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首页> 外文期刊>Lipids >Delta5-olefinic acids in the seed lipids from four Ephedra species and their distribution between the alpha and beta positions of triacylglycerols. Characteristics common to coniferophytes and cycadophytes.
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Delta5-olefinic acids in the seed lipids from four Ephedra species and their distribution between the alpha and beta positions of triacylglycerols. Characteristics common to coniferophytes and cycadophytes.

机译:四种麻黄种子脂质中的Delta5-烯酸及其在三酰基甘油的α和β位置之间的分布。针叶植物和环生植物共有的特征。

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摘要

The fatty acid compositions of the seed lipids from four Ephedra species, E. nevadensis, E. viridis, E. przewalskii, and E. gerardiana (four gymnosperm species belonging to the Cycadophytes), have been established with an emphasis on delta5-unsaturated polymethylene-interrupted fatty acids (delta5-UPIFA). Mass spectrometry of the picolinyl ester derivatives allowed characterization of 5,9- and 5,11-18:2; 5,9,12-18:3; 5,9,12,15-18:4; 5,11-20:2; 5,11,14-20:3; and 5,11,14,17-20:4 acids. Delta5-UPIFA with a delta11-ethylenic bond (mostly C20 acids) were in higher proportions than delta5-UPIFA with a delta9 double bond (exclusively C18 acids) in all species. The total delta5-UPIFA content was 17-31% of the total fatty acids, with 5,11,14-20:3 and 5,11,14,17-20:4 acids being the principal delta5-UPIFA isomers. The relatively high level of cis-vaccenic (11-18:1) acid found in Ephedra spp. seeds, the presence of its delta5-desaturation product, 5,11-18:2 acid (proposed trivial name: ephedrenic acid), and of its elongation product, 13-20:1 acid, were previously shown to occur in a single other species, Ginkgo biloba, among the approximately 170 gymnosperm species analyzed so far. Consequently, Ephedraceae and Coniferophytes (including Ginkgoatae), which have evolved separately since the Devonian period (approximately 300 million yr ago), have kept in common the ability to synthesize C18 and C20 delta5-UPIFA. We postulate the existence of two delta5-desaturases in gymnosperm seeds, one possibly specific for unsaturated acids with a delta9-ethylenic bond, and the other possibly specific for unsaturated acids with a delta11-ethylenic bond. Alternatively, the delta5-desaturases might be specific for the chain length with C18 unsaturated acids on the one hand and C20 unsaturated acids on the other hand. The resulting hypothetical pathways for the biosynthesis of delta5-UPIFA in gymnosperm seeds are only distinguished by the position of 11-18:1 acid. Moreover, 13C nuclear magnetic resonance spectroscopy of the seed oil from two Ephedra species has shown that delta5-UPIFA are essentially excluded from the internal position of triacylglycerols, a characteristic common to all of the Coniferophytes analyzed so far (more than 30 species), with the possibility of an exclusive esterification at the sn-3 position. This structural feature would also date back to the Devonian period, but might have been lost in those rare angiosperm species containing delta5-UPIFA.
机译:已经建立了四种麻黄属种,E。nevadensis,E。viridis,E。przewalskii和E. gerardiana(属于Cycadophytes的四种裸子植物)种子脂质的脂肪酸组成,重点是δ5-不饱和聚亚甲基-间断脂肪酸(delta5-UPIFA)。吡啶甲酸酯衍生物的质谱分析可以鉴定5,9-和5,11-18:2; 5,9,12-18:3; 5,9,12,15-18:4; 5,11-20:2; 5,11,14-20:3;和5,11,14,17-20:4酸。在所有物种中,具有delta11-乙烯键的Delta5-UPIFA(主要为C20酸)的比例高于具有delta9双键的Delta5-UPIFA(仅C18酸)。 delta5-UPIFA的总含量为总脂肪酸的17-31%,其中5,11,14-20:3和5,11,14,17-20:4的酸是delta5-UPIFA的主要异构体。在麻黄属植物中发现的相对较高的顺式(11-18:1)酸。种子,先前已证明其delta5-脱饱和产物5,11-18:2酸(建议的平凡名称:麻黄酸)和其延伸产物13-20:1酸的存在均在另一种种子中发生到目前为止,已分析的170个裸子植物物种中有银杏树种。因此,自泥盆纪时期(大约3亿年前)开始分别进化的麻黄科和针叶树科植物(包括银杏科),具有共同合成C18和C20 delta5-UPIFA的能力。我们假设裸子植物种子中存在两种delta5-去饱和酶,一种可能对具有delta9-烯键的不饱和酸具有特异性,而另一种可能对具有del11-烯键的不饱和酸具有特异性。或者,δ5-去饱和酶可能对链长是特异性的,一方面是C18不饱和酸,而另一方面是C20不饱和酸。裸子植物种子中delta5-UPIFA的生物合成所产生的假想途径仅通过11-18:1酸的位置来区分。此外,对两种麻黄属植物的种子油进行13 C核磁共振波谱分析,结果表明,delta5-UPIFA基本上不包含在三酰基甘油的内部位置,这是迄今为止分析的所有松柏科植物(超过30种)的共同特征。在sn-3位发生独家酯化的可能性。这种结构特征也可以追溯到泥盆纪时期,但是在那些含有delta5-UPIFA的罕见被子植物中可能已经消失了。

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