Climate adaptation in Populus trichocarpa: key adaptive loci identified for stomata and leaf traits.

IF 8.1 1区 生物学 Q1 Agricultural and Biological Sciences
New Phytologist Pub Date : 2025-07-29 DOI:10.1111/nph.70343
Marie C Klein, Zi Meng, Jack Bailey-Bale, Suzanne Milner, Peicai Shi, Wellington Muchero, Jin-Gui Chen, Timothy J Tschaplinski, Daniel Jacobson, John Lagergren, Matthew Lane, Chris O'Brien, Hari Chhetri, Chanaka Roshan Abeyratne, Mengjun Shu, Peter Freer-Smith, Thomas N Buckley, Troy S Magney, J Grey Monroe, Gerald A Tuskan, Gail Taylor
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引用次数: 0

Abstract

We investigated adaptive genetic variation in Populus trichocarpa, a potential biofuel feedstock crop, to better understand how physiological traits may influence tolerance to water limitation. Our study focused on leaf and stomatal traits, given their roles in plant-water relations and adaptation. Using a diversity panel of over 1300 genotypes, we measured 14 leaf and stomatal traits under control (well-watered) and drought (water-limited) conditions. We conducted genome-wide association studies (GWAS), climate association analyses, and transcriptome (RNA-seq) profiling to identify genetic loci associated with phenotypic variation and adaptation. Stomatal traits, including size and density, were correlated with the climate of origin, with genotypes from more arid regions tending to have smaller but denser stomata. GWAS identified multiple loci associated with trait variation, including a major-effect region on chromosome 10 linked to stomatal size and abaxial contact angle. This locus overlapped with a tandem array of 3-ketoacyl-CoA synthase (KCS) genes and showed strong allele-climate and gene expression associations. Our findings reveal genetic and phenotypic variation consistent with local adaptation and suggest that future climates may favor alleles associated with smaller stomata, particularly under increasing aridity. This work provides insights into climate adaptation and breeding strategies for resilience in perennial crops.

毛杨的气候适应:气孔和叶片性状的关键适应位点。
为了更好地了解生理性状如何影响对水分限制的耐受性,我们研究了一种潜在的生物燃料原料——毛杨(Populus trichocarpa)的适应性遗传变异。我们的研究重点是叶片和气孔性状,考虑到它们在植物与水的关系和适应中的作用。利用超过1300个基因型的多样性面板,我们测量了控制(丰水)和干旱(限水)条件下的14个叶片和气孔性状。我们进行了全基因组关联研究(GWAS)、气候关联分析和转录组(RNA-seq)分析,以确定与表型变异和适应相关的遗传位点。气孔大小和密度等性状与原产地气候相关,来自干旱地区的基因型气孔更小但密度更大。GWAS发现了多个与性状变异相关的位点,包括10号染色体上一个与气孔大小和背面接触角相关的主要影响区域。该位点与3-酮酰基辅酶a合成酶(KCS)基因串联阵列重叠,并表现出强烈的等位基因-气候和基因表达相关性。我们的研究结果揭示了遗传和表型变异与当地适应一致,并表明未来的气候可能有利于与较小气孔相关的等位基因,特别是在日益干旱的情况下。这项工作为多年生作物的气候适应和育种策略提供了见解。
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来源期刊
New Phytologist
New Phytologist PLANT SCIENCES-
CiteScore
17.60
自引率
5.30%
发文量
728
审稿时长
1 months
期刊介绍: New Phytologist is a leading publication that showcases exceptional and groundbreaking research in plant science and its practical applications. With a focus on five distinct sections - Physiology & Development, Environment, Interaction, Evolution, and Transformative Plant Biotechnology - the journal covers a wide array of topics ranging from cellular processes to the impact of global environmental changes. We encourage the use of interdisciplinary approaches, and our content is structured to reflect this. Our journal acknowledges the diverse techniques employed in plant science, including molecular and cell biology, functional genomics, modeling, and system-based approaches, across various subfields.
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