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首页> 外文期刊>Journal of Experimental Botany >Mobilization of lipid reserves during germination of oat (Avena sativa L.), a cereal rich in endosperm oil
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Mobilization of lipid reserves during germination of oat (Avena sativa L.), a cereal rich in endosperm oil

机译:燕麦(一种富含胚乳油的谷物)发芽过程中的脂质储备动员

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Since the cereal endosperm is a dead tissue in the mature grain, β-oxidation is not possible there. This raises the question about the use of the endosperm oil in cereal grains during germination. In this study, mobilization of lipids in different tissues of germinating oat grains was analysed using thin-layer and gas chromatography. The data imply that the oat endosperm oil [triacylglycerol (TAG)] is not a dead-end product as it was absorbed by the scutellum, either as free fatty acids (FFAs) released from TAG or as intact TAG immediately degraded to FFAs. These data were supported by light and transmission electron microscopy (LM and TEM) studies where close contact between endosperm lipid droplets and the scutellum was observed. The appearance of the fused oil in the oat endosperm changed into oil droplets during germination in areas close to the aleurone and the scutellar epithelium. However, according to the data obtained by TEM these oil droplets are unlikely to be oil bodies surrounded by oleosins. Accumulation of FFA pools in the embryo suggested further transport of FFAs from the scutellum. Noticeably high levels of TAG were also accumulated in the embryo but were not synthesized by re-esterification from imported FFAs. Comparison between two oat cultivars with different amounts of oil and starch in the endosperm suggests that an increased oil to starch ratio in oat grains does not significantly impact the germination process.
机译:由于谷物胚乳是成熟谷物中的死组织,因此那里不可能进行β-氧化。这就提出了在发芽过程中在谷物中使用胚乳油的问题。在这项研究中,使用薄层色谱和气相色谱分析了发芽燕麦颗粒不同组织中脂质的运动。数据表明,燕麦胚乳油[三酰甘油(TAG)]并非死角产物,因为它被盾片吸收了,或者是从TAG释放的游离脂肪酸(FFA)或完整的TAG立即降解为FFA。这些数据得到了光学和透射电子显微镜(LM和TEM)研究的支持,其中观察到了胚乳脂质滴和盾片的紧密接触。燕麦胚乳中的融合油的外观在萌发过程中在糊粉和小epi上皮附近的区域变成了油滴。然而,根据通过TEM获得的数据,这些油滴不太可能是被油质蛋白包围的油体。 FFA池在胚胎中的积累表明,FFAs从盾片中进一步转运。明显地,高水平的TAG也积累在胚胎中,但是不是通过从导入的FFA重新酯化来合成的。两种胚乳中油和淀粉含量不同的燕麦品种的比较表明,燕麦籽粒中油/淀粉比例的增加不会显着影响发芽过程。

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