Antognoni F, Bagni N
Dipartimento di Biologia Evoluzionistica Sperimentale, Università di Bologna, Bologna, Italy.
Plant Biol (Stuttg). 2008 May;10(3):334-41. doi: 10.1111/j.1438-8677.2007.00016.x.
Bis(guanylhydrazones) are a class of compounds known to interfere with the metabolism of polyamines (PAs). Among them, the methylglyoxal derivative (MGBG) has been studied most thoroughly. Because PAs and their biosynthetic enzymes are strongly involved in pollen tube organization, emergence and elongation, a number of these inhibitors have been studied in the present work for their effects on the in vitro performance of kiwifruit (Actinidia deliciosa) pollen. Increasing concentrations of several bis(guanylhydrazones) in the range 0.05-1 mM were checked for their effect on pollen germination. Most of the compounds tested showed a dose-dependent inhibitory effect on tube emergence, which was established very early during incubation. At 0.5 mM, the methylpropylglyoxal derivative (MPGBG) had a stronger inhibitory effect than MGBG. To verify whether the inhibitors reached their metabolic target, PA levels and S-adenosylmethionine decarboxylase (SAMDC) activity were determined in pollen germinated in the presence or absence (controls) of 0.5 mM bis(guanylhydrazones). Spermidine (Spd) content was significantly reduced in the treated pollen, and this effect was more pronounced after treatment with MGBG than with MPGBG. An early and strong reduction in SAMDC activity was observed after exposure to either inhibitor. Inhibition of pollen germination by MGBG or MPGBG could not be reversed by the addition of exogenous Spd, which per se was inhibitory. Taken together, our results suggest that bis(guanylhydrazones) alter PA metabolism and negatively affect kiwifruit pollen germination, even though a strict cause-effect relationship could not be established, and other mechanisms, unrelated to PA activity, must be involved.
双(胍腙)是一类已知会干扰多胺(PA)代谢的化合物。其中,甲基乙二醛衍生物(MGBG)的研究最为深入。由于多胺及其生物合成酶在花粉管的组织、伸出和伸长过程中起着重要作用,因此在本研究中对一些此类抑制剂对猕猴桃(美味猕猴桃)花粉体外性能的影响进行了研究。检测了浓度在0.05 - 1 mM范围内的几种双(胍腙)对花粉萌发的影响。大多数测试化合物对花粉管伸出呈现剂量依赖性抑制作用,这种抑制作用在培养早期就已确立。在0.5 mM时,甲基丙基乙二醛衍生物(MPGBG)的抑制作用比MGBG更强。为了验证抑制剂是否作用于其代谢靶点,在存在或不存在(对照)0.5 mM双(胍腙)的情况下对萌发的花粉测定了多胺水平和S - 腺苷甲硫氨酸脱羧酶(SAMDC)活性。处理后的花粉中精胺(Spd)含量显著降低,且MGBG处理后的这种效应比MPGBG更明显。暴露于任何一种抑制剂后均观察到SAMDC活性早期且显著降低。添加外源性Spd不能逆转MGBG或MPGBG对花粉萌发的抑制作用,而外源性Spd本身具有抑制作用。综上所述,我们的结果表明双(胍腙)改变了多胺代谢并对猕猴桃花粉萌发产生负面影响,尽管无法建立严格的因果关系,且必定涉及与多胺活性无关的其他机制。