Ünlü Ercan Selçuk, Ünüvar Ömer Can, Aydın Meryem
Bolu Abant İzzet Baysal University, Faculty of Arts and Science, Department of Chemistry, Bolu 14280, Turkey.
Bolu Abant İzzet Baysal University, Faculty of Arts and Science, Department of Chemistry, Bolu 14280, Turkey.
Mar Genomics. 2019 Aug;46:41-48. doi: 10.1016/j.margen.2019.03.004. Epub 2019 Mar 25.
Alternative oxidases (AOX) are defined in plants, fungi and algae. The main function of AOX proteins has been described for electron flow through electron transport chain and regulation of mitochondrial retrograde signaling pathway. The roles of AOX proteins have been characterized in reproduction and resistance against oxidative stress, cold stress, starvation, and biotic attacks. Caulerpa cylindracea is an invasive marine green alga. Although the natural habitats of the species are Australia coasts, the impact of the invasion has been monitored through the Mediterranean Sea and the Aegean Sea. C. cylindracea species have advantages against others by showing higher resistance to stress conditions such as cold, starvation, pathogen attacks and by their capability of sexual and vegetative reproduction. Comparing the advantages of C. cylindracea over the niche and defined functional roles of mitochondrial AOX proteins, it is evident that AOX proteins are likely involved in developing those advantageous skills in C. cylindracea. However, there is limited data about biochemical and molecular mechanisms that take part in stress resistance and invasion characteristics. We aimed to identify mitochondrial alternative oxidase encoding genes in C. cylindracea while annotating whole transcriptome data for the species. Samples were collected from Seferihisar/İzmir. Transcriptome analysis from pooled RNA samples revealed 47,400 assembled contigs represented by 33,340 unigenes. Using standalone Blast analysis, we were able to identify two alternative oxidase encoding genes.
交替氧化酶(AOX)存在于植物、真菌和藻类中。AOX蛋白的主要功能是参与电子通过电子传递链的流动以及调节线粒体逆行信号通路。AOX蛋白在生殖以及抵抗氧化应激、冷应激、饥饿和生物攻击方面的作用已得到表征。圆柱蕨藻是一种入侵性海洋绿藻。尽管该物种的自然栖息地是澳大利亚海岸,但通过地中海和爱琴海对其入侵影响进行了监测。圆柱蕨藻通过对寒冷、饥饿、病原体攻击等应激条件表现出更高的抗性以及具备有性和无性繁殖能力,相比其他物种具有优势。比较圆柱蕨藻的优势与线粒体AOX蛋白的特定功能和作用,很明显AOX蛋白可能参与了圆柱蕨藻这些优势特性的形成。然而,关于参与抗逆性和入侵特性的生化和分子机制的数据有限。我们旨在鉴定圆柱蕨藻中线粒体交替氧化酶编码基因,同时注释该物种的全转录组数据。样本采集自伊兹密尔的塞费里希萨尔。对混合RNA样本进行的转录组分析显示,有47,400个组装重叠群,由33,340个单基因表示。通过独立的Blast分析,我们能够鉴定出两个交替氧化酶编码基因。