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冷藏花粉和新鲜花粉的基因表达谱以研究花粉萌发和生长。

Gene expression profiles of cold-stored and fresh pollen to investigate pollen germination and growth.

作者信息

Wang Min-Long, Hsu Chia-Mei, Chang Liang-Chi, Wang Co-Shine, Su Ting-Ho, Huang Yih-Jong John, Jiang Liwen, Jauh Guang-Yuh

机构信息

Institute of Botany, Academia Sinica, Nankang, Taipei 11529, Taiwan, ROC.

出版信息

Plant Cell Physiol. 2004 Oct;45(10):1519-28. doi: 10.1093/pcp/pch174.

Abstract

In lily (Lilium longiflorum cv. Avita) pollen cold-stored (-20 degrees C) for 2 months, typical in vitro germination/growth was delayed by about 1 h compared with fresh pollen. We hypothesized that some proteins and mRNAs stored in mature pollen were degraded during storage periods and that re-synthesis of them was essential to resume normal germination and growth. Cold-stored and fresh pollen grains were used to investigate the regulatory mechanism of pollen germination and tube growth in terms of both total protein profile and gene expression. Total protein profiles of cold-stored pollen differed qualitatively and quantitatively from fresh pollen. Actinomycin D significantly inhibited both germination and tube growth of cold-stored pollen and later tube growth of fresh pollen but had no effect on fresh pollen germination and early tube growth. Suppression subtractive hybridization screening revealed 99 cDNAs enriched in fresh mature pollen, and 22 were selected for further characterization. Most of these 22 cDNAs gradually disappeared during cold storage, but full recovery was achieved by incubating the cold-stored pollen in culture medium for 2 h. Because of different sensitivities to cold storage and actinomycin D, the transcripts were divided into three groups according to their possible roles in pollen germination and tube growth. Several cDNAs encoding novel proteins showed pollen-specific expression patterns and may participate in drought tolerance (an Na+/H+ antiporter), endomembrane trafficking (DnaJ), division of the generative cell (Sgt1), pollen wall precursor uptake from stylar exudate (an Na+/myoinositol symporter) and chemotropism of the pollen tube (peptide transporter) during pollination.

摘要

在麝香百合(Lilium longiflorum cv. Avita)花粉于-20℃冷藏2个月后,与新鲜花粉相比,其典型的体外萌发/生长延迟了约1小时。我们推测,成熟花粉中储存的一些蛋白质和mRNA在储存期间会降解,而它们的重新合成对于恢复正常的萌发和生长至关重要。利用冷藏和新鲜的花粉粒,从总蛋白质谱和基因表达两方面研究花粉萌发和花粉管生长的调控机制。冷藏花粉的总蛋白质谱在质量和数量上均与新鲜花粉不同。放线菌素D显著抑制冷藏花粉的萌发和花粉管生长以及新鲜花粉的后期花粉管生长,但对新鲜花粉的萌发和早期花粉管生长没有影响。抑制性消减杂交筛选揭示了99个在新鲜成熟花粉中富集的cDNA,并选择了22个进行进一步表征。这22个cDNA中的大多数在冷藏期间逐渐消失,但通过将冷藏花粉在培养基中孵育2小时可实现完全恢复。由于对冷藏和放线菌素D的敏感性不同,根据转录本在花粉萌发和花粉管生长中可能发挥的作用,将其分为三组。几个编码新蛋白质的cDNA显示出花粉特异性表达模式,可能在授粉过程中参与耐旱性(一种Na+/H+反向转运蛋白)、内膜运输(DnaJ)、生殖细胞分裂(Sgt1)、从花柱渗出物中摄取花粉壁前体(一种Na+/肌醇同向转运蛋白)以及花粉管的向化性(肽转运蛋白)。

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