The Transcriptional Landscape of Adaptive Thermal Plasticity Within and Across Generations: The Role of Gene Expression and Alternative Splicing

IF 4.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fernando Diaz, Luciano M. Matzkin
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引用次数: 0

Abstract

There is increasing evidence for the co-occurrence of adaptive within-generation (WGP) and transgenerational (TGP) plasticity and the ecological scenarios driving both types of plasticity. However, some aspects of their transcriptional mechanisms, such as the role of alternative splicing and the consequences of parental acclimation across life stages, have remained elusive. We explore these fundamental questions by considering the desert endemic Drosophila mojavensis for which prior evidence indicates adaptive thermal acclimation within and across generations. We implement a full factorial design to estimate genome-wide patterns of differential gene expression (DE) and alternative splicing (AS) in response to acclimation treatments performed in the parental and offspring generations, as well as considering larval and adult stages. Our results demonstrate that mechanisms of alternative splicing represent a substantial difference between WGP and TGP. These mechanisms contribute substantially to transcriptional plasticity within generations but not across generations. We found a great number of genes associated with transcriptional TGP, which is exclusive to larval stages and not adult samples. Finally, we provide evidence demonstrating opposing transcriptional trajectories in differential gene expression between WGP and TGP. Thus, parental acclimation appears to up-regulate genes that are down-regulated during offspring acclimation. This pattern suggests a possible hypothesis for the mechanisms explaining the compensatory effect of parental acclimation in the offspring generation.

代内和代间适应性热可塑性的转录景观:基因表达和选择性剪接的作用。
越来越多的证据表明,代内适应性(WGP)和跨代适应性(TGP)可塑性以及驱动这两种可塑性的生态情景共同发生。然而,其转录机制的某些方面,如选择性剪接的作用和亲本适应在生命阶段的后果,仍然是难以捉摸的。我们通过考虑沙漠特有的莫沙韦果蝇(Drosophila mojavensis)来探索这些基本问题,先前的证据表明,在代内和代间,果蝇具有适应性热驯化。我们采用全因子设计来估计差异基因表达(DE)和选择性剪接(AS)的全基因组模式,以响应在亲代和后代世代中进行的驯化处理,并考虑幼虫期和成虫期。我们的研究结果表明,选择性剪接的机制代表了WGP和TGP之间的实质性差异。这些机制对代内而非代间的转录可塑性有很大贡献。我们发现了大量与转录TGP相关的基因,这些基因只存在于幼虫阶段,而不是成虫样本。最后,我们提供了证据证明WGP和TGP之间差异基因表达的相反转录轨迹。因此,亲代驯化似乎上调了在后代驯化过程中下调的基因。这种模式为解释亲代驯化对后代的补偿作用提供了一种可能的假说。
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来源期刊
Molecular Ecology
Molecular Ecology 生物-进化生物学
CiteScore
8.40
自引率
10.20%
发文量
472
审稿时长
1 months
期刊介绍: Molecular Ecology publishes papers that utilize molecular genetic techniques to address consequential questions in ecology, evolution, behaviour and conservation. Studies may employ neutral markers for inference about ecological and evolutionary processes or examine ecologically important genes and their products directly. We discourage papers that are primarily descriptive and are relevant only to the taxon being studied. Papers reporting on molecular marker development, molecular diagnostics, barcoding, or DNA taxonomy, or technical methods should be re-directed to our sister journal, Molecular Ecology Resources. Likewise, papers with a strongly applied focus should be submitted to Evolutionary Applications. Research areas of interest to Molecular Ecology include: * population structure and phylogeography * reproductive strategies * relatedness and kin selection * sex allocation * population genetic theory * analytical methods development * conservation genetics * speciation genetics * microbial biodiversity * evolutionary dynamics of QTLs * ecological interactions * molecular adaptation and environmental genomics * impact of genetically modified organisms
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