Genotypic Variation and Potential Mechanisms of Resistance against Multiple Insect Herbivores in Cranberries.

IF 2.2 3区 环境科学与生态学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Chemical Ecology Pub Date : 2024-07-19 DOI:10.1007/s10886-024-01522-w
Paolo Salazar-Mendoza, Gonzalo Miyagusuku-Cruzado, M Monica Giusti, Cesar Rodriguez-Saona
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Abstract

Plant genotypes often exhibit varying resistance levels to herbivores. However, the impact of this genotypic variation on resistance against multiple herbivores remains poorly understood, especially in crops undergoing recent process of domestication. To address this gap, we studied the magnitude and mechanism of resistance in 12 cranberry (Vaccinium macrocarpon) genotypes to three leaf-chewing herbivores - Sparganothis fruitworm (Sparganothis sulfureana), spotted fireworm (Choristoneura parallela), and spongy moth (Lymantria dispar) - along a domestication gradient (native 'wild' genotypes, 'early hybrid' genotypes, and 'modern hybrid' genotypes). Like cranberries, S. sulfureana and C. parallela are native to the United Sates, while L. dispar is an invasive pest. We measured the survival and growth of larvae on each genotype, as well as variation in plant performance (height and biomass) and leaf defensive chemical traits (C/N ratio, total phenolics, total proanthocyanidins, and flavonols levels) in these genotypes to elucidate potential resistance mechanisms. We found differences in C. parallela and L. dispar larval performance across genotypes, with larvae performing better on the modern hybrid genotypes, while S. sulfureana showed no differences. Morphological and chemical traits varied among genotypes, with total phenolics being the only trait correlated with C. parallela and L. dispar larval performance. Notably, the wild genotypes 'McFarlin' and 'Potter' had higher total phenolics and were more resistant to both herbivores than the modern hybrids 'Demoranville' and 'Mullica Queen.' This research contributes to a comprehensive understanding of the impact of crop domestication on multiple insect herbivores, offering insights for future breeding efforts to enhance host-plant resistance against agricultural pests.

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小红莓的基因型变异和抵御多种食草昆虫的潜在机制。
植物基因型对食草动物的抵抗力往往各不相同。然而,人们对这种基因型变异对抵抗多种食草动物的影响仍然知之甚少,尤其是对最近才被驯化的作物。为了填补这一空白,我们沿着驯化梯度(本地 "野生 "基因型、"早期杂交 "基因型和 "现代杂交 "基因型)研究了 12 个蔓越橘(Vaccinium macrocarpon)基因型对三种啃食叶片的食草动物(Sparganothis fruitworm (Sparganothis sulfureana))、斑火虫(Choristoneura parallela)和海绵蛾(Lymantria dispar)的抗性大小和机制。与小红莓一样,S. sulfureana 和 C. parallela 是美国的原生植物,而 L. dispar 是一种入侵害虫。我们测量了幼虫在每个基因型上的存活和生长情况,以及这些基因型的植株表现(高度和生物量)和叶片防御性化学特征(C/N比、总酚类、总原花青素和黄酮醇水平)的变化,以阐明潜在的抗性机制。我们发现 C. parallela 和 L. dispar 幼虫在不同基因型上的表现存在差异,幼虫在现代杂交基因型上表现更好,而 S. sulfureana 则没有差异。不同基因型的形态和化学性状各不相同,总酚是唯一与 C. parallela 和 L. dispar 幼虫表现相关的性状。值得注意的是,与现代杂交种 "Demoranville "和 "Mullica Queen "相比,野生基因型 "McFarlin "和 "Potter "的总酚含量更高,对这两种食草动物的抗性也更强。这项研究有助于全面了解作物驯化对多种昆虫食草动物的影响,为今后提高寄主植物抗农业害虫能力的育种工作提供启示。
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来源期刊
Journal of Chemical Ecology
Journal of Chemical Ecology 环境科学-生化与分子生物学
CiteScore
5.10
自引率
4.30%
发文量
58
审稿时长
4 months
期刊介绍: Journal of Chemical Ecology is devoted to promoting an ecological understanding of the origin, function, and significance of natural chemicals that mediate interactions within and between organisms. Such relationships, often adaptively important, comprise the oldest of communication systems in terrestrial and aquatic environments. With recent advances in methodology for elucidating structures of the chemical compounds involved, a strong interdisciplinary association has developed between chemists and biologists which should accelerate understanding of these interactions in nature. Scientific contributions, including review articles, are welcome from either members or nonmembers of the International Society of Chemical Ecology. Manuscripts must be in English and may include original research in biological and/or chemical aspects of chemical ecology. They may include substantive observations of interactions in nature, the elucidation of the chemical compounds involved, the mechanisms of their production and reception, and the translation of such basic information into survey and control protocols. Sufficient biological and chemical detail should be given to substantiate conclusions and to permit results to be evaluated and reproduced.
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