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Maternal environment regulates morphological and physiological traits in Eucalyptus grandis

机译:母体环境调节桉树祖母的形态和生理性状

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The phenotype of a plant can be shaped by the biotic and abiotic conditions to which their parents are subjected. This phenotypic plasticity known as maternal environmental effect occurs regardless of the changes in the DNA sequences. Whereas the effect of the maternal environment on plant phenotype has been studied, its specific influence on plant physiology is less clear. This study considered the influence of the maternal environment on the regulation of plant morphology and physiology in progeny of Eucalyptus grandis. Plants were grown from seeds collected from two E. grandis clonal seed orchards that differed in environmental conditions (e.g. precipitation). Plant relative growth rate (RGR), leaf gas exchange and water use efficiency (WUE) were measured in the seedlings. RGR was 10% higher in the offspring from the maternal environment receiving higher precipitation levels. Leaf gas exchange, specifically leaves intercellular CO2, and intrinsic WUE were also influenced by maternal environments. Intrinsic WUE was significantly lower in the orchard that received lower precipitation levels. The results demonstrate that the maternal environment can regulate the physiology of E. grandis in the subsequent generation. These analyses are useful to optimise tree improvement in a changing environment. Moreover, in a scenario of climate change, maternal environmental effects may be a crucial mechanism for certain species to get acclimated to sudden changes in environmental conditions.
机译:植物的表型可以由父母受到父母的生物和非生物条件来塑造。无论DNA序列中的变化如何,都会出现称为母体环境效果的表型可塑性。虽然已经研究了母体环境对植物表型的影响,但其对植物生理的特定影响不太清楚。本研究审议了母体环境对桉树后代植物形态和生理学调控的影响。从从两种大型克隆种子果园中收集的种子生长植物,这些果园不同于环境条件(例如降水)。在幼苗中测量植物相对生长速率(RGR),叶片气体交换和用水效率(WUE)。 RGR在接受较高降水水平的母体环境中的后代在后代较高了10%。叶片气体交换,特别是叶细胞间二氧化碳,并且内在的WUE也受母体环境的影响。在果园中,内在的Wue显着降低,得到较低的降水水平。结果表明,孕产妇环境可以调节随后的一代大的祖母的生理学。这些分析可用于优化变化环境的树改善。此外,在气候变化的情况下,母体环境影响可能是某些物种适应环境条件突然变化的一个关键机制。

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