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首页> 外文期刊>Nature Communications >Chromosome-level genome assembly of a parent species of widely cultivated azaleas
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Chromosome-level genome assembly of a parent species of widely cultivated azaleas

机译:染色体级基因组组装的父母种类广泛栽培的杜鹃花

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摘要

Azaleas (Ericaceae) comprise one of the most diverse ornamental plants, renowned for their cultural and economic importance. We present a chromosome-scale genome assembly for Rhododendron simsii, the primary ancestor of azalea cultivars. Genome analyses unveil the remnants of an ancient whole-genome duplication preceding the radiation of most Ericaceae, likely contributing to the genomic architecture of flowering time. Small-scale gene duplications contribute to the expansion of gene families involved in azalea pigment biosynthesis. We reconstruct entire metabolic pathways for anthocyanins and carotenoids and their potential regulatory networks by detailed analysis of time-ordered gene co-expression networks. MYB, bHLH, and WD40 transcription factors may collectively regulate anthocyanin accumulation in R. simsii, particularly at the initial stages of flower coloration, and with WRKY transcription factors controlling progressive flower coloring at later stages. This work provides a cornerstone for understanding the underlying genetics governing flower timing and coloration and could accelerate selective breeding in azalea. Azaleas are one of the most diverse ornamental plants and have cultural and economic importance. Here, the authors report a chromosome-scale genome assembly for the primary ancestor of the azalea cultivar Rhododendro simsi and identify transcription factors that may function in flower coloration at different stages.
机译:杜鹃花(Ericaceae)包括最多不同的观赏植物之一,以其文化和经济重要性而闻名。我们为杜鹃花的主要祖先提供了一种染色体级基因组组件,用于杜鹃花。基因组分析揭示了古代全基因组重复的残余,前面的大多数果皮的辐射,可能导致开花时间的基因组结构。小规模基因重复措施有助于扩展参与含Zalea颜料生物合成的基因家族。通过对时间有序基因共表达网络进行详细分析,我们通过详细分析来重建花青素和类胡萝卜素及其潜在调节网络的整个代谢途径。 MYB,BHLH和WD40转录因子可以共同调节R.IMSII中的花青素积累,特别是在花色的初始阶段,以及控制在以后的阶段的渐进花色的腕表着色。这项工作提供了理解治疗花序和着色的潜在遗传学的基石,可以加速杜鹃花的选择性繁殖。杜鹃花是最多样化的观赏植物之一,具有文化和经济的重要性。在这里,作者报告了含氮藻罗多发的主要祖先的染色体级基因组组件,并鉴定了在不同阶段的花色中起作用的转录因子。

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