Kim Sun Tae, Zhang Kangling, Dong Juan, Lord Elizabeth M
Center for Plant Cell Biology, Department of Botany and Plant Sciences, University of California, Riverside, California 92521, USA.
Plant Physiol. 2006 Dec;142(4):1397-411. doi: 10.1104/pp.106.086801. Epub 2006 Sep 22.
Pollen tube adhesion and guidance on extracellular matrices within the pistil are essential processes that convey the pollen tube cell and the sperm cells to the ovule. In this study, we purified an additional molecule from the pistil that enhances pollen tube adhesion when combined with the SCA (stigma/stylar cysteine-rich adhesin)/pectin matrix in our in vitro assay. The enhancer of adhesion was identified as free ubiquitin (Ub). This was confirmed by use of bovine Ub as a substitute for lily (Lilium longiflorum Thunb.) stigma Ub. To study the interaction of SCA and Ub with the lily pollen tube, we labeled both proteins with biotin. We observed uptake of biotin-labeled SCA and Ub into the pollen tube cells in vitro using confocal microscopy. For SCA, a strong signal occurred first at the tip of the pollen tube, suggestive of an endocytosis event, and then progressively throughout the tube cytoplasm. SCA was also localized inside the in vivo pollen tube using immunogold electron microscopy and found to be present in endosomes, multivesicular bodies, and vacuoles, all known to be endocytic compartments. It was also confirmed that SCA is endocytosed in the in vitro adhesion assay. Internalization of SCA was increased in pollen tubes treated with exogenous Ub compared to those without Ub, suggesting that Ub may facilitate SCA endocytosis. These results show that Ub can act as an enhancer of pollen tube adhesion in vitro and that it is taken up into the pollen tube as is SCA. The Ub machinery may play a role in pollen tube adhesion and guidance in lily.
花粉管在雌蕊细胞外基质上的黏附与导向是将花粉管细胞和精子细胞输送至胚珠的关键过程。在本研究中,我们从雌蕊中纯化出一种额外的分子,在体外实验中,当它与SCA(柱头/花柱富含半胱氨酸的黏附素)/果胶基质结合时,可增强花粉管的黏附。黏附增强剂被鉴定为游离泛素(Ub)。使用牛Ub替代百合(Lilium longiflorum Thunb.)柱头Ub证实了这一点。为研究SCA和Ub与百合花粉管的相互作用,我们用生物素标记了这两种蛋白质。利用共聚焦显微镜,我们在体外观察到生物素标记的SCA和Ub被花粉管细胞摄取。对于SCA,首先在花粉管顶端出现强烈信号,提示发生了内吞作用,随后信号逐渐遍布整个花粉管细胞质。利用免疫金电子显微镜还发现,SCA也定位于体内花粉管内部,并且存在于内体、多囊泡体和液泡中,这些都是已知的内吞区室。在体外黏附实验中也证实了SCA被内吞。与未用Ub处理的花粉管相比,用外源Ub处理的花粉管中SCA的内化增加,这表明Ub可能促进SCA的内吞作用。这些结果表明,Ub在体外可作为花粉管黏附的增强剂,并且它与SCA一样被摄取到花粉管中。泛素机制可能在百合花粉管的黏附与导向中发挥作用。