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De Novo Transcriptome Assembly in Firmiana danxiaensis a Tree Species Endemic to the Danxia Landform

机译:丹霞地貌的特有树种-丹霞亚种的从头转录组组装

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摘要

Many Firmiana species are locally endemic, providing an interesting system for studying adaptation and speciation. Among these species, F. danxiaensis is a tree species endemic to Mount Danxia in Guangdong, China, which is an area known for presenting the Danxia landform. How F. danxiaensis could have adapted to the stressful environment of rocky cliffs covered with barren soils in the Danxia landform is still unknown. In this study, we performed de novo assembly of the transcriptome of F. danxiaensis, obtaining 47,221 unigenes with an N50 value of 987 bp. Homology analysis showed that 32,318 of the unigenes presented hits in the NCBI non-redundant database, and 31,857 exhibited significant matches with the protein database of Theobroma cacao. Gene Ontology (GO) annotation showed that hundreds of unigenes participated in responses to various stresses or nutritional starvation, which may help us to understand the adaptation of F. danxiaensis to Danxia landform. Additionally, we found 263 genes related to responses to Cd, partially explaining the high accumulation of Cd observed in Firmiana species. The EuKaryotic Orthologous Groups (KOG) and Kyoto Encyclopedia of Genes and Genomes (KEGG) annotations revealed many genes playing roles in the biosynthesis of secondary metabolites and environmental adaptation, which may also contribute to the survivor and success of Firmiana species in extreme environments. Based on the obtained transcriptome, we further identified a Firmiana-specific whole-genome duplication event that occurred approximately 20 Mya, which may have provided raw materials for the diversification of Firmiana species.
机译:许多菲氏菌属物种是当地特有的,为研究适应性和物种形成提供了有趣的系统。在这些物种中,F。danxiaensis是中国广东省丹霞山特有的树种,该地区以呈现丹霞地貌着称。在丹霞地貌中,丹霞镰刀菌如何适应被贫瘠土壤覆盖的岩石峭壁的压力环境仍然未知。在这项研究中,我们从头组装了F. danxiaensis的转录组,获得了47,221个单基因,N50值为987 bp。同源性分析显示,在NCBI非冗余数据库中有32,318个单基因表达成功,与可可可蛋白的数据库有31,857个显着匹配。基因本体论(GO)注释表明,数百种单基因参与了对各种胁迫或营养饥饿的反应,这可能有助于我们了解丹霞草对丹霞地貌的适应性。此外,我们发现了263个与Cd响应相关的基因,部分解释了在Firmana物种中Cd的高积累。真核直系同源基因组(KOG)和《京都基因与基因组百科全书》(KEGG)注释显示,许多基因在次生代谢产物的生物合成和环境适应中发挥着作用,这也可能有助于在极端环境下的纤毛虫物种的生存和成功。基于获得的转录组,我们进一步鉴定了大约20个Mya发生的Firmana特有的全基因组复制事件,这可能为Firmana物种的多样化提供了原材料。

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