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Occurrence and distribution of hydroxylated isoprenoid glycerol dialkyl glycerol tetraethers(OH-GDGTs) in the Han River system, South Korea 被引量:4
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作者 Sujin Kang Kyoung-Hoon Shin Jung-Hyun Kim 《Acta Geochimica》 EI CAS CSCD 2017年第3期367-369,共3页
We investigated the occurrence and distribution of terrestrial-derived hydroxylated isoprenoid glycerol dialkyl glycerol tetraethers(OH-GDGTs) in the Han River system and their potential impact on the application of t... We investigated the occurrence and distribution of terrestrial-derived hydroxylated isoprenoid glycerol dialkyl glycerol tetraethers(OH-GDGTs) in the Han River system and their potential impact on the application of the ring index of OH-GDGTs(RI-OH) as a sea surface temperature(SST) proxy in the eastern Yellow Sea. Thereby, we analyzed various samples collected along the Han River and from its surrounding areas(South Korea, n = 34). The OHGDGTs were found in all samples investigated. OH-GDGT-0 was the dominant OH-GDGT component in the estuary and marine samples while OH-GDGT-2 was generally dominant in the soils, the lake sediments and the river suspended particulate matter(SPM). Our results thus suggests a possible warm bias of the RI-OH-derived summer SSTs in the coastal zone to which a large amount of terrestrial organic matter is being supplied. Further studies are necessary to better assess the applicability of the RI-OH proxy in the eastern Yellow Sea. 展开更多
关键词 Hydroxylated isoprenoid glycerol dialkyl glycerol tetraethers(OH-GDGTs) Sea surface temperature(SST) Han river Yellow Sea
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EaIspF1, Essential Enzyme in Isoprenoid Biosynthesis from Eupatorium adenophorum, Reveals a Novel Role in Light Acclimation
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作者 ZHANG Sheng-rui JIANG Xue +3 位作者 WANG Ping WU Di WANG Qing-hua HOU Yu-xia 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第5期1024-1035,共12页
Isoprenoids are a functionally and structurally diverse class of natural organic chemicals. The universal precursors of all isoprenoids, isopentenyl diphosphate and dimethylallyl diphosphate are synthesized through th... Isoprenoids are a functionally and structurally diverse class of natural organic chemicals. The universal precursors of all isoprenoids, isopentenyl diphosphate and dimethylallyl diphosphate are synthesized through the mevalonate and 2C-methyl- D-erythritol 4-phosphate (MEP) pathways, respectively. Many isoprenoids produced through the MEP pathway play an important role in plant acclimation to different light environments. Eupatorium adenophorum, an invasive weed in China, presents a remarkable capacity to acclimate to various light environments, which constitutes its solid foundation of being a successful invasive species. Thus we aimed at gaining a deeper insight into the regulation of MEP pathway in E. adenophorum to further understand the invasive mechanism. 2C-Methyl-D-erythritol 2,4-cyclodiphosphate synthase (IspF or MCS) is an essential enzyme in the MEP pathway. In this paper, a novel IspF gene was cloned and characterized from E. adenophorum. Tissue-specific expression assays revealed a higher expression of EalspF1 in leaves than in stems and roots. The expression of EalspF1 was responsive to different light conditions. Some up-regulation of EalspF1 expression was also found after the treatments with signal compounds and after wounding stress. Interestingly, the over-expression of EalspF1 in Arabidopsis led to increase carotenoids contents, resulting in an enhanced tolerance to high light. Taken together, these results indicate that the EalspFl-derived enzyme participates in isoprenoid metabolism and among others, the expression of this gene in E. adenophorum is involved in the regulation of plastidial isoprenoids, which play an important role in acclimation to various light environments. 展开更多
关键词 EalspF1 Eupatorium adenophorum isoprenoid biosynthesis light acclimation
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Towards Application of Bioactive Natural Products Containing Isoprenoids for the Regulation of HMG-CoA Reductase—A Review
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作者 Sepideh Pakpour 《American Journal of Plant Sciences》 2013年第5期1116-1126,共11页
Recognition of the biological properties of numerous “natural products” has fueled the current focus of this field, namely, the search for new drugs, antibiotics, insecticides, and herbicides. Based on their biosynt... Recognition of the biological properties of numerous “natural products” has fueled the current focus of this field, namely, the search for new drugs, antibiotics, insecticides, and herbicides. Based on their biosynthetic origins, natural products can be divided into three major groups: the isoprenoids, alkaloids, and phenolic compounds. Isoprenoids are structurally the most diverse group of secondary natural metabolites with different roles in the growth, development, and reproduction of a diverse range of prokaryotic and eukaryotes cells. Mevalonate and 2-C-methyl-D-erythritol 4-phosphate (MEP) pathways are known to be responsible for biosynthesis of numerous isoprenoids. HMG-CoA reductase is a rate-determining enzyme in mevalonate pathway, producing intermediates such as farnesyl and geranylgeranyl pyrophosphates, which lead to by-products such as cholesterol. Earlier studies have demonstrated that the inhibition of HMG-CoA reductase is one of the most effective approaches for treating hypercholesterolemia and eventually cardiovascular disease (CVD). Statins are HMG-CoA reductase inhibitors and the most prescribed group of drugs worldwide in treating hypercholesterolemia;however the application of this group of drugs may be expensive and has side effects including rashes and gastrointestinal symptoms. For these reasons, there is an important need to examine the viability of natural products as an alternative to statin treatment. This article is a review of different aforementioned areas with a focus on isoprenoids that can be used for the regulation of HMG-CoA reductase. 展开更多
关键词 isoprenoidS HMG-COA REDUCTASE MEVALONATE PATHWAY HYPERCHOLESTEROLEMIA
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塔里木盆地雄探1井寒武系油源特征与超深层勘探潜力 被引量:1
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作者 苏劲 王晓梅 +11 位作者 张成栋 杨宪彰 李谨 杨煜鹏 张海祖 方玙 杨春龙 房忱琛 王亚龙 魏彩云 翁娜 张水昌 《石油勘探与开发》 北大核心 2025年第2期347-361,共15页
塔里木盆地台盆区已发现的超深层(深度大于8000 m)油气主要赋存于北部坳陷F5走滑断裂以东的下古生界储层,而该断裂西侧寒武系超深层的油气来源和勘探潜力尚不明确。通过岩相和分子标志物分析,揭示出塔里木盆地寒武系纽芬兰统至少存在硫... 塔里木盆地台盆区已发现的超深层(深度大于8000 m)油气主要赋存于北部坳陷F5走滑断裂以东的下古生界储层,而该断裂西侧寒武系超深层的油气来源和勘探潜力尚不明确。通过岩相和分子标志物分析,揭示出塔里木盆地寒武系纽芬兰统至少存在硫化斜坡、深水陆棚和局限海湾3种不同沉积环境的“等时异相”烃源岩。2024年在塔北西端的雄探1井寒武系发现高产凝析油气,原油中检出完整的芳基类异戊二烯烷烃生物标志物,但未检测到三芳甲藻甾烷,这与轮探1、旗探1井为代表的纽芬兰统硫化斜坡相烃源岩地球化学特征十分一致,表明雄探1井寒武系油气主要来源于寒武系纽芬兰统烃源岩。雄探1井寒武系原油还呈现出C29甾烷优势,并且富含长链三环萜烷(最高达C39),这些生物标志物能够成为有效区分硅质泥岩和碳酸盐岩等不同岩相的油气源指标。结合逆冲和走滑断裂输导系统的成藏分析,认为F5走滑断裂以西具备接受满西生烃中心寒武系纽芬兰统烃源岩有效供烃的可能,这预示着除了盆地东部寒武系超深层台缘带相控型油气藏外,该走滑断裂以西有望成为寒武系超深层构造-岩性油气藏勘探的新区域。 展开更多
关键词 寒武系 雄探1井 超深层 分子化石 芳基类异戊二烯烃 三芳甾烷 烃源岩 走滑断裂 塔里木盆地
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塔里木盆地下古生界深层烃源岩和原油生物标志物类型划分及油源 被引量:3
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作者 李梦勤 姚超 +7 位作者 陈方方 何涛华 赵龙飞 肖春艳 王青红 李正阳 黄亚浩 文志刚 《天然气地球科学》 北大核心 2025年第1期166-182,共17页
为探索下古生界深层复杂原油的来源,对塔里木盆地下古生界烃源岩及原油开展了系统的地球化学分析。通过自然演化—热模拟实验对比,揭示了部分芳烃类指标的高稳定性,尤其是1⁃烷基⁃2,3,6⁃芳基类异戊二烯(2,3,6⁃AIPs)具有极强的抗次生改造... 为探索下古生界深层复杂原油的来源,对塔里木盆地下古生界烃源岩及原油开展了系统的地球化学分析。通过自然演化—热模拟实验对比,揭示了部分芳烃类指标的高稳定性,尤其是1⁃烷基⁃2,3,6⁃芳基类异戊二烯(2,3,6⁃AIPs)具有极强的抗次生改造能力。综合评价生烃潜力明确了5套[下寒武统玉尔吐斯组(Є_(1)y)、中下奥陶统黑土凹组(O_(1⁃2h))、西合休剖面中奥陶统(O_(2)x)、中上奥陶统萨尔干组(O_(2⁃3)s)和上奥陶统良里塔格组(O_(3)l)]富有机质烃源岩,并根据稳定的芳烃指标将其划分为“低盐—绿藻”型、“高盐—甲藻”型和“透光厌氧—绿硫菌”型3类,将原油划分为“透光厌氧—绿藻”型和“透光厌氧—绿硫菌”型2类。其中,“透光厌氧—绿硫菌”型烃源岩主要发育于Є_(1)y,与盆地内(塔中、塔北地区等)几乎所有原油类似,都含有2,3,6⁃AIPs。油源对比和混源油定量解析也证实该类烃源岩对盆地内原油的重要贡献。因此,后期精细刻画该类含特殊生源—环境组合烃源岩的空间展布将会为研究区甚至全球类似盆地深层复杂原油的精准勘探提供重要参考。 展开更多
关键词 1⁃烷基⁃2 3 6⁃芳基类异戊二烯 绿硫菌 透光厌氧环境 抗次生改造能力 深层油气勘探 塔里木盆地
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Structure and Dynamics of the Isoprenoid Pathway Network 被引量:25
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作者 Eva Vranova Diana Coman Wilhelm Gruissem 《Molecular Plant》 SCIE CAS CSCD 2012年第2期318-333,共16页
Isoprenoids are functionally and structurally the most diverse group of plant metabolites reported to date. They can function as primary metabolites, participating in essential plant cellular processes, and as seconda... Isoprenoids are functionally and structurally the most diverse group of plant metabolites reported to date. They can function as primary metabolites, participating in essential plant cellular processes, and as secondary metabolites, of which many have substantial commercial, pharmacological, and agricultural value. Isoprenoid end products participate in plants in a wide range of physiological processes acting in them both synergistically, such as chlorophyll and carotenoids during photosynthesis, or antagonistically, such as gibberellic acid and abscisic acid during seed germination. It is therefore expected that fluxes via isoprenoid metabolic network are tightly controlled both temporally and spatially, and that this control occurs at different levels of regulation and in an orchestrated manner over the entire isoprenoid metabolic network. In this review, we summarize our current knowledge of the topology of the plant isoprenoid pathway network and its regulation at the gene expression level following diverse stimuli. We conclude by discussing agronomical and biotechnological applications emerging from the plant isoprenoid metabolism and provide an outlook on future directions in the systems analysis of the plant isoprenoid pathway network. 展开更多
关键词 isoprenoidS FLUX METABOLITES NETWORK pathway.
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硅藻类异戊二烯化合物的生物功能、合成途径及应用前景
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作者 赖玉婷 付嘉琦 +2 位作者 肖梦琦 闫冰 夏嵩 《中国生物工程杂志》 北大核心 2025年第7期108-122,共15页
类异戊二烯化合物具有抗氧化、抗癌以及抗炎等生理活性,在食品、医疗和化妆品等领域占据着重要地位。目前,类异戊二烯化合物主要通过植物提取和化学合成等方法获取,存在产量低、成本高等问题。硅藻数量多、生长速度快、分布范围广且含... 类异戊二烯化合物具有抗氧化、抗癌以及抗炎等生理活性,在食品、医疗和化妆品等领域占据着重要地位。目前,类异戊二烯化合物主要通过植物提取和化学合成等方法获取,存在产量低、成本高等问题。硅藻数量多、生长速度快、分布范围广且含有丰富的生物活性物质,具有作为类异戊二烯化合物生物合成平台的潜能。综述硅藻中几种常见类异戊二烯化合物的生物功能、合成途径、影响因素和应用前景,深入研究硅藻源类异戊二烯的作用价值,拓展其在生产和生活中的应用,同时开发硅藻作为类异戊二烯的生物合成平台,为未来海洋硅藻产业化发展提供参考。 展开更多
关键词 硅藻 类异戊二烯 生物功能 生物合成 影响因素
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Advances in the Plant Isoprenoid Biosynthesis Pathway and Its Metabolic Engineering 被引量:13
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作者 YanLIU HongWANG He-ChunYE Guo-FengLI 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2005年第7期769-782,共14页
Although the cytosolic isoprenoid biosynthetic pathway, mavolonate pathway, in plants has been known for many years, a new plastidial 1–deoxyxylulose-5-phosphate (DXP) pathway was identified in the past few years and... Although the cytosolic isoprenoid biosynthetic pathway, mavolonate pathway, in plants has been known for many years, a new plastidial 1–deoxyxylulose-5-phosphate (DXP) pathway was identified in the past few years and its related intermediates, enzymes, and genes have been characterized quite recently. With a deep insight into the biosynthetic pathway of isoprenoids, investigations into the metabolic engineering of isoprenoid biosynthesis have started to prosper. In the present article, recent advances in the discoveries and regulatory roles of new genes and enzymes in the plastidial isoprenoid biosynthesis pathway are reviewed and examples of the metabolic engineering of cytosolic and plastidial isoprenoids biosynthesis are discussed. 展开更多
关键词 biosynthesis pathway metabolic engineering plant isoprenoids
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The Isogene 1-Deoxy-D-Xylulose 5-Phosphate Synthase 2 Controls Isoprenoid Profiles, Precursor Pathway Allocation, and Density of Tomato Trichomes 被引量:14
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作者 Heike Paetzold Stefan Garms +7 位作者 Stefan Bartram Jenny Wieczorek Eva-Maria Uros-Gracia Manuel Rodriguez-Concepcion Wilhelm Boland Dieter Strack Bettina Hause Michael H. Walter 《Molecular Plant》 SCIE CAS CSCD 2010年第5期904-916,共13页
Plant isoprenoids are formed from precursors synthesized by the mevalonate (MVA) pathway in the cytosol or by the methyl-D-erythritol 4-phosphate (MEP) pathway in plastids. Although some exchange of precursors occ... Plant isoprenoids are formed from precursors synthesized by the mevalonate (MVA) pathway in the cytosol or by the methyl-D-erythritol 4-phosphate (MEP) pathway in plastids. Although some exchange of precursors occurs, cytosolic sesquiterpenes are assumed to derive mainly from MVA, while plastidial monoterpenes are produced preferentially from MEP precursors. Additional complexity arises in the first step of the MEP pathway, which is typically catalyzed by two divergent 1-deoxy-D-xylulose 5-phosphate synthase isoforms (DXS1, DXS2). In tomato (Solanum lycopersicum), the SIDXS1 gene is ubiquitously expressed with highest levels during fruit ripening, whereas SIDXS2 transcripts are abundant in only few tissues, including young leaves, petals, and isolated trichomes. Specific down-regulation of SIDXS2 expression was performed by RNA interference in transgenic plants to investigate feedback mechanisms. SIDXS2 down-regulation led to a decrease in the monoterpene β-phellandrene and an increase in two sesquiterpenes in trichomes. Moreover, incorporation of MVA-derived precursors into residual monoterpenes and into sesquiterpenes was elevated as determined by comparison of ^13C to ^12C natural isotope ratios. A compensatory up-regulation of SIDXS1 was not observed. Down-regulated lines also exhibited increased trichome density and showed less damage by leaf-feeding Spodoptera littoralis caterpillars. The results reveal novel, non-redundant roles of DXS2 in modulating isoprenoid metabolism and a pronounced plasticity in isoprenoid precursor allocation. 展开更多
关键词 isoprenoid biosynthesis methyI-D-erythritol 4-phosphate (MEP) pathway 1-deoxy-D-xylulose 5-phosphate synthase 2 (DXS2) RNA interference (RNAi) TRICHOMES cross-talk feedback regulation GC-C-IRMS.
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PLEIOTROPIC REGULATORY LOCUS 1 (PRL1) Integrates the Regulation of Sugar Responses with Isoprenoid Metabolism in Arabidopsis 被引量:5
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作者 Ursula Flores-Perez Jordi Perez-Gil +6 位作者 Marta Closa Louwrance R Wright Patricia Botella-Pavia Michael A. Phillips Albert Ferrer Jonathan Gershenzon Manuel Rodriguez-Concepcion 《Molecular Plant》 SCIE CAS CSCD 2010年第1期101-112,共12页
The biosynthesis of isoprenoids in plant cells occurs from precursors produced in the cytosol by the mevalonate (MVA) pathway and in the plastid by the methylerythritol 4-phosphate (MEP) pathway, but little is kno... The biosynthesis of isoprenoids in plant cells occurs from precursors produced in the cytosol by the mevalonate (MVA) pathway and in the plastid by the methylerythritol 4-phosphate (MEP) pathway, but little is known about the mechanisms coordinating both pathways. Evidence of the importance of sugar signaling for such coordination in Arabi- dopsis thaliana is provided here by the characterization of a mutant showing an increased accumulation of MEP-derived isoprenoid products (chlorophylls and carotenoids) without changes in the levels of relevant MEP pathway transcripts, proteins, or enzyme activities. This mutant was found to be a new loss-of-function allele of PRL1 (Pleiotropic Regulatory Locus 1), a gene encoding a conserved WD-protein that functions as a global regulator of sugar, stress, and hormone responses, in part by inhibition of SNFl-related protein kinases (SnRK1). Consistent with the reported role of SnRK1 kinases in the phosphorylation and inactivation of the main regulatory enzyme of the MVA pathway (hydroxymethylglutaryl coenzyme-A reductase), its activity but not transcript or protein levels was reduced in prll seedlings. However, the accumulation of MVA-derived end products (sterols) was unaltered in mutant seedlings. Sucrose supplementation to wild- type seedlings phenocopied the prll mutation in terms of isoprenoid metabolism, suggesting that the observed isoprenoid phenotypes result from the increased sugar accumulation in the prll mutant. In summary, PRL1 appears to coordinate isoprenoid metabolism with sugar, hormone, and stress responses. 展开更多
关键词 Carbohydrate metabolism metabolic regulation secondary metabolism--terpenoids isoprenoids and carotenoids Arabidopsis.
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Harnessing sub-organelle metabolism for biosynthesis of isoprenoids in yeast 被引量:8
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作者 Xuan Cao Shan Yang +1 位作者 Chunyang Cao Yongjin J.Zhou 《Synthetic and Systems Biotechnology》 SCIE 2020年第3期179-186,共8页
Current yeast metabolic engineering in isoprenoids production mainly focuses on rewiring of cytosolic metabolic pathway.However,the precursors,cofactors and the enzymes are distributed in various sub-cellular compartm... Current yeast metabolic engineering in isoprenoids production mainly focuses on rewiring of cytosolic metabolic pathway.However,the precursors,cofactors and the enzymes are distributed in various sub-cellular compartments,which may hamper isoprenoid biosynthesis.On the other side,pathway compartmentalization provides several advantages for improving metabolic flux toward target products.We here summarize the recent advances on harnessing sub-organelle for isoprenoids biosynthesis in yeast,and analyze the knowledge about the localization of enzymes,cofactors and metabolites for guiding the rewiring of the sub-organelle metabolism.This review may provide some insights for constructing efficient yeast cell factories for production of isoprenoids and even other natural products. 展开更多
关键词 isoprenoidS YEAST COMPARTMENTALIZATION Sub-organelle metabolism
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Identification of long chain isoprenoid hydrocarbons from pyrolytic product of Dunaliella 被引量:1
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作者 Ruiyong Wang Wen Zhou +3 位作者 Junbiao Dai Qingyu Wu Guoying Sheng Jiamo Fu 《Chinese Science Bulletin》 SCIE EI CAS 1999年第18期1700-1705,共6页
In the pyrolytic research on Dunaliella salina cultured under natural conditions, abundant long chain regular isoprenoid hydrocarbons have been first detected and identified from algal pyrolytic product. Specially, th... In the pyrolytic research on Dunaliella salina cultured under natural conditions, abundant long chain regular isoprenoid hydrocarbons have been first detected and identified from algal pyrolytic product. Specially, the discovery of high abundant 2,6,10,14,18-pentamethyle-icosane indicated that regular iC25 probably originated from specific holophilic algae in hyper- 展开更多
关键词 DUNALIELLA SALINA pyrolysis LONG CHAIN isoprenoidS 2 6 10.14 18-pentamethyleicosan.
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双膦酸盐抗三种顶复门原虫研究进展
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作者 侯文燕 张营营 +1 位作者 张龙现 张素梅 《中国人兽共患病学报》 CAS CSCD 北大核心 2024年第2期185-190,196,共7页
顶复门原虫可引起严重疾病威胁人类健康,如每年导致近100万人死亡的疟原虫,感染全球约1/3人口的弓形虫以及导致新生儿腹泻的隐孢子虫等。这3种顶复门原虫对全球的生物安全和公共卫生构成巨大隐患,且目前在临床上有效治疗药物有限。双膦... 顶复门原虫可引起严重疾病威胁人类健康,如每年导致近100万人死亡的疟原虫,感染全球约1/3人口的弓形虫以及导致新生儿腹泻的隐孢子虫等。这3种顶复门原虫对全球的生物安全和公共卫生构成巨大隐患,且目前在临床上有效治疗药物有限。双膦酸盐临床上广泛用于治疗骨代谢疾病,但其化合物可有效抑制顶复门原虫生长,作用机制为竞争性抑制寄生虫类异戊二烯分子生物合成的2C-甲基-D-赤藓糖醇-4-磷酸途径(MEP途径)中的法尼基焦磷酸合酶,干扰类异戊二烯化合物的合成而发挥作用。本文综述了双膦酸盐化合物在疟原虫、弓形虫和隐孢子虫方面的相关研究,以期为临床治疗相关疾病提供理论基础。 展开更多
关键词 疟原虫 弓形虫 隐孢子虫 双膦酸盐 类异戊二烯 MEP途径
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土沉香萜类合成相关DXS和DXR基因鉴定、进化和表达分析 被引量:2
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作者 陈国德 饶丹丹 +1 位作者 韩豫 陈彧 《分子植物育种》 CAS 北大核心 2024年第13期4240-4246,共7页
沉香精油是名贵树木沉香的香味来源,而沉香精油中的主要成分是萜类物质。挖掘沉香中萜类物质合成基因,有助于阐明沉香精油积累的分子机制。本研究聚焦萜类合成关键基因DXS和DXR,通过鉴定保守结构域,并鉴定含有相关保守结构域的基因,最... 沉香精油是名贵树木沉香的香味来源,而沉香精油中的主要成分是萜类物质。挖掘沉香中萜类物质合成基因,有助于阐明沉香精油积累的分子机制。本研究聚焦萜类合成关键基因DXS和DXR,通过鉴定保守结构域,并鉴定含有相关保守结构域的基因,最终通过系统发育分析,从土沉香中鉴定到相关基因。结构域鉴定结果表明,DXS和DXR基因的蛋白序列均含有3个保守结构域。聚类分析表明,包含DXS的Transket_pyr结构域的基因可分为6个枝,而包含DXR的XP_redisom_C结构域的基因仅为1枝。通过与参考基因组拟南芥的DXS和DXR比对,从土沉香中鉴定到了2个DXS基因和一个DXR基因。表达分析结果表明,DXS基因在沉香树干、叶、花和花苞中高表达,而DXR基因在各组织中均高表达,该结果表明DXS基因更有可能是沉香中萜类物质合成的关键基因。本研究中鉴定的DXS和DXR基因将为调控土沉香中沉香精油含量提供基础,相关研究结果将对沉香精油成分调控产生理论价值。 展开更多
关键词 沉香 精油 萜类物质 DXS DXR
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类异戊二烯的生物合成及调控 被引量:21
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作者 郝宏蕾 朱旭芬 曾云中 《浙江大学学报(农业与生命科学版)》 CAS CSCD 北大核心 2002年第2期224-230,共7页
类异戊二烯是天然物质中化学结构较多的一类化合物 .本文阐述了类异戊二烯生物合成的途径和该途径中主要的酶 ,同时也介绍了酶基因及其调控的研究进展 .
关键词 类异戊二烯 生物合成 调控 化学结构 天然物质 酶基因 还原酶
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塔里木盆地侏罗系煤岩热模拟生物标志化合物特征研究 被引量:15
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作者 刘全有 刘文汇 +2 位作者 孟仟祥 宋岩 秦胜飞 《沉积学报》 CAS CSCD 北大核心 2004年第4期724-728,共5页
通过对塔里木盆地侏罗系煤岩热模拟实验研究,其结果表明生物标志化合物的组成不仅受其母质的控制,而且还受热成熟度和生油岩的岩性影响。这与生油岩中生物标志化合物先质在不同演化阶段释放出不同碳数生物标志化合物的强度有关。同时,... 通过对塔里木盆地侏罗系煤岩热模拟实验研究,其结果表明生物标志化合物的组成不仅受其母质的控制,而且还受热成熟度和生油岩的岩性影响。这与生油岩中生物标志化合物先质在不同演化阶段释放出不同碳数生物标志化合物的强度有关。同时,在烃源岩热演化过程中时,不能仅依靠OEP值作为热成熟度的判识指标;正构烷烃峰型在整个热演化过程中呈现出双峰型,前驼峰的主峰碳主要集中在nC16—nC18,而后驼峰则随着模拟温度的升高逐渐增大;煤岩的ΣC21-/ΣC22+值与热模拟温度之间呈现出规律性变化;原始煤岩的Pr/Ph值随热模拟温度由250℃~550℃升高,总体呈逐渐降低的趋势。 展开更多
关键词 侏罗系 生物标志化合物 生油岩 塔里木盆地 热演化 特征研究 演化阶段 煤岩 热模拟实验 烃源岩
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芳基类异戊二烯生标在指相上的应用 被引量:14
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作者 李振西 范璞 +1 位作者 李景贵 曾凡刚 《沉积学报》 CAS CSCD 北大核心 1998年第2期9-13,共5页
芳基类异戊二烯化合物被认为是高盐和强还原沉积环境中沉积有机质芳烃馏分中的特征性生物标志物。本文在对采自我国三个典型陆相油气盆地的33个原油和生油岩样品芳烃馏分中的生物标志化合物进行了详细研究的基础上,着重讨论了鄂尔多... 芳基类异戊二烯化合物被认为是高盐和强还原沉积环境中沉积有机质芳烃馏分中的特征性生物标志物。本文在对采自我国三个典型陆相油气盆地的33个原油和生油岩样品芳烃馏分中的生物标志化合物进行了详细研究的基础上,着重讨论了鄂尔多斯盆地中生界—原油样品中芳基类异戊二烯系列化合物的检出及其在指相上的地球化学意义,指出该系列化合物还可指示微咸水和还原的沉积环境。 展开更多
关键词 芳基类 异戊二烯 芳烃 沉积相 盆地 油气成因
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植物类异戊二烯代谢途径的分子生物学研究进展 被引量:60
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作者 陈大华 叶和春 +1 位作者 李国凤 刘彦 《Acta Botanica Sinica》 CSCD 2000年第6期551-558,共8页
New advances in molecular biology of plant secondary metabolic pathway were summarized. The biosynthesis of artemisinin was used as an example, combined with the research work in the authors’ laboratory. Some new way... New advances in molecular biology of plant secondary metabolic pathway were summarized. The biosynthesis of artemisinin was used as an example, combined with the research work in the authors’ laboratory. Some new ways for producing plant secondary metabolites were proposed. 展开更多
关键词 类异戊二烯 次生代谢 生物合成 分子调控 HMGR
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氮素胁迫下强、弱化感水稻萜类代谢途径中关键酶基因差异表达的FQ-PCR分析 被引量:19
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作者 王海斌 熊君 +4 位作者 方长旬 邱龙 吴文祥 何海斌 林文雄 《作物学报》 CAS CSCD 北大核心 2007年第8期1329-1334,共6页
运用实时荧光定量PCR技术研究低氮条件下化感与非化感水稻异戊二烯代谢途径中关键酶基因的表达差异。结果表明,与正常氮条件下相比,低氮条件下化感和非化感水稻与萜类物质合成相关的12个关键酶基因表达发生了不同程度的变化,其中,化感水... 运用实时荧光定量PCR技术研究低氮条件下化感与非化感水稻异戊二烯代谢途径中关键酶基因的表达差异。结果表明,与正常氮条件下相比,低氮条件下化感和非化感水稻与萜类物质合成相关的12个关键酶基因表达发生了不同程度的变化,其中,化感水稻PI312777有6个基因表达下调,6个基因则上调;而非化感水稻Lemont有7个基因表达下调,5个基因表达上调。在供氮条件从高向低改变的过程中,两水稻中有11个基因的表达行为(上调或下调)相同,从分子水平上,证实了它们萜类代谢相关基因在响应供氮环境变化的行为生态上是相同或相似的。低氮引起两水稻催化生成与化感物质相关的单萜、倍半萜、二萜、三萜类物质的合成酶基因表达量均显著下降,从而认为营养胁迫引起水稻化感抑草作用增强与萜类物质代谢变化无关。还讨论了营养胁迫引起萜类物质代谢变化与内源激素合成和生长速率减缓的关系,认为水稻甲羟戊酸代谢途径支路中3-羟基-3-甲基戊二单酰CoA合酶、3-羟基-3-甲基戊二单酰CoA还原酶和甲羟戊酸激酶相关基因表达量不同程度的上调,维持了生长所必需的激素水平。 展开更多
关键词 水稻 异戊二烯途径 FQ-PCR 氮素
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植物类异戊二烯生物合成相关酶基因研究进展 被引量:26
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作者 李莉 高凌云 +1 位作者 董越 杨莉 《浙江师范大学学报(自然科学版)》 CAS 2008年第4期461-466,共6页
类异戊二烯化合物是自然界广泛存在的一大类天然化合物,具有重要的生物学功能及经济价值.在植物体内,类异戊二烯化合物的生物合成主要有2条代谢途径:甲羟戊酸(MVA)途径和2-甲基-D-赤藓糖醇-4-磷酸(MEP)途径.综述了国内外对植物中这2条... 类异戊二烯化合物是自然界广泛存在的一大类天然化合物,具有重要的生物学功能及经济价值.在植物体内,类异戊二烯化合物的生物合成主要有2条代谢途径:甲羟戊酸(MVA)途径和2-甲基-D-赤藓糖醇-4-磷酸(MEP)途径.综述了国内外对植物中这2条代谢途径中相关酶基因的功能、分离情况、表达特性,以及2条代谢途径之间中间产物的交换等方面的研究进展. 展开更多
关键词 类异戊二烯化合物 生物合成 甲羟戊酸途径 2-甲基-D-赤藓糖醇4-磷酸途径 植物
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