杜仲橡胶颗粒中脂质的动态变化及 SQDG 的生物合成与杜仲橡胶的关系

IF 1.2 4区 化学 Q4 POLYMER SCIENCE
Chuhan Zhang, Ting Yuan, Lijun Qin
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引用次数: 0

摘要

杜仲橡胶颗粒(EuRPs)是合成和储存杜仲橡胶(EuR)的细胞器。本研究考察了不同生长时期叶片组织中杜仲胶粒的脂质动态变化。结果表明,共鉴定出 39 类脂质 1149 种;在 EuRPs 的所有脂质中,TGs、DGs 和 Cers 的含量最高。脂质表达分析表明,TGs 的表达强度分别比 MGs 和 DGs 高近 1 × 104 倍和 10 倍。在鞘磷脂中,SoP、CerG2、GM3、SM 和 GerG3 的表达强度在整个调查期间(2021 年 8 月至 11 月)都在增加。进一步分析发现,Cers 种类占总脂质种类的 9.40%,8 月份从叶片中分离的 EuRP 中 Cers 种类数量最多,随后 3 个月逐渐减少。同时,分层聚类表明,9-11月叶片EuRP中高含量的脂质种类有7种,即SQDG(18:3/18:3)、SQDG(34:3)、SQDG(17:5/23:2)、DGDG(38:12)、Co(Q9)、TG(16:0/16:0/18:3)和TG(39:1)。与 8 月份的叶片 EuRP 相比,9 月、10 月和 11 月分别有 79、101 和 107 种脂质出现了显著的差异表达。基于 SQDG 在 EuRPs 中的高表达强度,进一步分析了介导 EuR 或 SQDG 生物合成的基因之间的相关性,结果表明一些基因共同表达,这意味着 SQDG EuR 生物合成中的协同调控作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dynamic changes of lipids in Eucommia ulmoides rubber particles and the relationship between the biosynthesis of SQDG and E. ulmoides rubber

Dynamic changes of lipids in Eucommia ulmoides rubber particles and the relationship between the biosynthesis of SQDG and E. ulmoides rubber

Dynamic changes of lipids in Eucommia ulmoides rubber particles and the relationship between the biosynthesis of SQDG and E. ulmoides rubber

Eucommia ulmoides rubber particles (EuRPs) are organelles that synthesise and store E. ulmoides rubber (EuR). In this study, the lipids dynamic change of EuRPs from leaf tissue at different growth period were investigated. The results showed that there were 1149 lipid species belonging to 39 lipid classes that were identified; TGs, DGs and Cers were the most abundant among all lipids of EuRPs. Lipid expression analysis demonstrated that the expression intensity of TGs was almost 1 × 104-fold and 10-fold higher than those of MGs and DGs, respectively. Among sphingolipids, the expression intensity of SoP, CerG2, GM3, SM and GerG3 increased throughout the duration of investigation (August–November 2021). Further analysis found that the Cers species accounted for 9.40% of total lipid species and the number of Cers species in EuRPs isolated from leaves in August was the most, with gradual decline in the following 3 months. Meanwhile, hierarchical clustering indicated that there were seven types of highly abundant lipid species in leaf EuRPs from September to November, i.e. SQDG (18:3/18:3), SQDG (34:3), SQDG (17:5/23:2), DGDG (38:12), Co (Q9), TG (16:0/16:0/18:3) and TG (39:1). Compared with leaf EuRPs in August, there were 79, 101 and 107 lipid species which showed significant differential expression in September, October and November. Based on the high expression intensity of SQDG in EuRPs, the correlation between the genes mediated in EuR or SQDG biosynthesis was further analysed, whereby the results indicated co-expression of some genes, which implies the synergistic regulatory role in SQDG EuR biosynthesis.

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来源期刊
Journal of Rubber Research
Journal of Rubber Research 化学-高分子科学
自引率
15.40%
发文量
46
审稿时长
3 months
期刊介绍: The Journal of Rubber Research is devoted to both natural and synthetic rubbers, as well as to related disciplines. The scope of the journal encompasses all aspects of rubber from the core disciplines of biology, physics and chemistry, as well as economics. As a specialised field, rubber science includes within its niche a vast potential of innovative and value-added research areas yet to be explored. This peer reviewed publication focuses on the results of active experimental research and authoritative reviews on all aspects of rubber science. The Journal of Rubber Research welcomes research on: the upstream, including crop management, crop improvement and protection, and biotechnology; the midstream, including processing and effluent management; the downstream, including rubber engineering and product design, advanced rubber technology, latex science and technology, and chemistry and materials exploratory; economics, including the economics of rubber production, consumption, and market analysis. The Journal of Rubber Research serves to build a collective knowledge base while communicating information and validating the quality of research within the discipline, and bringing together work from experts in rubber science and related disciplines. Scientists in both academia and industry involved in researching and working with all aspects of rubber will find this journal to be both source of information and a gateway for their own publications.
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