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参与多胺生物合成的拟南芥ADC基因对种子发育至关重要。

Arabidopsis ADC genes involved in polyamine biosynthesis are essential for seed development.

作者信息

Urano Kaoru, Hobo Tokunori, Shinozaki Kazuo

机构信息

Laboratory of Plant Molecular Biology, RIKEN Tsukuba Institute, Tsukuba, Ibaraki 350-0074, Japan.

出版信息

FEBS Lett. 2005 Feb 28;579(6):1557-64. doi: 10.1016/j.febslet.2005.01.048.

Abstract

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.

摘要

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。

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