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首页> 外文期刊>Journal of Molecular Evolution >Two Paralogous Genes Encoding Small Subunits of ADP-glucose Pyrophosphorylase in Maize, Bt2 and L2, Replace the Single Alternatively Spliced Gene Found in Other Cereal Species
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Two Paralogous Genes Encoding Small Subunits of ADP-glucose Pyrophosphorylase in Maize, Bt2 and L2, Replace the Single Alternatively Spliced Gene Found in Other Cereal Species

机译:编码玉米中ADP-葡萄糖焦磷酸化酶小亚基的两个旁系基因,Bt2和L2,取代了在其他谷物中发现的一个选择性剪​​接的基因

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Two types of gene encoding small subunits (SSU) of ADP-glucose pyrophosphorylase, a starch-biosynthetic enzyme, have been found in cereals and other grasses. One of these genes encodes two SSU proteins. These are targeted to different subcellular compartments and expressed in different organs of the plant: the endosperm cytosol and the leaf plastids. The SSU gene encoding two proteins evolved from an ancestral gene encoding a single protein by the acquisition of an alternative first exon. Prior to the work reported here, this type of SSU gene had been found in all grasses examined except maize. In maize, two separate genes, Bt2 and L2, were known to have the same roles as the alternatively spliced gene found in other grasses. The evolutionary origin of these maize genes and their relationship to the SSU genes in other grasses were unclear. Here we show that Bt2 and L2 are paralogous genes that arose as a result of the tetraploidization of the maize genome. Both genes derive from an ancestral alternatively spliced SSU gene orthologous to that found in other grasses. Following duplication, the Bt2 and L2 genes diverged in function. Each took a different one of the two functions of the ancestral gene. Now Bt2 encodes the endosperm cytosolic SSU but does not contribute significantly to leaf AGPase activity. Similarly, L2 has lost the use of one of its two alternative first exons. It can no longer contribute to the endosperm cytosolic SSU but is probably responsible for the bulk of the leaf AGPase SSU.
机译:已经在谷物和其他草中发现了两种类型的编码ADP-葡萄糖焦磷酸化酶小亚基(SSU)的基因,一种淀粉生物合成酶。这些基因之一编码两个SSU蛋白。它们针对不同的亚细胞区室,并在植物的不同器官中表达:胚乳细胞质和叶质体。编码两个蛋白质的SSU基因是通过获取另一个第一外显子从编码单个蛋白质的祖先基因进化而来的。在这里报道工作之前,这种类型的SSU基因已经在除玉米之外的所有被检查的草中发现。在玉米中,已知两个单独的基因Bt2和L2与在其他草中发现的可变剪接基因具有相同的作用。这些玉米基因的进化起源及其与其他草中SSU基因的关系尚不清楚。在这里,我们显示Bt2和L2是由于玉米基因组四倍体化而产生的旁系同源基因。这两个基因均来自与其他草中同源的祖先选择性剪接的SSU基因。复制后,Bt2和L2基因在功能上有所不同。每个都具有祖先基因两个功能中的不同功能。现在,Bt2编码胚乳胞质SSU,但对叶AGPase活性无明显贡献。同样,L2失去了使用其两个替代第一外显子之一的功能。它不再能对胚乳胞质SSU起作用,但可能是导致叶片AGPase SSU大量的原因。

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