Yamada Tetsuya, Ichimura Kazuo, Kanekatsu Motoki, van Doorn Wouter G
National Institute of Floricultural Science, Tsukuba 305-8519, Japan.
Plant Cell Physiol. 2009 Mar;50(3):610-25. doi: 10.1093/pcp/pcp019. Epub 2009 Jan 30.
In senescent petals of Ipomoea nil, we investigated the expression of genes showing homology to genes involved in animal programmed cell death (PCD). Three encoded proteins were homologous to apoptotic proteins in animals: Bax inhibitor-1 (BI-1), a vacuolar processing enzyme (VPE; homologous to caspases) and a monodehydroascorbate reductase [MDAR; homologous to apoptosis-inducing factor (AIF)]. AIFs harbor an oxidoreductase domain and an apoptotic domain. MDARs exhibit homology to the AIF oxidoreductase domain, not to the apoptotic domain. The three other genes studied relate to autophagy. They encode homologs to vacuolar protein sorting 34 (VPS34) and to the Arabidopsis autophagy-related proteins 4b and 8a (ATG4b and ATG8a). The transcript abundance of MDAR decreased continuously, whereas that of the other genes studies exhibited a transient increase, except ATG4b whose abundance stayed high after an increase. Treatment with ethylene advanced the time to visible petal senescence, and hastened the changes in expression of each of the genes studied. In order to assess the role of VPS34 in petal senescence, we studied the effect of its inhibitor 3-methyladenine (3-MA). 3-MA reduced the time to visible petal senescence, and also accelerated the time to DNA degradation. Remarkably, 3-MA increased the time to nuclear fragmentation, indicating that the time to visible petal senescence was independent of nuclear fragmentation. The data on 3-MA might suggest the idea that autophagy is not a cause of PCD, but part of the remobilization process.
在矮牵牛衰老的花瓣中,我们研究了与动物程序性细胞死亡(PCD)相关基因具有同源性的基因的表达情况。三种编码蛋白与动物中的凋亡蛋白同源:Bax抑制剂-1(BI-1)、液泡加工酶(VPE;与半胱天冬酶同源)和单脱氢抗坏血酸还原酶[MDAR;与凋亡诱导因子(AIF)同源]。AIFs具有一个氧化还原酶结构域和一个凋亡结构域。MDARs与AIF氧化还原酶结构域具有同源性,而与凋亡结构域没有同源性。研究的另外三个基因与自噬有关。它们编码与液泡蛋白分选34(VPS34)以及拟南芥自噬相关蛋白4b和8a(ATG4b和ATG8a)的同源物。MDAR的转录本丰度持续下降,而其他研究的基因的转录本丰度则呈现短暂增加,但ATG4b在增加后其丰度保持较高水平。用乙烯处理提前了可见花瓣衰老的时间,并加速了所研究的每个基因表达的变化。为了评估VPS34在花瓣衰老中的作用,我们研究了其抑制剂3-甲基腺嘌呤(3-MA)的效果。3-MA缩短了可见花瓣衰老的时间,并且也加速了DNA降解的时间。值得注意的是,3-MA延长了核碎片化的时间,这表明可见花瓣衰老的时间与核碎片化无关。关于3-MA的数据可能表明自噬不是PCD的原因,而是再动员过程的一部分。