Plastid DNA Barcoding and RtActin cDNA Fragment Isolation of Reutealis Trisperma: A Promising Bioresource for Biodiesel Production.

IF 2.3 Q3 BIOCHEMICAL RESEARCH METHODS
Nurul Jadid, Nur Laili Alfina Rosidah, Muhammad Rifqi Nur Ramadani, Indah Prasetyowati, Noor Nailis Sa'adah, Aulia Febrianti Widodo, Dwi Oktafitria
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Abstract

Reutealis trisperma belonging to the family Euphorbiaceae is currently used for biodiesel production, and rapid development in plant-based biofuel production has led to its increasing demand. However, massive utilization of bio-industrial plants has led to conservation issues. Moreover, genetic information on R trisperma is still limited, which is crucial for developmental, physiological, and molecular studies. Studying gene expression is essential to explain plant physiological processes. Nonetheless, this technique requires sensitive and precise measurement of messenger RNA (mRNA). In addition, the presence of internal control genes is important to avoid bias. Therefore, collecting and preserving genetic data for R trisperma is indispensable. In this study, we aimed to evaluate the application of plastid loci, rbcL, and matK, to the DNA barcode of R trisperma for use in conservation programs. In addition, we isolated and cloned the RtActin (RtACT) gene fragment for use in gene expression studies. Sequence information was analyzed in silico by comparison with other Euphorbiaceae plants. For actin fragment isolation, reverse-transcription polymerase chain reaction was used. Molecular cloning of RtActin was performed using the pTA2 plasmid before sequencing. We successfully isolated and cloned 592 and 840 bp of RtrbcL and RtmatK fragment genes, respectively. The RtrbcL barcoding marker, rather than the RtmatK plastidial marker, provided discriminative molecular phylogenetic data for R Trisperma. We also isolated 986 bp of RtACT gene fragments. Our phylogenetic analysis demonstrated that R trisperma is closely related to the Vernicia fordii Actin gene (97% identity). Our results suggest that RtrbcL could be further developed and used as a barcoding marker for R trisperma. Moreover, the RtACT gene could be further investigated for use in gene expression studies of plant.

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三棱草质体DNA条形码及rtacn cDNA片段的分离——生物柴油生产的一种有前景的生物资源
作为大戟科植物的三种植物(Reutealis trisperma)目前被用于生物柴油的生产,植物基生物燃料生产的快速发展导致其需求不断增加。然而,生物工业工厂的大规模利用导致了保护问题。此外,三种植物的遗传信息仍然有限,这对发育、生理和分子研究至关重要。研究基因表达对解释植物生理过程至关重要。尽管如此,这项技术需要对信使RNA (mRNA)进行敏感和精确的测量。此外,内部控制基因的存在对于避免偏见也很重要。因此,收集和保存R三种植物的遗传数据是必不可少的。在这项研究中,我们的目的是评估质体位点rbcL和matK在R三种精子DNA条形码中的应用,以用于保护计划。此外,我们分离并克隆了rtacn (RtACT)基因片段,用于基因表达研究。通过与其他大戟科植物的比较,对序列信息进行了计算机分析。采用逆转录聚合酶链反应分离肌动蛋白片段。测序前利用pTA2质粒对rtacn进行分子克隆。我们成功分离并克隆了592 bp的RtrbcL和840 bp的RtmatK片段基因。RtrbcL条形码标记,而不是RtmatK质体标记,提供了RtrbcL分子系统发育的鉴别数据。我们还分离到了986 bp的RtACT基因片段。系统发育分析表明,R三种植物与fordii Vernicia Actin基因亲缘关系密切(同源性97%)。研究结果表明,RtrbcL可以进一步开发并作为RtrbcL的条形码标记物。此外,RtACT基因可进一步用于植物基因表达研究。
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来源期刊
Bioinformatics and Biology Insights
Bioinformatics and Biology Insights BIOCHEMICAL RESEARCH METHODS-
CiteScore
6.80
自引率
1.70%
发文量
36
审稿时长
8 weeks
期刊介绍: Bioinformatics and Biology Insights is an open access, peer-reviewed journal that considers articles on bioinformatics methods and their applications which must pertain to biological insights. All papers should be easily amenable to biologists and as such help bridge the gap between theories and applications.
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