Kosugi Y, Shibuya K, Tsuruno N, Iwazaki Y, Mochizuki A, Yoshioka T, Hashiba T, Satoh S
Laboratory of Bio-adaptation, Graduate School of Agricultural Science, Tohoku University, Tsutsumidori-amamiyamachi 1-1, Aoba-ku, 981-8555, Sendai, Japan
Plant Sci. 2000 Sep 8;158(1-2):139-145. doi: 10.1016/s0168-9452(00)00314-9.
Carnation petals exhibit autocatalytic ethylene production and wilting during senescence. The autocatalytic ethylene production is caused by the expression of 1-aminocyclopropane-1-carboxylate (ACC) synthase and ACC oxidase genes, whereas the wilting of petals is related to the expression of the cysteine proteinase (CPase) gene. So far, it has been believed that the ethylene production and wilting are regulated in concert in senescing carnation petals, since the two events occurred closely in parallel with time. In the present study, we investigated the expression of these genes in petals of a transgenic carnation harboring a sense ACC oxidase transgene and in petals of carnation flowers treated with 1,1-dimethyl-4-(phenylsulfonyl)semicarbazide (DPSS). In petals of the transgenic carnation flowers, treatment with exogenous ethylene caused accumulation of the transcript for CPase and in-rolling (wilting), whereas it caused no or little accumulation of the transcripts for ACC oxidase and ACC synthase and negligible ethylene production. In petals of the flowers treated with DPSS, the transcripts for ACC synthase and ACC oxidase were accumulated, but no significant change in the level of the transcript for CPase was observed. These results suggest that the expression of ACC synthase and ACC oxidase genes, which leads to ethylene production, is differentially regulated from the expression of CPase, which leads to wilting, in carnation petals.
香石竹花瓣在衰老过程中表现出自催化乙烯生成和萎蔫现象。自催化乙烯生成是由1-氨基环丙烷-1-羧酸(ACC)合酶和ACC氧化酶基因的表达引起的,而花瓣的萎蔫与半胱氨酸蛋白酶(CPase)基因的表达有关。到目前为止,人们一直认为在衰老的香石竹花瓣中,乙烯生成和萎蔫是协同调节的,因为这两个事件在时间上紧密平行发生。在本研究中,我们调查了这些基因在携带ACC氧化酶正义转基因的转基因香石竹花瓣以及用1,1-二甲基-4-(苯磺酰基)氨基脲(DPSS)处理的香石竹花朵花瓣中的表达情况。在转基因香石竹花朵的花瓣中,用外源乙烯处理导致CPase转录本积累和内卷(萎蔫),而对ACC氧化酶和ACC合酶的转录本积累没有或几乎没有影响,乙烯生成也可忽略不计。在用DPSS处理的花朵花瓣中,ACC合酶和ACC氧化酶的转录本积累,但未观察到CPase转录本水平有显著变化。这些结果表明,在香石竹花瓣中,导致乙烯生成的ACC合酶和ACC氧化酶基因的表达与导致萎蔫的CPase基因的表达受到不同的调节。