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氧化应激对油棕中硫胺素生物合成基因(THIC和THI1/THI4)表达的影响()。 (注:括号内原文内容不完整)

The Effect of Oxidative Stress Towards The Expression of Thiamine Biosynthesis Genes (THIC and THI1/THI4) in Oil Palm ().

作者信息

Idris Zainor Hafisah Che, Abidin Aisamuddin Ardi Zainal, Subki Atiqah, Yusof Zetty Norhana Balia

机构信息

Department of Biochemistry, Faculty of Biotechnology and Biomolecular Sciences, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia.

出版信息

Trop Life Sci Res. 2018 Mar;29(1):71-85. doi: 10.21315/tlsr2018.29.1.5. Epub 2018 Mar 2.

Abstract

Thiamine is known to be an important compound in human diet and it is a cofactor required for vital metabolic processes such as acetyl-CoA biosynthesis, amino acid biosynthesis, Krebs and Calvin cycle. Besides that, thiamine has been shown to be involved in plant protection against stress. In this study, the level of expression of THIC and THI1/THI4, the genes for the first two enzymes in the thiamine biosynthesis pathway were observed when oil palm () was subjected to oxidative stress. Primers were designed based on the consensus sequence of thiamine biosynthesis genes obtained from , , , and . Oxidative stress were induced with various concentrations of paraquat and samplings were done at various time points post-stress induction. The expression of THIC and THI1/THI4 genes were observed via RT-PCR and qPCR analysis. The expression of THIC was increased 2-fold, while THI1/THI4 gene transcript was increased 4-fold upon induction of oxidative stress. These findings showed that oil palm responded to oxidative stress by over-expressing the genes involved in thiamine biosynthesis. These findings support the suggestion that thiamine may play an important role in plant protection against stress.

摘要

硫胺素是人类饮食中的一种重要化合物,它是乙酰辅酶A生物合成、氨基酸生物合成、三羧酸循环和卡尔文循环等重要代谢过程所需的一种辅酶。除此之外,硫胺素已被证明参与植物的抗逆保护。在本研究中,当油棕遭受氧化胁迫时,观察了硫胺素生物合成途径中前两种酶的基因THIC和THI1/THI4的表达水平。根据从[具体植物名称1]、[具体植物名称2]、[具体植物名称3]和[具体植物名称4]获得的硫胺素生物合成基因的共有序列设计引物。用不同浓度的百草枯诱导氧化胁迫,并在胁迫诱导后的不同时间点进行取样。通过逆转录聚合酶链反应(RT-PCR)和定量聚合酶链反应(qPCR)分析观察THIC和THI1/THI4基因的表达。氧化胁迫诱导后,THIC的表达增加了2倍,而THI1/THI4基因转录本增加了4倍。这些发现表明,油棕通过过表达参与硫胺素生物合成的基因来应对氧化胁迫。这些发现支持了硫胺素可能在植物抗逆保护中起重要作用的观点。

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