The Environmental and Genetic Controls of Increment Suggest a Limited Adaptability of Native Populations of Norway Spruce to Weather Extremes

IF 2.4 2区 农林科学 Q1 FORESTRY Forests Pub Date : 2023-12-20 DOI:10.3390/f15010015
R. Matisons, J. Katrevičs, P. Zeltiņš, Diāna Jansone, Ā. Jansons
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Abstract

In the Baltics, warming is expected to burden the growth of Norway spruce Picea abies, with weather anomalies/extremes having strong triggering effects, which can be mitigated by tree breeding. Within the region, breeding programmes have been aiming for productivity, yet being conservative, their sustainability depends on the adaptability of native genotypes, which is unclear. The adaptability of genotypes can be assessed through local adaptations and phenotypic plasticity, with the sensitivity of increment depicting the conformity of genotypes and environments. To assess the adaptability of native populations to anticipated climates, local genetic adaptation and phenotypic plasticity of the weather sensitivity of the radial increment were assessed by the methods of time series analysis and quantitative genetics based on three clonal trials (low-density single-tree plot plantations of grafted clones of native plus trees) representing the local climatic gradient in Latvia. The growth of trees was sensitive to the moisture availability in summer and the thermal regime in winter, yet coinciding anomalies in both were associated with abrupt changes in tree ring width. These environmental effects differed among the clones, indicating genetic controls over the sensitivity of increment, which, however, decreased under a warmer climate, suggesting a limited adaptability of local populations to warming. Still, the weather-growth relationships showed moderate phenotypic plasticity, suggesting some mid-term adaptability. Accordingly, supplementation of breeding populations via assisted gene transfer with the genotypes that are adapted to warmer and drier climates appears crucial.
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增量的环境和遗传控制表明挪威云杉本土种群对极端天气的适应能力有限
在波罗的海地区,气候变暖预计会对挪威云杉的生长造成负担,天气异常/极端天气会产生强烈的触发效应,而树木育种可以减轻这种效应。在该地区,育种计划一直以提高生产力为目标,但由于保守,其可持续性取决于本地基因型的适应性,而这一点尚不明确。基因型的适应性可通过本地适应性和表型可塑性来评估,增量的敏感性描述了基因型与环境的一致性。为了评估本地种群对预期气候的适应性,我们采用时间序列分析和定量遗传学的方法,在代表拉脱维亚当地气候梯度的三个克隆试验(本地加树木嫁接克隆的低密度单树小区种植园)的基础上,对径向增量的气候敏感性的本地遗传适应性和表型可塑性进行了评估。树木的生长对夏季的水分供应和冬季的热量机制很敏感,但两者的共同异常与树环宽度的突然变化有关。这些环境影响在不同的克隆中存在差异,表明基因控制着增量的敏感性,但在气候变暖的情况下,这种敏感性会降低,这表明当地种群对气候变暖的适应能力有限。尽管如此,天气与生长的关系仍显示出适度的表型可塑性,这表明了一定的中期适应性。因此,通过辅助基因转移为育种种群补充适应更温暖和更干旱气候的基因型似乎至关重要。
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来源期刊
Forests
Forests FORESTRY-
CiteScore
4.40
自引率
17.20%
发文量
1823
审稿时长
19.02 days
期刊介绍: Forests (ISSN 1999-4907) is an international and cross-disciplinary scholarly journal of forestry and forest ecology. It publishes research papers, short communications and review papers. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.
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