸转化为吲哚- 3 -乙酰氧肟(IAOx),并进一步用于生产吲哚硫代葡萄糖苷。这些突变株缺乏任何吲哚硫代葡萄糖苷,从而降低了植物的抗性。结果表明,敲除吲哚硫代葡萄糖苷的产生,从而使抗性途径之一导致适应度补偿增加约94%,使补偿不足的野生型哥伦比亚0型在受损后转变为补偿过度的基因型。我们讨论了观察到的模式的潜在机制基础。
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Molecular constraints on tolerance‐resistance trade‐offs: Is there a cost?
Abstract Plants possess myriad defenses against their herbivores, including constitutive and inducible chemical compounds and regrowth strategies known as tolerance. Recent studies have shown that plant tolerance and resistance are positively associated given they are co‐localized in the same molecular pathway, the oxidative pentose phosphate pathway. However, given that both defensive strategies utilize carbon skeletons from a shared resource pool in the oxidative pentose phosphate pathway there are likely costs in maintaining both resistance‐tolerance strategies. Here we investigate fitness costs in maintaining both strategies by utilizing a double knockout of cyp79B2 and cyp79B3 , key enzymes in the biosynthetic process of indole glucosinolates, which convert tryptophan to indole‐3‐acetaldoxime (IAOx) and is further used to produce indole glucosinolates. These mutant plants are devoid of any indole glucosinolates thus reducing plant resistance. Results show that knocking out indole glucosinolate production and thus one of the resistance pathways leads to an approximate 94% increase in fitness compensation shifting the undercompensating wild‐type Columbia‐0 to an overcompensating genotype following damage. We discuss the potential mechanistic basis for the observed patterns.
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CiteScore
2.70
自引率
0.00%
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审稿时长
15 weeks
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