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Targeting of Pollen Tubes to Ovules Is Dependent on Nitric Oxide (NO) Signaling

机译:花粉管对胚珠的目标取决于一氧化氮(NO)信号。

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摘要

The guidance signals that drive pollen tube navigation inside the pistil and micropyle targeting are still, to a great extent,unknown.Previous studies in vitro showed that nitric oxide (NO) works as a negative chemotropic cue for pollen tube growth in lily(Lilium longiflorum).Furthermore, Arabidopsis thaliana Atnos1 mutant plants,which show defective NO production,have reduced fertility.Here, we focus in the role of NO in the process of pollen-pistil communication, using Arabidopsis in-vivo and lily semi-vivo assays.Cross-pollination between wild-type and Atnos1 plants shows that the mutation affects the pistil tissues in a way that is compatible with abnormal pollen tube guidance.Moreover,DAF-2DA staining for NO in kanadi floral mutants showed the presence of NO in an asymmetric restricted area around the micropyle.The pollen-pistil interaction transcriptome indicates a time-course-specific modulation of transcripts of AtNOS1 and two Nitrate Reductases(nr1 and nr2),which collectively are thought to trigger a putative NO signaling pathway.Semivivo assays with isolated ovules and lily pollen further showed that NO is necessary for micropyle targeting to occur.This evidence is supported by CPTIO treatment with subsequent formation of balloon tips in pollen tubes facing ovules.Activation of calcium influx in pollen tubes partially rescued normal pollen tube morphology,suggesting that this pathway is also dependent on Ca2+ signaling.A role of NO in modulating Ca2+ signaling was further substantiated by direct imaging the cytosolic free Ca2+ concentration during NO-induced re-orientation,where two peaks of Ca2+ occur-one during the slowdown/stop response,the second during re-orientation and growth resumption.Taken together,these results provide evidence for the participation of NO signaling events during pollen-pistil interaction.Of special relevance,NO seems to directly affect the targeting of pollen tubes to the ovule's micropyle by modulating the action of its diffusible factors.
机译:仍然在很大程度上未知驱动花粉管在雌蕊内部导航的引导信号。先前的体外研究表明,一氧化氮(NO)可以作为百合(Lyong longiflorum)花粉管生长的负化学趋向性线索。 )。此外,显示出NO产生缺陷的拟南芥Atnos1突变植物的繁殖力降低了。在此,我们集中在拟南芥体内和百合半体内试验中,研究了NO在花粉雌蕊沟通过程中的作用。野生型和Atnos1植物之间的异花授粉表明该突变以与花粉管异常引导相适应的方式影响雌蕊组织。此外,DAF-2DA对kanadi花卉突变体中NO的染色表明不对称存在NO。花粉-雌蕊相互作用的转录组表明AtNOS1和两个硝酸还原酶(nr1和nr2)的转录物在时间过程中的调控。人们认为,分离的胚珠和百合花粉的半活体测定法进一步证明,NO是实现靶向微生物的必要条件.CPTIO处理并随后在面对胚珠的花粉管中形成球囊尖端,为这一证据提供了支持。花粉管中的钙流入量部分恢复了正常的花粉管形态,表明该途径也依赖于Ca2 +信号传导。通过直接成像NO诱导的重新定向过程中胞浆游离Ca2 +浓度,进一步证实了NO在调节Ca2 +信号传导中的作用。 ,其中Ca2 +的两个峰值出现在一个:减速/停止响应期间,一个在重新定向和生长恢复期间。另一个加在一起,这些结果为花粉雌蕊相互作用期间NO信号事件的参与提供了证据。 NO似乎通过调节其扩散作用直接影响花粉管对胚珠的定向。 ble因素。

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  • 来源
    《分子植物(英文版)》 |2008年第4期|703-714|共12页
  • 作者单位

    Instituto Gulbenkian de Ciencia,Centro de Biologia do Desenvolvimento,PT-2780-156 Oeiras, Portugal;

    Instituto Gulbenkian de Ciencia,Centro de Biologia do Desenvolvimento,PT-2780-156 Oeiras, Portugal;

    Instituto Gulbenkian de Ciencia,Centro de Biologia do Desenvolvimento,PT-2780-156 Oeiras, Portugal;

    Instituto Gulbenkian de Ciencia,Centro de Biologia do Desenvolvimento,PT-2780-156 Oeiras, Portugal;

    Instituto Gulbenkian de Ciencia,Centro de Biologia do Desenvolvimento,PT-2780-156 Oeiras, Portugal;

    Universidade de Lisboa,Faculdade de Ciencias,Dept Biologia Vegetal,Campo Grande,Ed.C2.PT-1749-016 Lisboa, Portugal;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 植物学;
  • 关键词

    pollen tubes; NO; fertilization; guidance; calcium signaling;

    机译:花粉管;NO;施肥;指导;钙信号;
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