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Genetic Analysis of Stem Diameter and Water Contents To Improve Sorghum Bioenergy Efficiency

机译:茎直径和水含量的遗传分析提高高粱生物能效率

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摘要

Biofuel made from agricultural products has the potential in contribute to a stable supply of fuel for growing energy demands. Some salient plant traits, such as stem diameter and water content, and their relationship to other important biomass-related traits are so far poorly understood. Here, we performed QTL mapping for three stem diameter and two water content traits in a S. bicolor BTx623 x IS3620c recombinant inbred line population of 399 genotypes, and validated the genomic regions identified using genome-wide association studies (GWAS) in a diversity panel of 354 accessions. The discovery of both co-localized and non-overlapping loci affecting stem diameter traits suggests that stem widths at different heights share some common genetic control, but also have some distinct genetic influences. Co-localizations of stem diameter and water content traits with other biomass traits including plant height, flowering time and the ‘dry’ trait, suggest that their inheritance may be linked functionally (pleiotropy) or physically (linkage disequilibrium). Water content QTL in homeologous regions resulting from an ancient duplication event may have been retained and continue to have related functions for an estimated 96 million years. Integration of QTL and GWAS data advanced knowledge of the genetic basis of stem diameter and water content components in sorghum, which may lead to tools and strategies for either enhancing or suppressing these traits, supporting advances toward improved quality of plant-based biomass for biofuel production.
机译:由农产品制造的生物燃料有可能导致稳定供应燃料供应增长的能源需求。到目前为止,一些凸出的植物特征,如茎直径和水含量,以及与其他重要生物量相关性状的关系。在这里,我们对三个茎直径的QTL映射和S.Bicolor BTX623 X IS3620C重组近交系399种基因型的两种水含量特征,并验证了在多样性面板中使用基因组关联研究(GWA)鉴定的基因组区域354份。影响茎直径特征的共同定位和非重叠基因座的发现表明,不同高度的茎宽共享一些常见的遗传控制,而且还具有一些不同的遗传影响。茎直径和水含量的共同定位与其他生物量特征,包括植物高度,开花时间和“干”特征,表明它们的遗传可以在功能上(Pleiotropy)或物理(Linkage Durecilibium)连接。可能保留了古代复制事件导致的古代地区的含水量QTL,并继续有估计有9600万年的相关功能。 QTL和GWAS数据的整合高粱茎直径和水含量成分的遗传基础的高潮,这可能导致增强或抑制这些特征的工具和策略,支持提高基于植物生物量的质量的生物燃料生产的进步。

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