Mita S, Kawamura S, Yamawaki K, Nakamura K, Hyodo H
Department of Biological Sciences, Faculty of Agriculture, Shizuoka University, Japan.
Plant Cell Physiol. 1998 Nov;39(11):1209-17. doi: 10.1093/oxfordjournals.pcp.a029322.
An increase in the enzyme activity of 1-aminocyclopropane-1-carboxylic acid (ACC) synthase and ACC oxidase induces the evolution of ethylene during the ripening of passion fruit. A much higher level of ethylene is produced in arils than in seeds or peels during ripening. The pattern of expression of two ACC synthase genes (PE-ACS1 and PE-ACS2), one ACC oxidase gene (PE-ACO1), and two ethylene receptor genes (PE-ETR1 and PE-ERS1) revealed that the expression of these genes is differentially regulated. Expression of PE-ACS1 and PE-ACO1 was enhanced during ripening and after ethylene treatment. However, prominent expression of PE-ACS1 was delayed compared to that of PE-ACO1. Much larger quantities of PE-ACS1 mRNA and PE-ACO1 mRNA were seen in arils than in seeds; this corresponds well with an increase in the amount of ethylene produced by the plant tissue itself. The level of PE-ACS2 mRNA was detectable in arils of the preclimacteric fruit, although it decreased during ripening. These results suggest that expression of PE-ACS1 and PE-ACO1 is required to increase the activity of ethylene biosynthetic enzymes during ripening. The level of expression of PE-ETR1 and PE-ERS1 did not significantly change over the course of ripening; however, the mRNA levels of PE-ETR1 and PE-ERS1 were much higher in arils than in seeds.
在西番莲果实成熟过程中,1-氨基环丙烷-1-羧酸(ACC)合成酶和ACC氧化酶的酶活性增加会诱导乙烯释放。在成熟过程中,假种皮中产生的乙烯水平远高于种子或果皮。两个ACC合成酶基因(PE-ACS1和PE-ACS2)、一个ACC氧化酶基因(PE-ACO1)和两个乙烯受体基因(PE-ETR1和PE-ERS1)的表达模式表明,这些基因的表达受到差异调节。PE-ACS1和PE-ACO1的表达在成熟过程中和乙烯处理后增强。然而,与PE-ACO1相比,PE-ACS1的显著表达延迟。假种皮中可见的PE-ACS1 mRNA和PE-ACO1 mRNA的量比种子中的多得多;这与植物组织自身产生的乙烯量增加非常吻合。虽然在跃变前果实的假种皮中可检测到PE-ACS2 mRNA水平,但在成熟过程中它会下降。这些结果表明,在成熟过程中需要PE-ACS1和PE-ACO1的表达来提高乙烯生物合成酶的活性。PE-ETR1和PE-ERS1的表达水平在成熟过程中没有显著变化;然而,PE-ETR1和PE-ERS1的mRNA水平在假种皮中比在种子中高得多。