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Recent advancements to study flowering time in almond and other Prunus species

机译:研究杏仁和其他李属品种开花时间的最新进展

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摘要

Flowering time is an important agronomic trait in almond since it is decisive to avoid the late frosts that affect production in early flowering cultivars. Evaluation of this complex trait is a long process because of the prolonged juvenile period of trees and the influence of environmental conditions affecting gene expression year by year. Consequently, flowering time has to be studied for several years to have statistical significant results. This trait is the result of the interaction between chilling and heat requirements. Flowering time is a polygenic trait with high heritability, although a major gene Late blooming (Lb) was described in “Tardy Nonpareil.” Molecular studies at DNA level confirmed this polygenic nature identifying several genome regions (Quantitative Trait Loci, QTL) involved. Studies about regulation of gene expression are scarcer although several transcription factors have been described as responsible for flowering time. From the metabolomic point of view, the integrated analysis of the mechanisms of accumulation of cyanogenic glucosides and flowering regulation through transcription factors open new possibilities in the analysis of this complex trait in almond and in other Prunus species (apricot, cherry, peach, plum). New opportunities are arising from the integration of recent advancements including phenotypic, genetic, genomic, transcriptomic, and metabolomics studies from the beginning of dormancy until flowering.
机译:开花时间是杏仁的一项重要农艺性状,因为它对于避免影响早开花品种产量的后期霜冻至关重要。这种复杂性状的评估是一个漫长的过程,因为树木的幼年期延长,并且环境条件的影响逐年影响基因表达。因此,开花时间必须研究数年才能获得统计学上的显着结果。该特征是冷却和热量需求之间相互作用的结果。开花时间是具有高遗传力的多基因性状,尽管在“ Tardy Nonpareil”中描述了一个主要基因“晚开花”(Lb)。 DNA水平的分子研究证实了这种多基因性质,可以确定涉及的几个基因组区域(Quantitative Trait Loci,QTL)。尽管已经描述了几种转录因子与开花时间有关,但有关基因表达调控的研究却很少。从代谢组学的角度来看,通过转录因子对生氰苷的积累和开花调控机制的综合分析为分析杏仁和其他李属物种(杏,樱桃,桃,李子)的这种复杂性状打开了新的可能性。 。从休眠期开始到开花期,包括表型,遗传,基因组,转录组和代谢组学研究在内的最新进展的整合带来了新的机遇。

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