Peeters Anton J. M, Blankestijn-De Vries Hetty, Hanhart Corrie J, Léon-Kloosterziel Karen M, Zeevaart Jan A. D, Koornneef Maarten
Laboratory of Genetics, Wageningen University, Arboretumlaan 4, 6703 BD, Wageningen, The Netherlands Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, MI 48824, USA Present address: Department of Plant Ecophysiology, University Utrecht, Sorbonnelaan 16, 3584 CA Utrecht, The Netherlands.
Physiol Plant. 2002 Aug;115(4):604-612. doi: 10.1034/j.1399-3054.2002.1150415.x.
Seed dormancy and germination are complex traits that are controlled by many genes. Four mutants in Arabidopsis thaliana exhibiting a reduced dormancy phenotype, designated rdo1, rdo2, rdo3, and rdo4, have been characterized, both genetically and physiologically. Two of these mutants, rdo1 and rdo2, have been described before, the other two represent novel loci. The mutants mapped on chromosome 1 (rdo3), chromosome 2 (rdo2 and rdo4), and chromosome 3 (rdo1). None of these loci has been related to dormancy before. All four mutants show pleiotropic effects in the adult plant stage, which are different for each mutant. None of the mutants is deficient in ABA. Compared to Ler (wild-type), ABA sensitivity is not altered either, thereby excluding the possibility that ABA is involved in causing the reduced dormancy phenotype. The GA requirement was studied by using the GA biosynthesis inhibitor paclobutrazol, and genetically by generating double mutants with the GA-deficient mutant ga1-3. The results obtained by these two methods were comparable for all but one mutant: rdo1. In a GA-deficient background, rdo1, rdo2 and rdo3, all show sensitivity to GA between that of ga1-3 and ga1-3 aba1. However, when using paclobutrazol rdo1 exhibited the same sensitivity as rdo4 and wild-type. Analysis of double mutants among the rdo mutants revealed a very complex and inconsistent pattern.
种子休眠和萌发是由许多基因控制的复杂性状。拟南芥中有四个表现出休眠表型降低的突变体,分别命名为rdo1、rdo2、rdo3和rdo4,已经从遗传学和生理学角度进行了表征。其中两个突变体rdo1和rdo2之前已有描述,另外两个代表新的基因座。这些突变体分别定位于1号染色体(rdo3)、2号染色体(rdo2和rdo4)和3号染色体(rdo1)上。这些基因座之前均未与休眠相关联。所有四个突变体在成年植株阶段均表现出多效性,每个突变体的多效性各不相同。没有一个突变体缺乏脱落酸(ABA)。与Ler(野生型)相比,ABA敏感性也没有改变,因此排除了ABA参与导致休眠表型降低的可能性。通过使用赤霉素(GA)生物合成抑制剂多效唑研究了GA需求,并通过与GA缺陷型突变体ga1-3产生双突变体进行了遗传学研究。除了一个突变体rdo1之外,这两种方法得到的结果对于所有其他突变体都是可比的。在GA缺陷背景下,rdo1、rdo2和rdo3对GA的敏感性均介于ga1-3和ga1-3 aba1之间。然而,当使用多效唑时,rdo1表现出与rdo4和野生型相同的敏感性。对rdo突变体之间的双突变体分析揭示了一种非常复杂且不一致的模式。