[Identification of Lonicera japonica TPS gene family and expression analysis under aphid damage].

Q3 Pharmacology, Toxicology and Pharmaceutics
Gang Wang, Yuan Cui, Qi-Dong Li, Lu-Yao Huang, Zhen-Hua Liu, Jia Li
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Abstract

This study explores the basic characteristics and potential functions of the terpene synthase(TPS) gene family members in Lonicera japonica. The L. japonica TPS(LjTPS) gene family was identified and functionally analyzed using bioinformatics methods. The results showed that a total of 70 members of the LjTPS gene family were identified in L. japonica, with protein lengths ranging from 130 to 1 437 amino acids. Most of these proteins were hydrophilic, and they were unevenly distributed across nine chromosomes. Phylogenetic analysis showed that the LjTPS gene family members were divided into six subfamilies, mainly consisting of members from the TPS-a, TPS-b, and TPS-e subfamilies. Promoter cis-acting element analysis showed that LjTPS members contained a large number of stress-responsive cis-acting elements. Aphid inoculation experiments showed that key enzyme genes in the MVA pathway for terpenoid backbone synthesis in L. japonica, such as HMGS, HMGR, MK, MPD, and the key enzyme gene in the DXP pathway, DXS, exhibited an initial increase followed by a decrease under aphid stress. The qRT-PCR analysis showed that the expression levels of the α-farnesene synthase genes LjTPS34 and LjTPS39 were down-regulated, while the expression levels of(E)-β-caryophyllene synthase genes LjTPS15 and LjTPS17 were up-regulated 12 h before aphid feeding, then began to decline. Farnesyl pyrophosphate synthase(FPS), which interacted with these genes, also displayed a pattern of increasing followed by decreasing expression. The expression of linalool synthase genes LjTPS12 and LjTPS33 was significantly up-regulated after 72 h of aphid feeding(P<0.000 1), reaching 24.39 and 22.64 times the initial expression, respectively. This pattern was in close alignment with the trend of linalool content in L. japonica. This study provides a theoretical foundation for future research on the interaction between L. japonica and pests, as well as on the functional roles of the LjTPS gene family.

金银花TPS基因家族的鉴定及蚜害下的表达分析
本研究探讨了金银花萜类合成酶(TPS)基因家族成员的基本特征和潜在功能。利用生物信息学方法对粳稻TPS(LjTPS)基因家族进行了鉴定和功能分析。结果表明,粳稻LjTPS基因家族共鉴定出70个成员,蛋白长度在130 ~ 1 437个氨基酸之间。这些蛋白质大部分是亲水的,它们不均匀地分布在9条染色体上。系统发育分析表明,LjTPS基因家族成员可划分为6个亚家族,主要由TPS-a、TPS-b和TPS-e亚家族成员组成。启动子顺式作用元件分析表明,LjTPS成员含有大量的应力响应式顺式作用元件。蚜虫接种实验表明,在蚜虫胁迫下,粳稻萜类主干合成MVA途径的关键酶基因HMGS、HMGR、MK、MPD和DXP途径的关键酶基因DXS表现出先升高后降低的趋势。qRT-PCR分析显示,α-法脂烯合成酶基因LjTPS34和LjTPS39在蚜虫取食前12 h表达水平下调,而(E)-β-石蜡烯合成酶基因LjTPS15和LjTPS17表达水平上调,随后开始下降。与这些基因相互作用的法尼酰焦磷酸合成酶(FPS)也表现出先增加后减少的表达模式。在蚜虫取食72 h后,芳樟醇合成酶基因LjTPS12和LjTPS33的表达量显著上调(P<0.000 1),分别达到初始表达量的24.39和22.64倍。这一规律与锦葵中芳樟醇含量的变化趋势一致。该研究为进一步研究粳稻与害虫的相互作用以及LjTPS基因家族的功能作用提供了理论基础。
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来源期刊
Zhongguo Zhongyao Zazhi
Zhongguo Zhongyao Zazhi Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
1.50
自引率
0.00%
发文量
581
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