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深入研究柏科花粉粒中的水分调节系统。

Insights into a hydration regulating system in Cupressus pollen grains.

机构信息

Istituto per la Protezione delle Piante - Consiglio Nazionale delle Ricerche. Via Madonna del Piano n. 10, I-50019, Sesto Fiorentino (FI), Italy.

出版信息

Ann Bot. 2011 Aug;108(2):299-306. doi: 10.1093/aob/mcr144. Epub 2011 Jun 17.

Abstract

BACKGROUND AND AIMS

Hydration, rupture and exine opening due to the sudden and large expansion of intine are typical of taxoid-type pollen grains. A hemispheric outgrowth external to the exine was observed on Cupressus and Juniperus pollen grains before the intine swelling and exine release. However, the actual existence of this permanent or temporary structure and its precise role in pollen hydration is still being debated. The aim of this paper is to collect information on the actual presence of this peculiar outgrowth on the surface of the Cupressus pollen grain, its structure, composition and function.

METHODS

Pollen grains of several Cupressus species were observed using various techniques and methodologies, under light and fluorescence microscopy, phase-contrast microscopy, confocal microscopy, scanning electron microscopy, and an environmental scanning electron microscope. Observations were also performed on other species with taxoid-type pollen grains.

KEY RESULTS

A temporary structure located just above the pore was observed on Cupressus pollen grains, as well as on other taxoid-type pollens. It is hemispheric, layered, and consists of polysaccharides and proteins. The latter are confined to its inner part. Its presence seems to regulate the entrance of water into the grains at the beginning of pollen hydration.

CONCLUSIONS

The presence of a temporary structure over the pore of taxoid-type pollen grains was confirmed and its structure was resolved using several stains and observation techniques. This structure plays a role in the first phases of pollen hydration.

摘要

背景与目的

Taxoid 型花粉粒的典型特征是水合作用、由于内突的突然和大量膨胀而导致的破裂以及外壁的张开。在木质部花粉粒的内突膨胀和外壁释放之前,我们观察到外壁上有一个半球形的突起。然而,这种永久或临时结构的实际存在及其在花粉水合作用中的精确作用仍存在争议。本文旨在收集有关 Cupressus 花粉粒表面这种特殊突起的实际存在、其结构、组成和功能的信息。

方法

使用各种技术和方法观察了几种 Cupressus 物种的花粉粒,包括光镜和荧光显微镜、相差显微镜、共聚焦显微镜、扫描电子显微镜和环境扫描电子显微镜。还观察了其他具有 Taxoid 型花粉粒的物种。

主要结果

在 Cupressus 花粉粒以及其他 Taxoid 型花粉粒上观察到一个临时结构,位于孔上方。它呈半球形、分层状,由多糖和蛋白质组成。后者局限于其内部。它的存在似乎调节了花粉水合作用开始时水进入花粉粒的入口。

结论

确认了 Taxoid 型花粉粒孔上存在一个临时结构,并使用多种染色和观察技术解析了其结构。该结构在花粉水合作用的早期阶段发挥作用。

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