Frances H, Bligh J, Larkin P D, Roach P S, Jones C A, Fu H, Park W D
Department of Biochemistry, Queens Medical Centre, University of Nottingham, UK.
Plant Mol Biol. 1998 Oct;38(3):407-15. doi: 10.1023/a:1006021807799.
The rice Waxy gene encodes a granule-bound starch synthase (GBSS) necessary for the synthesis of amylose in endosperm tissue. We have previously shown that a CT microsatellite near the transcriptional start site of the GBSS gene can distinguish 7 alleles that accounted for more than 80% of the variation in apparent amylose content in an extended pedigree of 89 US rice cultivars (Oryza sativa L.). Furthermore, all the cultivars with 18% or less amylose were shown to have the sequence AGTTATA at the putative leader intron 5' splice site, while all cultivars with a higher proportion of amylose had AGGTATA. Here we demonstrate that this single-base mutation reduces the efficiency of GBSS pre-mRNA processing and results in alternate splicing at three cryptic sites. The predominant 5' splice site in CT18 low-amylose varieties is 93 bp upstream of the splice site used in intermediate and high amylose varieties and is immediately 5' to the CT microsatellite that we previously demonstrated to be tightly correlated with amylose content. Use of the leader intron 5' splice site at either -93 or -1 in conjunction with the predominant 3' splice site results in formation of a small open reading frame 38 bp upstream of the normal ATG and out of frame with it. This open reading frame is not produced when any of the 5' leader intron splice sites are used in conjunction with an alternate 3' splice site five bases further downstream which was observed in all rice varieties tested.
水稻蜡质基因编码一种颗粒结合淀粉合成酶(GBSS),它是胚乳组织中直链淀粉合成所必需的。我们之前已经表明,GBSS基因转录起始位点附近的一个CT微卫星可以区分7个等位基因,这些等位基因在89个美国水稻品种(Oryza sativa L.)的扩展谱系中占表观直链淀粉含量变异的80%以上。此外,所有直链淀粉含量为18%或更低的品种在假定的前导内含子5'剪接位点处都具有序列AGTTATA,而所有直链淀粉比例较高的品种都具有AGGTATA。在这里,我们证明这种单碱基突变降低了GBSS前体mRNA加工的效率,并导致在三个隐蔽位点的可变剪接。CT18低直链淀粉品种中主要的5'剪接位点在中高直链淀粉品种所使用的剪接位点上游93 bp处,并且紧邻我们之前证明与直链淀粉含量紧密相关的CT微卫星的5'端。在-93或-1处使用前导内含子5'剪接位点与主要的3'剪接位点相结合,会在正常ATG上游38 bp处形成一个小的开放阅读框,并且与它框移。当任何一个5'前导内含子剪接位点与在所有测试水稻品种中观察到的下游五个碱基处的一个替代3'剪接位点结合使用时,不会产生这个开放阅读框。