Fang Kefeng, Gao Sai, Zhang Weiwei, Xing Yu, Cao Qingqin, Qin Ling
Beijing Key Laboratory for Agricultural Application and New Technique, College of Plant Science and Technology, Beijing University of Agriculture, Beijing 102206, China.
PLoS One. 2016 Feb 17;11(2):e0149232. doi: 10.1371/journal.pone.0149232. eCollection 2016.
A key role of boron in plants is to cross-link the cell wall pectic polysaccharide rhamnogalacturonan-II (RG-II) through borate diester linkages. Phenylboronic acid (PBA) can form the same reversible ester bonds but cannot cross-link two molecules, so can be used as an antagonist to study the function of boron. This study aimed to evaluate the effect of PBA on apple (Malus domestica) pollen tube growth and the underlying regulatory mechanism. We observed that PBA caused an inhibition of pollen germination, tube growth and led to pollen tube morphological abnormalities. Fluorescent labeling, coupled with a scanning ion-selective electrode technique, revealed that PBA induced an increase in extracellular Ca2+ influx, thereby elevating the cytosolic Ca2+ concentration [Ca2+]c and disrupting the [Ca2+]c gradient, which is critical for pollen tube growth. Moreover the organization of actin filaments was severely perturbed by the PBA treatment. Immunolocalization studies and fluorescent labeling, together with Fourier-transform infrared analysis (FTIR) suggested that PBA caused an increase in the abundance of callose, de-esterified pectins and arabinogalactan proteins (AGPs) at the tip. However, it had no effect on the deposition of the wall polymers cellulose. These effects are similar to those of boron deficiency in roots and other organs, indicating that PBA can induce boron deficiency symptoms. The results provide new insights into the roles of boron in pollen tube development, which likely include regulating [Ca2+]c and the formation of the actin cytoskeleton, in addition to the synthesis and assembly of cell wall components.
硼在植物中的一个关键作用是通过硼酸二酯键交联细胞壁果胶多糖鼠李半乳糖醛酸聚糖-II(RG-II)。苯硼酸(PBA)可以形成相同的可逆酯键,但不能交联两个分子,因此可作为拮抗剂用于研究硼的功能。本研究旨在评估PBA对苹果(Malus domestica)花粉管生长的影响及其潜在调控机制。我们观察到,PBA导致花粉萌发、花粉管生长受到抑制,并导致花粉管形态异常。荧光标记结合扫描离子选择性电极技术表明,PBA诱导细胞外Ca2+内流增加,从而提高胞质Ca2+浓度[Ca2+]c,并破坏对花粉管生长至关重要的[Ca2+]c梯度。此外,PBA处理严重扰乱了肌动蛋白丝的组织。免疫定位研究、荧光标记以及傅里叶变换红外分析(FTIR)表明,PBA导致花粉管顶端的胼胝质、去酯化果胶和阿拉伯半乳聚糖蛋白(AGP)丰度增加。然而,它对细胞壁聚合物纤维素的沉积没有影响。这些效应与根和其他器官中硼缺乏的效应相似,表明PBA可以诱导硼缺乏症状。这些结果为硼在花粉管发育中的作用提供了新的见解,硼的作用可能包括调节[Ca2+]c和肌动蛋白细胞骨架的形成,以及细胞壁成分的合成和组装。