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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Identification of genes related to the phenotypic variations of a synthesized Paulownia (Paulownia tomentosa×Paulownia fortunei) autotetraploid
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Identification of genes related to the phenotypic variations of a synthesized Paulownia (Paulownia tomentosa×Paulownia fortunei) autotetraploid

机译:鉴定与合成泡桐(Paulownia tomentosa×Paulownia fortunei)同源四倍体表型变异相关的基因

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Paulownia is a fast-growing deciduous tree native to China. It has great economic importance for the pulp and paper industries, as well as ecological prominence in forest ecosystems. Paulownia is of much interest to plant breeder keen to explore new plant varieties by selecting on the basis of phenotype. A newly synthesized autotetraploid Paulownia exhibited advanced characteristics, such as greater yield, and higher resistance than the diploid tree. However, tissue-specific transcriptome and genomic data in public databases are not sufficient to understand the molecular mechanisms associated with genome duplication. To evaluate the effects of genome duplication on the phenotypic variations in Paulownia tomentosa×. Paulownia fortunei, the transcriptomes of the autotetraploid and diploid Paulownia were compared. Using Illumina sequencing technology, a total of 82,934 All-unigenes with a mean length of 1109. bp were assembled. The data revealed numerous differences in gene expression between the two transcriptomes, including 718 up-regulated and 667 down-regulated differentially expressed genes between the two Paulownia trees. An analysis of the pathway and gene annotations revealed that genes involved in nucleotide sugar metabolism in plant cell walls were down-regulated, and genes involved in the light signal pathway and the biosynthesis of structural polymers were up-regulated in autotetraploid Paulownia. The differentially expressed genes may contribute to the observed phenotypic variations between diploid and autotetraploid Paulownia. These results provide a significant resource for understanding the variations in Paulownia polyploidization and will benefit future breeding work.
机译:泡桐是一棵生长迅速的落叶树,原产于中国。它对制浆造纸业以及森林生态系统中的生态重要性具有重要的经济意义。渴望通过基于表型的选择来探索新植物品种的植物育种家对泡桐很感兴趣。与二倍体树相比,新合成的四倍体泡桐表现出先进的特性,例如更高的产量和更高的抗性。但是,公共数据库中的组织特异性转录组和基因组数据不足以了解与基因组复制相关的分子机制。为了评估基因组重复对毛泡桐×表型变异的影响。比较了泡桐,同源四倍体和二倍体泡桐的转录组。使用Illumina测序技术,总共组装了82,934个平均单基因,平均长度为1109. bp。数据揭示了两个转录组之间基因表达的众多差异,包括两个泡桐树之间的718个上调和667个下调的差异表达基因。对途径和基因注释的分析表明,植物四倍体泡桐中与植物细胞壁核苷酸糖代谢有关的基因被下调,而与光信号途径和结构聚合物的生物合成有关的基因被上调。差异表达的基因可能有助于二倍体和同源四倍体泡桐之间的表型变异。这些结果为理解泡桐多倍体的变异提供了重要的资源,并将有助于将来的育种工作。

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