Urano Kaoru, Hobo Tokunori, Shinozaki Kazuo
Laboratory of Plant Molecular Biology, RIKEN Tsukuba Institute, Tsukuba, Ibaraki 350-0074, Japan.
FEBS Lett. 2005 Feb 28;579(6):1557-64. doi: 10.1016/j.febslet.2005.01.048.
Arginine decarboxylase (ADC) is a rate-limiting enzyme that catalyzes the first step of polyamine (PA) biosynthesis in Arabidopsis thaliana. We generated a double mutant deficient in Arabidopsis two ADC genes (ADC1-/- ADC2-/-) and examined their roles in seed development. None of the F2 seedlings from crosses of adc1-1 and adc2-2 had the ADC1-/- ADC2-/- genotype. In addition, some abnormal seeds were observed among the ADC1+/- ADC2-/- and ADC1-/- ADC2+/- siliques. Viable offspring with the ADC1-/- ADC2-/- genotype could not be obtained from the ADC1+/- ADC2-/- and ADC1-/- ADC2+/- plants. These results indicate that AtADC genes are required for production of polyamines that are essential for normal seed development in Arabidopsis.
精氨酸脱羧酶(ADC)是拟南芥中催化多胺(PA)生物合成第一步的限速酶。我们构建了拟南芥两个ADC基因缺陷的双突变体(ADC1-/- ADC2-/-),并研究了它们在种子发育中的作用。adc1-1和adc2-2杂交产生的F2幼苗均没有ADC1-/- ADC2-/-基因型。此外,在ADC1+/- ADC2-/-和ADC1-/- ADC2+/-的角果中观察到一些异常种子。无法从ADC1+/- ADC2-/-和ADC1-/- ADC2+/-植株获得具有ADC1-/- ADC2-/-基因型的可存活后代。这些结果表明,AtADC基因是拟南芥正常种子发育所必需的多胺产生所必需的。