首页> 外文OA文献 >The Nutritional Role of Pistil Exudate in Pollen Tube Wall Formation in Lilium longiflorum: I. Utilization of Injected Stigmatic Exudate 1
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The Nutritional Role of Pistil Exudate in Pollen Tube Wall Formation in Lilium longiflorum: I. Utilization of Injected Stigmatic Exudate 1

机译:雌蕊分泌物在长花百合花粉管壁形成中的营养作用:I.注射有色分泌物的利用1

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摘要

A quantity of labeled stigmatic exudate, collected from detached Lilium longiflorum (cv. Ace) pistils labeled with d-glucose-1-14C, was fractionated on Sephadex G-100 and the polysaccharide component, G-100-I, was injected into the hollow styles of unlabeled detached pistils (cv. Ace) which had been removed on the day after anthesis from the plant. Injected pistils were immediately cross-pollinated with L. longiflorum (cv. No. 44) pollen. Eighty-four hours later, pistils were dissected to recover the pollen tubes, expended exudate, and labeled tissues of the stigma and style. Distribution of label revealed that at least 25% of the carbohydrate substance in excised pollen tubes was derived from G-100-I. The composition of expended exudate adhering to pollen tubes, of pollen tube cytoplasm, and of pollen tube walls suggests that utilization of exudate by growing pollen tubes involves uptake and incorporation into pollen tube cytoplasm of exudate polysaccharide fragments followed by extensive metabolism of at least a portion of the incorporated carbohydrate prior to its utilization for pollen tube wall biosynthesis. Results suggest the presence of at least two polysaccharide components in G-100-I, one which resists major degradation following injection into the style and another which undergoes measurable degradation both before and after entry into the pollen tube.
机译:在Sephadex G-100上分馏自分离的长果百合(cv。Ace)雌蕊上标有d-葡萄糖-1-14C的一定数量的带标记的分泌物,然后将多糖成分G-100-I注射到Sephadex G-100中。中空样式的未标记雌蕊(cv。Ace),在开花后的第二天从植物中去除。立即将注射的雌蕊与长花乳杆菌(Cv。No. 44)花粉交叉授粉。 84小时后,解剖雌蕊以恢复花粉管,消耗渗出液,并标记具有柱头和样式的组织。标签的分布表明,在切除的花粉管中至少有25%的碳水化合物物质来自G-100-I。附着在花粉管,花粉管细胞质和花粉管壁上的消耗性分泌物的组成表明,通过生长花粉管来利用渗出液需要吸收并结合渗出液多糖片段的花粉管细胞质,然后至少一部分被广泛代谢在将其用于花粉管壁生物合成之前,先对其中的碳水化合物进行分析。结果表明,在G-100-I中至少存在两种​​多糖成分,一种在注入花型后抵抗主要降解,另一种在进入花粉管之前和之后均经历可测量的降解。

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    Labarca, C.; Loewus, F.;

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  • 年度 1972
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