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麝香百合雌蕊渗出物在花粉管壁形成中的营养作用:I. 注入的柱头渗出物的利用

The Nutritional Role of Pistil Exudate in Pollen Tube Wall Formation in Lilium longiflorum: I. Utilization of Injected Stigmatic Exudate.

作者信息

Labarca C, Loewus F

机构信息

Department of Biology, State University of New York at Buffalo, Buffalo, New York 14214.

出版信息

Plant Physiol. 1972 Jul;50(1):7-14. doi: 10.1104/pp.50.1.7.

Abstract

A quantity of labeled stigmatic exudate, collected from detached Lilium longiflorum (cv. Ace) pistils labeled with d-glucose-1-(14)C, 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.

摘要

从用d-葡萄糖-1-(14)C标记的离体麝香百合(品种Ace)雌蕊上收集一定量的标记柱头渗出物,在葡聚糖G-100上进行分级分离,将多糖组分G-100-I注入在开花后第二天从植株上取下的未标记离体雌蕊(品种Ace)的空心花柱中。注入雌蕊后立即用麝香百合(品种44)花粉进行异花授粉。84小时后,解剖雌蕊以回收花粉管、消耗的渗出物以及柱头和花柱的标记组织。标记分布显示,切除的花粉管中至少25%的碳水化合物物质来自G-100-I。附着在花粉管上的消耗渗出物、花粉管细胞质和花粉管壁的组成表明,生长中的花粉管对渗出物的利用包括摄取渗出物多糖片段并将其掺入花粉管细胞质,随后在用于花粉管壁生物合成之前,至少一部分掺入的碳水化合物会进行广泛的代谢。结果表明G-100-I中至少存在两种多糖组分,一种在注入花柱后抵抗主要降解,另一种在进入花粉管之前和之后都会发生可测量的降解。

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Triton X-100 scintillant for carbon-14 labelled materials.用于碳-14标记材料的曲拉通X-100闪烁剂。
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