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首页> 外文期刊>BMC Plant Biology >Integration of gene-based markers in a pearl millet genetic map for identification of candidate genes underlying drought tolerance quantitative trait loci
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Integration of gene-based markers in a pearl millet genetic map for identification of candidate genes underlying drought tolerance quantitative trait loci

机译:基于基因的标记在珍珠粟遗传图中的整合,以鉴定抗旱定量性状基因座的候选基因

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Background Identification of genes underlying drought tolerance (DT) quantitative trait loci (QTLs) will facilitate understanding of molecular mechanisms of drought tolerance, and also will accelerate genetic improvement of pearl millet through marker-assisted selection. We report a map based on genes with assigned functional roles in plant adaptation to drought and other abiotic stresses and demonstrate its use in identifying candidate genes underlying a major DT-QTL. Results Seventy five single nucleotide polymorphism (SNP) and conserved intron spanning primer (CISP) markers were developed from available expressed sequence tags (ESTs) using four genotypes, H 77/833-2, PRLT 2/89-33, ICMR 01029 and ICMR 01004, representing parents of two mapping populations. A total of 228 SNPs were obtained from 30.5 kb sequenced region resulting in a SNP frequency of 1/134 bp. The positions of major pearl millet linkage group (LG) 2 DT-QTLs (reported from crosses H 77/833-2 × PRLT 2/89-33 and 841B × 863B) were added to the present consensus function map which identified 18 genes, coding for PSI reaction center subunit III, PHYC, actin, alanine glyoxylate aminotransferase, uridylate kinase, acyl-CoA oxidase, dipeptidyl peptidase IV, MADS-box, serine/threonine protein kinase, ubiquitin conjugating enzyme, zinc finger C- × 8-C × 5-C × 3-H type, Hd3, acetyl CoA carboxylase, chlorophyll a/b binding protein, photolyase, protein phosphatase1 regulatory subunit SDS22 and two hypothetical proteins, co-mapping in this DT-QTL interval. Many of these candidate genes were found to have significant association with QTLs of grain yield, flowering time and leaf rolling under drought stress conditions. Conclusions We have exploited available pearl millet EST sequences to generate a mapped resource of seventy five new gene-based markers for pearl millet and demonstrated its use in identifying candidate genes underlying a major DT-QTL in this species. The reported gene-based markers represent an important resource for identification of candidate genes for other mapped abiotic stress QTLs in pearl millet. They also provide a resource for initiating association studies using candidate genes and also for comparing the structure and function of distantly related plant genomes such as other Poaceae members.
机译:背景技术鉴定耐旱性(DT)数量性状基因座(QTL)的基因将有助于理解耐旱性的分子机制,并且还将通过标记辅助选择加速珍珠小米的遗传改良。我们报告了基于具有在干旱和其他非生物胁迫的植物适应中分配的功能角色的基因的图,并展示了其在鉴定主要DT-QTL潜在候选基因中的用途。结果使用四种基因型H 77 / 833-2,PRLT 2 / 89-33,ICMR 01029和ICMR,从可用的表达序列标签(EST)中开发了75个单核苷酸多态性(SNP)和保守的内含子跨度引物(CISP)标记。 01004,代表两个制图种群的父母。从30.5 kb的测序区域中总共获得了228个SNP,导致SNP频率为1/134 bp。主要的珍珠粟连锁群(LG)2 DT-QTLs的位置(来自杂交H 77 / 833-2×PRLT 2 / 89-33和841B×863B报告)已添加到目前的共有功能图谱中,该图谱鉴定了18个基因,编码PSI反应中心亚基III,PHYC,肌动蛋白,丙氨酸乙醛酸转氨酶,尿苷酸激酶,酰基辅酶A氧化酶,二肽基肽酶IV,MADS-box,丝氨酸/苏氨酸蛋白激酶,泛素结合酶,锌指C-×8-C ×5-C×3-H型,Hd3,乙酰辅酶A羧化酶,叶绿素a / b结合蛋白,光裂解酶,蛋白磷酸酶1调节亚基SDS22和两个假设的蛋白在此DT-QTL间隔中共同映射。发现许多这些候选基因与干旱胁迫条件下的谷物产量,开花时间和叶片卷曲的QTL显着相关。结论我们已经利用现有的珍珠粟EST序列生成了75种基于基因的珍珠粟新标记的定位资源,并证明了其在鉴定该物种主要DT-QTL潜在候选基因中的用途。报道的基于基因的标记代表着重要的资源,可用于鉴定珍珠粟中其他映射的非生物胁迫QTL候选基因。它们还为使用候选基因启动关联研究以及比较远缘植物基因组(例如其他禾本科成员)的结构和功能提供了资源。

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