首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Rice terpene synthase 20 (OsTPS20) plays an important role in producing terpene volatiles in response to abiotic stresses
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Rice terpene synthase 20 (OsTPS20) plays an important role in producing terpene volatiles in response to abiotic stresses

机译:水稻萜烯合酶20(OsTPS20)在响应非生物胁迫而产生萜烯挥发物中起重要作用

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This study examined the volatile terpenes produced by rice seedlings in response to oxidative stress induced by various abiotic factors. Solid-phase microextraction-gas chromatography-mass spectrometry (SPME-GC-MS) analyses revealed that when exposed to UV-B radiation, rice seedlings emitted a bouquet of monoterpene mixtures in a time-dependent manner. The mixtures comprised limonene, sabinene, myrcene, alpha-terpinene, beta-ocimene, gamma-terpinene, and alpha-terpinolene. Among them, (S)-limonene was the most abundant volatile, discriminated by chiral SPME-GC-MS. The volatile profiles collected from rice plants treated with both gamma-irradiation and H2O2 were identical to those observed in the UV-B irradiated plants, thus indicating that the volatile mixtures were specifically produced in response to oxidative stress, particularly in the presence of H2O2. Using a reverse genetics approach, we isolated full-length rice terpene synthase 20 (OsTPS20, 599 amino acids, 69.39 kDa), which was further characterized as an (S)-limonene synthase by removing the N-terminal signal peptide (63 amino acids) of the protein. The recombinant OsTPS20 protein catalyzed the conversion of geranyl diphosphate to (S)-limonene and other minor monoterpenes, essentially covering all of the volatile compounds detected from the plant. Moreover, qRT-PCR revealed that the transcript levels of OsTPS20 were significantly induced in response to oxidative stress, thereby suggesting that OsTPS20 plays a major role in producing terpene volatiles during abiotic stress. Detailed biochemical analyses and the unusual domain characteristics of OsTPS20 are also discussed in this report.
机译:这项研究检查了水稻幼苗对各种非生物因素引起的氧化应激反应所产生的挥发性萜烯。固相微萃取-气相色谱-质谱(SPME-GC-MS)分析显示,当暴露于UV-B辐射下时,水稻幼苗以时间依赖的方式释放出一束单萜混合物。混合物包括柠檬烯,sa烯,月桂烯,α-萜品烯,β-罗曼烯,γ-萜品烯和α-萜品油烯。其中,(S)-柠檬烯是最丰富的挥发物,通过手性SPME-GC-MS可以区分。从经γ-射线和H2O2处理的水稻植株中收集到的挥发性物质与在UV-B照射的植物中观察到的相同,因此表明该挥发性混合物是专门针对氧化应激而产生的,特别是在H2O2存在下。使用逆向遗传学方法,我们分离出全长水稻萜烯合酶20(OsTPS20,599个氨基酸,69.39 kDa),其通过去除N末端信号肽(63个氨基酸)进一步表征为(S)-柠檬烯合酶。 )的蛋白质。重组的OsTPS20蛋白催化了香叶基二磷酸转化为(S)-柠檬烯和其他较小的单萜,基本上覆盖了从植物中检出的所有挥发性化合物。此外,qRT-PCR显示,OsTPS20的转录水平在氧化应激反应中得到了显着诱导,从而表明OsTPS20在非生物胁迫期间在产生萜烯挥发物中起主要作用。本报告还讨论了详细的生化分析和OsTPS20异常域特征。

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