Genomic signals of local adaptation across climatically heterogenous habitats in an invasive tropical fruit fly (Bactrocera tryoni)

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2023-10-30 DOI:10.1038/s41437-023-00657-y
Elahe Parvizi, Amy L. Vaughan, Manpreet K. Dhami, Angela McGaughran
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Abstract

Local adaptation plays a key role in the successful establishment of pest populations in new environments by enabling them to tolerate novel biotic and abiotic conditions experienced outside their native range. However, the genomic underpinnings of such adaptive responses remain unclear, especially for agriculturally important pests. We investigated population genomic signatures in the tropical/subtropical Queensland fruit fly, Bactrocera tryoni, which has an expanded range encompassing temperate and arid zones in Australia, and tropical zones in the Pacific Islands. Using reduced representation sequencing data from 28 populations, we detected allele frequency shifts associated with the native/invasive status of populations and identified environmental factors that have likely driven population differentiation. We also determined that precipitation, temperature, and geographic variables explain allelic shifts across the distribution range of B. tryoni. We found spatial heterogeneity in signatures of local adaptation across various climatic conditions in invaded areas. Specifically, disjunct invasive populations in the tropical Pacific Islands and arid zones of Australia were characterised by multiple significantly differentiated single nucleotide polymorphisms (SNPs), some of which were associated with genes with well-understood function in environmental stress (e.g., heat and desiccation) response. However, invasive populations in southeast Australian temperate zones showed higher gene flow with the native range and lacked a strong local adaptive signal. These results suggest that population connectivity with the native range has differentially affected local adaptive patterns in different invasive populations. Overall, our findings provide insights into the evolutionary underpinnings of invasion success of an important horticultural pest in climatically distinct environments.

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入侵热带果蝇(Bactrocera tryoni)在气候异质性栖息地的局部适应的基因组信号。
当地适应在新环境中成功建立害虫种群方面发挥着关键作用,使它们能够耐受当地范围外经历的新的生物和非生物条件。然而,这种适应性反应的基因组基础仍然不清楚,尤其是对于农业上重要的害虫。我们调查了热带/亚热带昆士兰果蝇Bactrocera tryoni的种群基因组特征,该果蝇的范围扩大到澳大利亚的温带和干旱地区,以及太平洋岛屿的热带地区。使用来自28个种群的减少代表性测序数据,我们检测了与种群的原生/入侵状态相关的等位基因频率变化,并确定了可能驱动种群分化的环境因素。我们还确定,降水、温度和地理变量可以解释B.tryoni分布范围内的等位基因变化。我们在入侵地区不同气候条件下的局部适应特征中发现了空间异质性。具体而言,热带太平洋岛屿和澳大利亚干旱区的间断入侵种群以多个显著分化的单核苷酸多态性(SNPs)为特征,其中一些单核苷酸多态性与在环境胁迫(如高温和干燥)反应中具有众所周知功能的基因有关。然而,澳大利亚东南部温带的入侵种群表现出较高的基因流动性和本地范围,并且缺乏强大的本地适应性信号。这些结果表明,种群与原生范围的连通性对不同入侵种群的局部适应模式产生了不同的影响。总的来说,我们的发现为一种重要的园艺害虫在气候不同的环境中入侵成功的进化基础提供了见解。
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CiteScore
7.20
自引率
4.30%
发文量
567
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