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蓝云杉(Picea pungens)中的双相花粉萌发。

Bipolar pollen germination in blue spruce (Picea pungens).

机构信息

Lomonosov Moscow State University, Russian Federation, Moscow, 119991, Russia.

出版信息

Protoplasma. 2019 Jul;256(4):941-949. doi: 10.1007/s00709-018-01333-3. Epub 2019 Feb 20.

Abstract

Direct growth of a pollen tube is an effective mechanism of sperm delivery characteristic for the majority of seed plants. In most cases, only one tube grows from one grain to perform the delivery function; meanwhile in Picea the appearance of two tubes from a single pollen grain is quite common during in vitro germination. Here, we describe the phenomenon of bipolar germination and test two hypotheses on its nature and possible role in gametophyte functioning. The hypothesis on "trophic" function of multiple tubes provoked by poor nutrition discussed in literature was not confirmed by in vitro growth tests; bipolar germination strongly decreased with lowering sucrose availability. The highest proportion of bipolar germination occurred in optimal conditions. We then assumed that bipolar germination occurs because turgor pressure is a non-directional force and effective systems of cell wall mechanical regulation are lacking. In hypertonic medium, bipolar germination was sufficiently lower than in isotonic medium, which was consistent with prediction of the «mechanical» hypothesis. Scanning electron microscopy and fluorescence microscopy analysis of pollen morphology and cell wall dynamics during both types of germination showed that the appearance of a single tube or bipolar germination depends on the extension of exine rupture. Cell wall softening by short-term ·OH treatment sufficiently decreased the percent of bipolar germination without affecting total germination efficiency. We concluded that mechanical properties of the cell wall and turgor pressure could shift the balance towards one of the germination patterns.

摘要

花粉管的直接生长是一种有效的精子输送机制,这一机制是大多数种子植物所特有的。在大多数情况下,只有一个管从一个花粉粒生长到执行输送功能;而在云杉中,在体外萌发过程中,单个花粉粒出现两个管的情况相当常见。在这里,我们描述了双极萌发的现象,并对其性质及其在配子体功能中的可能作用检验了两个假说。文献中讨论的关于由于营养不足而引起的“营养”功能的多管假说并没有通过体外生长试验得到证实;随着蔗糖可用性的降低,双极萌发强烈减少。在最佳条件下,发生最高比例的双极萌发。然后我们假设,双极萌发是因为膨压是一种无方向的力,而且缺乏有效的细胞壁机械调节系统。在高渗介质中,双极萌发的比例足够低于等渗介质,这与“机械”假说的预测一致。在两种萌发类型中,花粉形态和细胞壁动力学的扫描电子显微镜和荧光显微镜分析表明,单个管的出现或双极萌发取决于外壁破裂的延伸。通过短时间的·OH 处理使细胞壁软化,足以降低双极萌发的比例,而不影响总萌发效率。我们得出结论,细胞壁的机械特性和膨压可以使萌发模式的平衡向其中一种模式倾斜。

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