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线虫对植物甾醇的代谢

Metabolism of plant sterols by nematodes.

作者信息

Chitwood D J, Lusby W R

机构信息

Nematology Laboratory, USDA-ARS, Beltsville, Maryland 20705.

出版信息

Lipids. 1991 Aug;26(8):619-27. doi: 10.1007/BF02536426.

DOI:10.1007/BF02536426
PMID:1779708
Abstract

Parasitic nematodes do not biosynthesize sterols de novo and therefore possess a nutritional requirement for sterol, which must be obtained from their hosts. Consequently, the metabolism of phytosterols by plant-parasitic nematodes is an important process with potential for selective exploitation. The sterol compositions of several species of plant-parasitic nematodes were determined by capillary gas chromatography-mass spectrometry and compared with the sterol compositions of their hosts. Saturation of the phytosterol nucleus was the major metabolic transformation performed by the root-knot nematodes Meloidogyne arenaria and M. incognita and the corn root lesion nematode, Pratylenchus agilis. In addition to saturation, the corn cyst nematode, Heterodera zeae, dealkylated its host sterols at C-24. Because free-living nematodes can be cultured in sterol-defined artificial medium, they have been successfully used as model organisms for investigation of sterol metabolism in plant-parasitic nematodes. Major pathways of phytosterol metabolism in Caenorhabditis elegans, Turbatrix aceti and Panagrellus redivivus included C-24 dealkylation and 4 alpha-methylation (a pathway unique to nematodes). C. elegans and T. aceti introduced double bonds at C-7, and T. aceti and P. redivivus saturated the sterol nucleus similarly to the plant-parasitic species examined. Several azasteroids and long-chain dimethylalkylamines inhibited growth and development of C. elegans and also the delta 24-sterol reductase enzyme system involved in the nematode C-24 dealkylation pathway.

摘要

寄生线虫不能从头生物合成甾醇,因此对甾醇有营养需求,必须从宿主获取。因此,植物寄生线虫对植物甾醇的代谢是一个具有选择性利用潜力的重要过程。通过毛细管气相色谱 - 质谱法测定了几种植物寄生线虫的甾醇组成,并与它们宿主的甾醇组成进行了比较。根结线虫南方根结线虫和爪哇根结线虫以及玉米根腐线虫敏捷短体线虫对植物甾醇核的饱和是主要的代谢转化。除了饱和作用外,玉米胞囊线虫玉米异皮线虫还在C - 24位使其宿主甾醇脱烷基化。由于自由生活线虫可以在甾醇定义的人工培养基中培养,它们已成功用作研究植物寄生线虫甾醇代谢的模式生物。秀丽隐杆线虫、醋线虫和复生滑刃线虫中植物甾醇代谢的主要途径包括C - 24脱烷基化和4α - 甲基化(线虫特有的途径)。秀丽隐杆线虫和醋线虫在C - 7位引入双键,醋线虫和复生滑刃线虫使甾醇核饱和的方式与所研究的植物寄生线虫种类相似。几种氮杂甾体和长链二甲基烷基胺抑制秀丽隐杆线虫的生长发育以及参与线虫C - 24脱烷基化途径的δ24 - 甾醇还原酶系统。

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本文引用的文献

1
Sterol metabolism in the nematodeCaenorhabditis elegans.线虫秀丽隐杆线虫中的甾醇代谢
Lipids. 1984 Jul;19(7):500-6. doi: 10.1007/BF02534482.
2
A method for obtaining quantities of clean meloidogyne eggs.一种获取大量清洁根结线虫卵的方法。
J Nematol. 1973 Jul;5(3):230.
3
The Sterol, Fatty Acid, and Hydrocarbon Composition of Globodera solanacearum.茄科球孢线虫的甾醇、脂肪酸和烃类组成
A circadian-like gene network programs the timing and dosage of heterochronic miRNA transcription during C. elegans development.
一个生物钟样的基因网络在秀丽隐杆线虫的发育过程中编程了异时性 miRNA 转录的时间和剂量。
Dev Cell. 2023 Nov 20;58(22):2563-2579.e8. doi: 10.1016/j.devcel.2023.08.006. Epub 2023 Aug 28.
4
Tomato Sterol 22-desaturase Gene : Its Roles in Infection and Plant Stigmasterol Alteration.番茄甾醇 22-去饱和酶基因:在感染和植物甾醇改变中的作用。
Int J Mol Sci. 2022 Dec 1;23(23):15111. doi: 10.3390/ijms232315111.
5
Homologs of , and Function to Impair Parasitism While Also Regulating Mitogen Activated Protein Kinase Expression.……的同源物以及在损害……寄生作用的同时还调节丝裂原活化蛋白激酶表达的功能。 (由于原文部分内容缺失,翻译可能不够完整准确)
Front Plant Sci. 2022 May 4;13:842597. doi: 10.3389/fpls.2022.842597. eCollection 2022.
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Review of nematode interactions with hemp ().线虫与大麻相互作用的综述()。
J Nematol. 2022 Feb 18;54(1). doi: 10.21307/jofnem-2022-002. eCollection 2022.
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Altering Sterol Composition Implied That Cholesterol Is Not Physiologically Associated With Diosgenin Biosynthesis in .改变甾醇组成表明胆固醇在生理上与薯蓣皂苷元的生物合成无关。
Front Plant Sci. 2021 Oct 18;12:741604. doi: 10.3389/fpls.2021.741604. eCollection 2021.
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Chemical Characterization of Plant Extracts and Evaluation of their Nematicidal and Phytotoxic Potential.植物提取物的化学特性分析及其杀线虫和植物毒性潜力评估。
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5
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6
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J Nematol. 1985 Jan;17(1):64-8.
7
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Exp Parasitol. 1967 Oct;21(2):232-9. doi: 10.1016/0014-4894(67)90085-9.
10
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J Parasitol. 1970 Oct;56(5):1004-8.