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Genome-wide expression analysis of salt-stressed diploid and autotetraploid Paulownia tomentosa

机译:盐胁迫二倍体和四倍体泡桐泡桐的全基因组表达分析

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摘要

Paulownia tomentosa is a fast-growing tree species with multiple uses. It is grown worldwide, but is native to China, where it is widely cultivated in saline regions. We previously confirmed that autotetraploid P. tomentosa plants are more stress-tolerant than the diploid plants. However, the molecular mechanism underlying P. tomentosa salinity tolerance has not been fully characterized. Using the complete Paulownia fortunei genome as a reference, we applied next-generation RNA-sequencing technology to analyze the effects of salt stress on diploid and autotetraploid P. tomentosa plants. We generated 175 million clean reads and identified 15,873 differentially expressed genes (DEGs) from four P. tomentosa libraries (two diploid and two autotetraploid). Functional annotations of the differentially expressed genes using the Gene Ontology and Kyoto Encyclopedia of Genes and Genomes databases revealed that plant hormone signal transduction and photosynthetic activities are vital for plant responses to high-salt conditions. We also identified several transcription factors, including members of the AP2/EREBP, bHLH, MYB, and NAC families. Quantitative real-time PCR analysis validated the expression patterns of eight differentially expressed genes. Our findings and the generated transcriptome data may help to accelerate the genetic improvement of cultivated P. tomentosa and other plant species for enhanced growth in saline soils.
机译:泡桐是一种生长迅速的树种,用途广泛。它生长在世界各地,但原产于中国,在盐碱地区广泛种植。我们先前证实,四倍体毛白杨植株比二倍体植株更耐胁迫。但是,尚未完全表征毛白杨耐盐性的分子机制。以完整的泡桐泡桐基因组为参考,我们应用了下一代RNA测序技术来分析盐胁迫对二倍体和异四倍体毛白杨植株的影响。我们产生了1.75亿个纯净读数,并从四个毛绒假单胞菌文库(两个二倍体和两个同源四倍体)中鉴定了15,873个差异表达基因(DEG)。使用基因本体论和京都全基因组和基因组百科全书数据库对差异表达基因的功能注释显示,植物激素信号转导和光合活性对于植物对高盐条件的反应至关重要。我们还确定了几个转录因子,包括AP2 / EREBP,bHLH,MYB和NAC家族的成员。实时定量PCR分析验证了八个差异表达基因的表达模式。我们的发现和生成的转录组数据可能有助于加速栽培的毛绒球菌和其他植物物种的遗传改良,以增强盐渍土的生长。

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