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玉米中富含蛋氨酸的δ-醇溶蛋白基因的非孟德尔调控及等位基因变异

Non-Mendelian regulation and allelic variation of methionine-rich delta-zein genes in maize.

作者信息

Wu Yongrui, Goettel Wolfgang, Messing Joachim

机构信息

Waksman Institute of Microbiology, Rutgers University, 190 Frelinghuysen Road, Piscataway, NJ 08854, USA.

出版信息

Theor Appl Genet. 2009 Aug;119(4):721-31. doi: 10.1007/s00122-009-1083-5. Epub 2009 Jun 7.

Abstract

Sufficient methionine levels in the seed are critical for the supply of a balanced diet for feed and food. Currently, animal feed is supplemented with chemically synthesized methionine, which could be completely replaced with naturally synthesized methionine. However, insufficient levels of methionine are due to alleles of two genes in the maize genome that are expressed during seed development, which have a high percentage of methionine codons, ranging from 23 to 28%, while free methionine is very low. The two genes, dzs10 and dzs18, belong to the prolamin gene family that arose during the evolution of the grasses and were duplicated during a whole genome duplication event. We have found several dzs10 and dzs18 null alleles caused either by transposon insertion or frame shift mutations. Maize seeds with null mutations of both genes have a normal phenotype in contrast to other prolamin genes, explaining the accumulation of methionine deficiency in normal breeding efforts. Moreover, the trans-regulation of these genes deviates from Mendelian inheritance. One allele of the regulatory locus dzr1 is inherited in a parent-of-origin fashion, while another allele appears to prevent Mendelian segregation of the high-methionine phenotype in backcrosses.

摘要

种子中充足的蛋氨酸水平对于提供均衡的饲料和食物饮食至关重要。目前,动物饲料中添加了化学合成的蛋氨酸,而这种蛋氨酸可以完全被天然合成的蛋氨酸所替代。然而,蛋氨酸水平不足是由于玉米基因组中两个在种子发育过程中表达的基因的等位基因所致,这些基因具有高比例的蛋氨酸密码子,范围从23%到28%,而游离蛋氨酸含量非常低。这两个基因,dzs10和dzs18,属于在禾本科植物进化过程中出现并在一次全基因组复制事件中发生复制的醇溶蛋白基因家族。我们发现了几个由转座子插入或移码突变导致的dzs10和dzs18无效等位基因。与其他醇溶蛋白基因相比,两个基因均发生无效突变的玉米种子具有正常的表型,这解释了在正常育种过程中蛋氨酸缺乏的积累现象。此外,这些基因的反式调控偏离了孟德尔遗传。调控位点dzr1的一个等位基因以亲本来源的方式遗传,而另一个等位基因似乎在回交中阻止了高蛋氨酸表型的孟德尔分离。

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