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Boron influences pollen germination and pollen tube growth in Picea meyeri

机译:硼影响云杉云杉花粉萌发和花粉管生长

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To study the role of boron in pollen germination and pollen tube growth of Picea meyeri Rehd. et Wils., pollen grains were cultured in standard medium or boron-deficient medium. Effects of boron on the localization of pectins and callose in the walls of pollen tubes were observed by laser scanning confocal microscopy after staining with aniline blue or immunolabeling with antibodies JIM5 and JIM7. Changes in the structures of pectins and phenolics were investigated by fourier transform infrared (FTIR) microspectroscopy. Pollen germination in boron-deficient medium ranged from 18 to 24%, whereas pollen germination in standard medium reached 61%. Callose accumulated in the tip-regions of pollen tubes cultured in boron-deficient medium, but not in standard medium. Immunolabeling with antibody JIM5 revealed that acidic pectin preferentially accumulated in the tip regions of pollen tubes cultured in boron-deficient medium, whereas acidic pectin was weakly distributed along the entire lengths of pollen tubes cultured in standard medium. Esterified pectin, detected by immunolabeling with antibody JIM7, showed a similar distribution pattern in pollen tubes in both the boron-deficient and standard treatments. The FTIR spectra indicated slight increases in contents of phenolics and carboxylic acids and a substantial decrease in the content of saturated esters in boron-deficient pollen tubes compared with normal pollen tubes. The FTIR spectra confirmed that boron deficiency enhanced acidic pectin accumulation in pollen tubes, which may be associated with the increased content of carboxylic acid. We conclude that boron has a regulatory role in pollen germination and pollen tube growth.
机译:研究硼在云杉云杉花粉萌发和花粉管生长中的作用。等人,花粉粒是在标准培养基或缺硼培养基中培养的。苯胺蓝染色或抗体JIM5和JIM7免疫标记后,通过激光扫描共聚焦显微镜观察了硼对花粉管壁中果胶和call质定位的影响。果胶和酚醛树脂的结构变化通过傅立叶变换红外(FTIR)显微光谱进行了研究。缺硼培养基中的花粉发芽率为18%至24%,而标准培养基中的花粉发芽率为61%。 ose质在缺硼培养基中培养的花粉管尖端区域积累,但在标准培养基中没有。用抗体JIM5进行的免疫标记显示,酸性果胶优先积累在缺硼培养基中培养的花粉管的尖端区域,而酸性果胶在标准培养基中培养的花粉管的整个长度上分布较弱。通过用抗体JIM7免疫标记检测的酯化果胶在缺硼和标准处理中在花粉管中显示相似的分布模式。 FTIR光谱表明,与普通花粉管相比,缺硼花粉管中酚和羧酸的含量略有增加,饱和酯的含量显着下降。 FTIR光谱证实硼缺乏会增强花粉管中酸性果胶的积累,这可能与羧酸含量的增加有关。我们得出结论,硼在花粉萌发和花粉管生长中具有调节作用。

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