首页> 美国卫生研究院文献>Journal of Experimental Botany >Genetic association mapping identifies single nucleotide polymorphisms in genes that affect abscisic acid levels in maize floral tissues during drought
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Genetic association mapping identifies single nucleotide polymorphisms in genes that affect abscisic acid levels in maize floral tissues during drought

机译:遗传关联图谱鉴定了干旱期间影响玉米花卉组织中脱落酸水平的基因中的单核苷酸多态性

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摘要

In maize, water stress at flowering causes loss of kernel set and productivity. While changes in the levels of sugars and abscisic acid (ABA) are thought to play a role in this stress response, the mechanistic basis and genes involved are not known. A candidate gene approach was used with association mapping to identify loci involved in accumulation of carbohydrates and ABA metabolites during stress. A panel of single nucleotide polymorphisms (SNPs) in genes from these metabolic pathways and in genes for reproductive development and stress response was used to genotype 350 tropical and subtropical maize inbred lines that were well watered or water stressed at flowering. Pre-pollination ears, silks, and leaves were analysed for sugars, starch, proline, ABA, ABA-glucose ester, and phaseic acid. ABA and sugar levels in silks and ears were negatively correlated with their growth. Association mapping with 1229 SNPs in 540 candidate genes identified an SNP in the maize homologue of the Arabidopsis MADS-box gene, PISTILLATA, which was significantly associated with phaseic acid in ears of well-watered plants, and an SNP in pyruvate dehydrogenase kinase, a key regulator of carbon flux into respiration, that was associated with silk sugar concentration. An SNP in an aldehyde oxidase gene was significantly associated with ABA levels in silks of water-stressed plants. Given the short range over which decay of linkage disequilibrium occurs in maize, the results indicate that allelic variation in these genes affects ABA and carbohydrate metabolism in floral tissues during drought.
机译:在玉米中,开花期的水分胁迫导致籽粒结实和生产力的损失。虽然糖和脱落酸(ABA)水平的变化被认为在这种应激反应中起作用,但其机制基础和涉及的基因尚不清楚。候选基因方法与关联作图一起使用,以鉴定应激期间参与碳水化合物和ABA代谢物积累的基因座。来自这些代谢途径的基因以及用于生殖发育和胁迫响应的基因中的一组单核苷酸多态性(SNP)用于对350个热带和亚热带玉米自交系进行基因分型,这些品种在浇水时浇水充足或水分胁迫。对授粉前的耳朵,丝和叶进行了糖,淀粉,脯氨酸,ABA,ABA-葡萄糖酸酯和相酸的分析。丝和耳朵中的ABA和糖水平与其生长呈负相关。与540个候选基因中的1229个SNP的关联图谱鉴定出了拟南芥MADS-box基因PISTILLATA的玉米同源物中的一个SNP,该基因与水分充足植物的耳朵中的相酸显着相关,而丙酮酸脱氢酶激酶中的一个SNP呼吸中碳通量的关键调节剂,这与蚕丝糖浓度有关。醛氧化酶基因中的SNP与水分胁迫植物的丝中的ABA水平显着相关。考虑到玉米中连锁不平衡的衰减范围很短,结果表明这些基因的等位基因变异会影响干旱期间花卉组织中的ABA和碳水化合物代谢。

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