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Nitric Oxide Participates in Cold-Inhibited Camellia sinensis Pollen Germination and Tube Growth Partly via cGMP In Vitro

机译:一氧化氮部分参与cGMP体外参与冷抑制的山茶花粉萌发和试管生长

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摘要

Nitric oxide (NO) plays essential roles in many biotic and abiotic stresses in plant development procedures, including pollen tube growth. Here, effects of NO on cold stress inhibited pollen germination and tube growth in Camellia sinensis were investigated in vitro. The NO production, NO synthase (NOS)-like activity, cGMP content and proline (Pro) accumulation upon treatment with NO scavenger cPTIO, NOS inhibitor L-NNA, NO donor DEA NONOate, guanylate cyclase (GC) inhibitor ODQ or phosphodiesterase (PDE) inhibitor Viagra at 25°C (control) or 4°C were analyzed. Exposure to 4°C for 2 h reduced pollen germination and tube growth along with increase of NOS-like activity, NO production and cGMP content in pollen tubes. DEA NONOate treatment inhibited pollen germination and tube growth in a dose-dependent manner under control and reinforced the inhibition under cold stress, during which NO production and cGMP content promoted in pollen tubes. L-NNA and cPTIO markedly reduced the generation of NO induced by cold or NO donor along with partly reverse of cold- or NO donor-inhibited pollen germination and tube growth. Furthermore, ODQ reduced the cGMP content under cold stress and NO donor treatment in pollen tubes. Meanwhile, ODQ disrupted the reinforcement of NO donor on the inhibition of pollen germination and tube growth under cold condition. Additionally, Pro accumulation of pollen tubes was reduced by ODQ compared with that receiving NO donor under cold or control condition. Effects of cPTIO and L-NNA in improving cold-treated pollen germination and pollen tube growth could be lowered by Viagra. Moreover, the inhibitory effects of cPTIO and L-NNA on Pro accumulation were partly reversed by Viagra. These data suggest that NO production from NOS-like enzyme reaction decreased the cold-responsive pollen germination, inhibited tube growth and reduced Pro accumulation, partly via cGMP signaling pathway in C. sinensis.
机译:一氧化氮(NO)在植物发育过程(包括花粉管生长)中的许多生物和非生物胁迫中起着至关重要的作用。在这里,研究了NO对冷胁迫抑制山茶花粉萌发和花粉管生长的影响。用NO清除剂cPTIO,NOS抑制剂L-NNA,NO供体DEA NONOate,鸟苷酸环化酶(GC)抑制剂ODQ或磷酸二酯酶(PDE)处理后,NO产生,NO合酶(NOS)样活性,cGMP含量和脯氨酸(Pro)积累)在25°C(对照)或4°C下分析了抑制剂伟哥。暴露于4°C 2小时可减少花粉发芽和花粉管生长,同时增加花粉管中类似NOS的活性,NO生成和cGMP含量。 DEA NONOate处理在控制下以剂量依赖性方式抑制花粉萌发和管生长,并增强冷胁迫下的抑制作用,在此过程中,花粉管中NO生成和cGMP含量增加。 L-NNA和cPTIO显着减少了冷或NO供体诱导的NO生成,以及冷或NO供体抑制的花粉萌发和试管生长的部分逆转。此外,ODQ降低了花粉管在冷胁迫和NO供体处理下的cGMP含量。同时,ODQ在寒冷条件下破坏了花粉萌发和管的生长而破坏了NO供体的增强。另外,与在寒冷或对照条件下接受NO供体的花粉管相比,ODQ减少了花粉管的Pro积累。伟哥可降低cPTIO和L-NNA在改善冷处理花粉萌发和花粉管生长方面的作用。此外,伟哥部分逆转了cPTIO和L-NNA对Pro积累的抑制作用。这些数据表明,从NOS样酶反应中产生的NO减少了寒冷反应的花粉萌发,抑制了管的生长并减少了Pro的积累,部分是通过中华绒螯蟹的cGMP信号传导途径。

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