Lapitan Nora L V, Hess Ann, Cooper Blake, Botha Anna-Maria, Badillo Deborah, Iyer Hari, Menert Jolanta, Close Timothy, Wright Les, Hanning Gary, Tahir M, Lawrence Christopher
Department of Soil and Crop Sciences, Colorado State University, Fort Collins, CO 80523, USA.
Theor Appl Genet. 2009 Mar;118(5):937-52. doi: 10.1007/s00122-008-0951-8. Epub 2009 Jan 9.
Breeding for malting quality is an important goal of malting barley breeding programs. Malting quality is a complex phenotype that combines a large number of interrelated components, each of which shows complex inheritance. Currently, only a few genes involved in determining malting quality have been characterized. We combined transcript profiling with phenotypic correlations to identify candidate genes for malting quality. The Barley1 GeneChip array containing 22,792 probe sets was used to conduct transcript profiling of genes expressed in several different stages of malting of four malting cultivars. Genes that were differentially expressed in comparisons between different malting stages relative to ungerminated seed, as well as in comparisons between malting cultivars in the same malting stage were identified. Correlation analysis of 723 differentially expressed genes with malting quality phenotypes showed that 11-102 of these genes correlated with six malting quality phenotypes. Genes involved in carbohydrate metabolism were among the positively correlated genes. Genes for protein and lipid metabolism, cell wall organization and biogenesis, and genes involved in stress and defense response also correlated with malting quality phenotypes. Expressed sequence tags (ESTs) were generated from a 'malting-gene enriched' cDNA library made by suppression subtractive hybridization between malted and ungerminated seeds of 'Morex'. Eleven percent of the ESTs had no significant homology with sequences in the databases, suggesting that there may be other malting-related genes not represented in the barley gene chip array. The results provide candidate genes for malting quality phenotypes that need to be functionally validated.
培育麦芽品质是麦芽大麦育种计划的一个重要目标。麦芽品质是一种复杂的表型,它由大量相互关联的成分组成,每个成分都表现出复杂的遗传特性。目前,仅有少数几个与麦芽品质相关的基因得到了表征。我们将转录谱分析与表型相关性相结合,以鉴定麦芽品质的候选基因。使用包含22,792个探针组的大麦1基因芯片对四个麦芽品种在麦芽制备的几个不同阶段表达的基因进行转录谱分析。确定了在不同麦芽制备阶段与未发芽种子相比差异表达的基因,以及在同一麦芽制备阶段不同麦芽品种之间差异表达的基因。对723个差异表达基因与麦芽品质表型进行相关性分析表明,其中11至102个基因与六种麦芽品质表型相关。参与碳水化合物代谢的基因属于正相关基因。蛋白质和脂质代谢、细胞壁组织和生物合成相关基因,以及参与应激和防御反应的基因也与麦芽品质表型相关。通过对“Morex”麦芽和未发芽种子之间的抑制性消减杂交构建的“富含麦芽基因”cDNA文库产生了表达序列标签(EST)。11%的EST与数据库中的序列没有显著同源性,这表明可能存在其他在大麦基因芯片阵列中未体现的麦芽相关基因。这些结果为麦芽品质表型提供了需要进行功能验证的候选基因。