Das Ankur, Begum Khaleda, Akhtar Suraiya, Ahmed Raja, Tamuli Phatik, Kulkarni Ram, Banu Sofia
Department of Bioengineering and Technology, Gauhati University, Guwahati, Assam 781014, India.
Darrang College, Tezpur, Assam 784001, India.
Int J Biol Macromol. 2023 Apr 15;234:123758. doi: 10.1016/j.ijbiomac.2023.123758. Epub 2023 Feb 20.
Agarwood is a dark resinous wood, produced when Aquilaria tree responds to wounding and microbial infection resulting in the accumulation of fragrant metabolites. Sesquiterpenoids and 2-(2-phenylethyl) chromones are the major phytochemicals in agarwood and Cytochrome P450s (CYPs) are one of the important enzymes in the biosynthesis of these fragrant chemicals. Thus, understanding the repertoire of CYP superfamily in Aquilaria can not only give insights into the fundamentals of agarwood formation, but can also provide a tool for the overproduction of the aroma chemicals. Therefore, current study was designed to investigate CYPs of an agarwood producing plant, Aquilaria agallocha. We identified 136 CYP genes from A. agallocha genome (AaCYPs) and classified them into 8 clans and 38 families. The promoter regions had stress and hormone-related cis-regulatory elements which indicate their participation in the stress response. Duplication and synteny analysis revealed segmental and tandem duplicated and evolutionary related CYP members in other plants. Potential members involved in the biosynthesis of sesquiterpenoids and phenylpropanoids were identified and found to be upregulated in methyl jasmonate-induced callus and infected Aquilaria trees by real-time quantitative PCR analyses. This study highlights the possible involvement of AaCYPs in agarwood resin development and their complex regulation during stress exposure.
沉香是一种深色的含树脂木材,当沉香树受到创伤和微生物感染时会产生,导致芳香代谢产物的积累。倍半萜类化合物和2-(2-苯乙基)色酮是沉香中的主要植物化学物质,细胞色素P450(CYPs)是这些芳香化学物质生物合成中的重要酶之一。因此,了解沉香属植物中CYP超家族的组成不仅可以深入了解沉香形成的基本原理,还可以为芳香化学物质的过量生产提供工具。因此,本研究旨在调查一种产沉香植物——沉香(Aquilaria agallocha)的CYPs。我们从沉香基因组中鉴定出136个CYP基因(AaCYPs),并将它们分为8个族和38个家族。启动子区域具有与胁迫和激素相关的顺式调控元件,表明它们参与胁迫反应。重复和共线性分析揭示了其他植物中片段和串联重复以及进化相关的CYP成员。通过实时定量PCR分析,鉴定出参与倍半萜类化合物和苯丙烷类化合物生物合成的潜在成员,并发现它们在茉莉酸甲酯诱导的愈伤组织和受感染的沉香树中上调。本研究突出了AaCYPs可能参与沉香树脂发育及其在胁迫暴露期间的复杂调控。