Okagaki R J, Wessler S R
Botany Department, University of Georgia, Athens 30602.
Genetics. 1988 Dec;120(4):1137-43. doi: 10.1093/genetics/120.4.1137.
The waxy gene, which is responsible for the synthesis of amylose in endosperm and pollen, is genetically well characterized in many grasses including maize and rice. Homology between the previously cloned maize waxy gene and the rice gene has facilitated our cloning of a 15-kb HindIII fragment that contains the entire rice gene. A comparison of the restriction maps of the maize and rice genes indicates that many restriction sites within translated exons are conserved. In addition, the rice gene encodes a 2.4-kb transcript that programs the in vitro synthesis of a 64-kD pre-protein which is efficiently precipitated with maize waxy antisera. We demonstrate that these gene products are altered in rice strains containing mutant waxy genes. Southern blot analysis of 16 rice strains, ten containing waxy mutations, reveals that the waxy gene and flanking restriction fragments are virtually identical. These results contrast dramatically with the high level of insertions and deletions associated with restriction fragment length polymorphism and spontaneous mutations among the waxy alleles of maize.
蜡质基因负责胚乳和花粉中直链淀粉的合成,在包括玉米和水稻在内的许多禾本科植物中,其遗传学特征已得到充分研究。先前克隆的玉米蜡质基因与水稻基因之间的同源性,有助于我们克隆出一个包含整个水稻基因的15kb HindIII片段。玉米和水稻基因的限制性图谱比较表明,翻译外显子内的许多限制性位点是保守的。此外,水稻基因编码一个2.4kb的转录本,该转录本指导体外合成一种64kD的前体蛋白,该蛋白能被玉米蜡质抗血清有效沉淀。我们证明,在含有突变蜡质基因的水稻品系中,这些基因产物发生了改变。对16个水稻品系(其中10个含有蜡质突变)进行Southern印迹分析,结果显示蜡质基因和侧翼限制性片段几乎相同。这些结果与玉米蜡质等位基因中与限制性片段长度多态性和自发突变相关的高水平插入和缺失形成了鲜明对比。