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Intersection of two signalling pathways: extracellular nucleotides regulate pollen germination and pollen tube growth via nitric oxide

机译:两条信号通路的交叉点:细胞外核苷酸通过一氧化氮调节花粉萌发和花粉管生长

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摘要

Plant and animal cells release or secrete ATP by various mechanisms, and this activity allows extracellular ATP to serve as a signalling molecule. Recent reports suggest that extracellular ATP induces plant responses ranging from increased cytosolic calcium to changes in auxin transport, xenobiotic resistance, pollen germination, and growth. Although calcium has been identified as a secondary messenger for the extracellular ATP signal, other parts of this signal transduction chain remain unknown. Increasing the extracellular concentration of ATPγS, a poorly-hydrolysable ATP analogue, inhibited both pollen germination and pollen tube elongation, while the addition of AMPS had no effect. Because pollen tube elongation is also sensitive to nitric oxide, this raised the possibility that a connection exists between the two pathways. Four approaches were used to test whether the germination and growth effects of extracellular ATPγS were transduced via nitric oxide. The results showed that increases in extracellular ATPγS induced increases in cellular nitric oxide, chemical agonists of the nitric oxide signalling pathway lowered the threshold of extracellular ATPγS that inhibits pollen germination, an antagonist of guanylate cyclase, which can inhibit some nitric oxide signalling pathways, blocked the ATPγS-induced inhibition of both pollen germination and pollen tube elongation, and the effects of applied ATPγS were blocked in nia1nia2 mutants, which have diminished NO production. The concurrence of these four data sets support the conclusion that the suppression of pollen germination and pollen tube elongation by extracellular nucleotides is mediated in part via the nitric oxide signalling pathway.
机译:动植物细胞通过各种机制释放或分泌ATP,这种活性使细胞外ATP可以充当信号分子。最近的报告表明,细胞外ATP诱导植物反应,范围从增加的胞质钙到生长素转运,异种抗性,花粉萌发和生长的变化。尽管钙已被确定为细胞外ATP信号的次要信使,但该信号转导链的其他部分仍然未知。难水解的ATP类似物ATPγS的细胞外浓度增加,抑制了花粉萌发和花粉管伸长,而添加AMPS则没有效果。因为花粉管的伸长对一氧化氮也很敏感,所以这增加了两条途径之间存在联系的可能性。使用四种方法测试一氧化氮是否转导了细胞外ATPγS的发芽和生长作用。结果表明,细胞外ATPγS的增加诱导了细胞一氧化氮的增加,一氧化氮信号传导通路的化学激动剂降低了抑制花粉萌发的细胞外ATPγS的阈值,该花粉萌发是鸟苷酸环化酶的拮抗剂,可以抑制某些一氧化氮的信号传导通路。在nia1nia2突变体中,ATPγS诱导的对花粉萌发和花粉管伸长的抑制作用以及所施加的ATPγS的作用均被阻止,从而减少了NO的产生。这四个数据集的同时,支持以下结论:细胞外核苷酸对花粉萌发和花粉管伸长的抑制部分是通过一氧化氮信号途径介导的。

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