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Mediation of seed provisioning in the transmission of environmental maternal effects inMaritime pine (Pinus pinaster Aiton)

机译:种子供应在环境母婴传播中的中介作用海上松(Pinus pinaster Aiton)

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摘要

Although maternal environmental effects are increasingly recognized as an important source of phenotypic variation with relevant impacts in evolutionary processes, their relevance in long-lived plants such as pine trees is largely unknown. Here, we used a powerful sample size and a strong quantitative genetic approach to analyse the sources of variation of early seedling performance and to identify seed mass (SM)-dependent and -independent maternal environmental effects in Maritime pine. We measured SM of 8924 individual seeds collected from 10 genotypes clonally replicated in two environments of contrasting quality (favourable and stressful), and we measured seedling growth rate and biomass allocation to roots and shoots. SM was extremely variable (up to 14-fold) and strongly determined by the maternal environment and the genotype of the mother tree. The favourable maternal environment led to larger cones, larger seeds and reduced SM variability. The maternal environment also determined the offspring phenotype, with seedlings coming from the favourable environment being 35% larger and with greater root/shoot ratio. Transgenerational plasticity appears, thus, to be a relevant source of phenotypic variation in the early performance of this pine species. Seed provisioning explained most of the effect of the maternal environment on seedling total biomass. Environmental maternal effects on seedling biomass allocation were, however, determinedthrough SM-independent mechanisms, suggesting that other epigenetic regulation channelsmay be involved.
机译:尽管越来越多的人认为母亲的环境影响是表型变异的重要来源,并且对进化过程产生了相关影响,但在诸如松树这样的长寿植物中它们的相关性却鲜为人知。在这里,我们使用了强大的样本量和强大的定量遗传方法来分析早期松树性能变化的根源,并确定海松中种子质量(SM)依赖性和非依赖性母体环境影响。我们测量了从两种不同质量(有利和压力)环境中无性复制的10个基因型收集的8924颗种子的SM,并测量了幼苗的生长速率以及生物量在根和芽上的分配。 SM极易变化(最多14倍),并且强烈取决于母体环境和母树的基因型。有利的产妇环境导致更大的球果,更大的种子和降低的SM变异性。母体环境也决定了后代的表型,来自有利环境的幼苗比后者大35%,根/茎比更大。因此,跨代可塑性似乎是该松树树种早期表现中表型变异的重要来源。种子供应解释了母源环境对幼苗总生物量的大部分影响。但是,确定了环境母体对幼苗生物量分配的影响通过独立于SM的机制,提示其他表观遗传调控通道可能涉及。

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