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Regional Heritability Mapping Provides Insights into Dry Matter Content in African White and Yellow Cassava Populations

机译:区域遗传性映射在非洲白和黄色木薯种群中提供了对干物质含量的见解

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The HarvestPlus program for cassava (Manihot esculentaCrantz) fortifies cassava with β-carotene by breeding for carotene-rich tubers (yellow cassava). However, a negative correlation between yellowness and dry matter (DM) content has been identified. We investigated the genetic control of DM in white and yellow cassava. We used regional heritability mapping (RHM) to associate DM with genomic segments in both subpopulations. Significant segments were subjected to candidate gene analysis and candidates were validated with prediction accuracies. The RHM procedure was validated via a simulation approach and revealed significant hits for white cassava on chromosomes 1, 4, 5, 10, 17, and 18, whereas hits for the yellow were on chromosome 1. Candidate gene analysis revealed genes in the carbohydrate biosynthesis pathway including plant serine–threonine protein kinases (SnRKs), UDP (uridine diphosphate)-glycosyltransferases, UDP-sugar transporters, invertases, pectinases, and regulons. Validation using 1252 unique identifiers from the SnRK gene family genome-wide recovered 50% of the predictive accuracy of whole-genome single nucleotide polymorphisms for DM, whereas validation using 53 likely genes (extracted from the literature) from significant segments recovered 32%. Genes including an acid invertase, a neutral or alkaline invertase, and a glucose-6-phosphate isomerase were validated on the basis of an a priori list for the cassava starch pathway, and also a fructose-biphosphate aldolase from the Calvin cycle pathway. The power of the RHM procedure was estimated as 47% when the causal quantitative trait loci generated 10% of the phenotypic variance (sample size = 451). Cassava DM genetics are complex and RHM may be useful for complex traits.
机译:Cassava(Manihot Esculentacrantz)的Harvestplus计划通过繁殖富含胡萝卜素的块茎(黄色木薯)来融合Cassava与β-胡萝卜素。然而,已经鉴定了黄色和干物质(DM)含量之间的负相关性。我们调查了在白色和黄色木薯中DM的遗传控制。我们使用了区域遗传性映射(RHM)将DM与两个群体中的基因组段联系起来。对候选基因分析进行显着段,并以预测精度验证候选者。通过模拟方法验证RHM程序,并揭示了染色体1,4,5,10,17和18上的白色木薯的显着命中,而黄色的命中率为染色体1.候选基因分析显示碳水化合物生物合成中的基因。揭示了碳水化合物生物合成中的基因途径包括植物丝氨酸苏氨酸蛋白激酶(SNRK),UDP(尿苷二磷酸) - 糖基转移酶,UDP-糖转运蛋白,转化酶,果胶酶和调节件。使用来自SNRK基因的INDENOME的INDIONESSION的验证 - 范围内的全基因组单核苷酸多态性的预测精度的50%,而使用53个可能的基因(从文献中提取)的验证从显着的区段回收32%。基于Cassava淀粉途径的先验列表,验证包括酸转化酶,中性或碱性转化酶和葡萄糖-6-磷酸异构酶的基因,以及来自Calvin循环途径的果糖 - 二磷酸醛糖酶。当因果定量特性基因座产生10%的表型方差(样本尺寸= 451)时,rHM程序的力量估计为47%。 Cassava DM遗传学是复杂的,rhM可能对复杂的性状有用。

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