首页> 美国卫生研究院文献>Plant Physiology >Flavonol 3-O-glycosyltransferases associated with petunia pollen produce gametophyte-specific flavonol diglycosides.
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Flavonol 3-O-glycosyltransferases associated with petunia pollen produce gametophyte-specific flavonol diglycosides.

机译:与矮牵牛花粉相关的黄酮醇3-O-糖基转移酶产生配子体特异性黄酮醇二糖苷。

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摘要

Wild-type petunia pollen accumulates high levels of flavonol 3-O-glycosides. Pollen from conditionally male-fertile petunia has no flavonols and is unable to germinate. Pollen function is restored both in vivo and in vitro by providing flavonol aglycones, but not flavonol glycosides, to the pollen. In the present study, incubation of an in vitro suspension of conditionally male-fertile pollen with kaempferol or quercetin resulted in the accumulation of kaempferol and quercetin 3-O-glycosides in the pollen. We identified two glycosyltransferase activities associated with the intact pollen grain that catalyze the formation of a gametophyte-specific class of flavonol glycosides. Feeding studies showed that product formation was highly specific for flavonols with an unsubstituted 3-hydroxyl group and was not dependent on an external source of UDP-hexose. Ultraviolet spectral analysis, fast atom bombardment mass spectrometry, 1H-nuclear magnetic resonance, and 13C-nuclear magnetic resonance identified the products as kaempferol and quercetin 3-O-(2"- O-beta-D-glucopyranosyl)-beta-D-galactopyranoside, identical with the flavonol 3-O-glycosides present in wild-type pollen. The sugars are linked in a 1-->2 configuration that results in a pollen-specific class of compounds. To retain both glycosyltransferase activities in a cell-free extract, it was necessary to add triton X-100, suggesting that one or both of the proteins may be associated with a pollen membrane. A model for flavonol glycoside biosynthesis and uptake into the pollen is discussed in terms of the germination requirement for flavonols.
机译:野生型矮牵牛花粉中积累了大量的黄酮醇3-O-糖苷。有条件的雄性可育矮牵牛的花粉没有黄酮醇并且不能发芽。通过向花粉提供黄酮醇苷元而非黄酮醇苷,在体内和体外均可恢复花粉功能。在本研究中,将有条件的雄性可育花粉的体外悬浮液与山emp酚或槲皮素一起孵育导致花粉酚和槲皮素3-O-糖苷在花粉中的积累。我们确定了与完整的花粉粒相关的两个糖基转移酶活性,这些活性催化了配子体特异性类黄酮糖苷的形成。饲料研究表明,产物形成对具有未取代的3-羟基基团的黄酮醇具有高度特异性,并且不依赖于UDP-己糖的外部来源。紫外光谱分析,快速原子轰击质谱,1H核磁共振和13C核磁共振将产物鉴定为山奈酚和槲皮素3-O-(2“-O-β-D-吡喃葡萄糖基)-β-D-半乳糖吡喃糖苷,与野生型花粉中的黄酮醇3-O-糖苷相同,糖以1-> 2的构型连接,形成花粉特异的一类化合物。游离提取物,有必要添加Triton X-100,这表明其中一种或两种蛋白质可能与花粉膜有关,并根据黄酮醇的萌发需求,讨论了黄酮醇糖苷生物合成和吸收到花粉中的模型。 。

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