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全基因组家族预测揭示了[具体作物名称]农艺性状调控背后的分子机制。 需注意,原文中“in”后面缺少具体内容,我根据常见语境补充了“[具体作物名称]”,你可根据实际情况进行调整。

Genome-wide family prediction unveils molecular mechanisms underlying the regulation of agronomic traits in .

作者信息

Martins Felipe Bitencourt, Aono Alexandre Hild, Moraes Aline da Costa Lima, Ferreira Rebecca Caroline Ulbricht, Vilela Mariane de Mendonça, Pessoa-Filho Marco, Rodrigues-Motta Mariana, Simeão Rosangela Maria, de Souza Anete Pereira

机构信息

Center for Molecular Biology and Genetic Engineering (CBMEG), University of Campinas (UNICAMP), Campinas, São Paulo, Brazil.

Department of Plant Biology, Biology Institute, University of Campinas (UNICAMP), Campinas, São Paulo, Brazil.

出版信息

Front Plant Sci. 2023 Dec 12;14:1303417. doi: 10.3389/fpls.2023.1303417. eCollection 2023.

Abstract

Tropical forage grasses, particularly those belonging to the genus, play a crucial role in cattle production and serve as the main food source for animals in tropical and subtropical regions. The majority of these species are apomictic and tetraploid, highlighting the significance of , a sexual diploid species that can be tetraploidized for use in interspecific crosses with apomictic species. As a means to support breeding programs, our study investigates the feasibility of genome-wide family prediction in families to predict agronomic traits. Fifty half-sibling families were assessed for green matter yield, dry matter yield, regrowth capacity, leaf dry matter, and stem dry matter across different clippings established in contrasting seasons with varying available water capacity. Genotyping was performed using a genotyping-by-sequencing approach based on DNA samples from family pools. In addition to conventional genomic prediction methods, machine learning and feature selection algorithms were employed to reduce the necessary number of markers for prediction and enhance predictive accuracy across phenotypes. To explore the regulation of agronomic traits, our study evaluated the significance of selected markers for prediction using a tree-based approach, potentially linking these regions to quantitative trait loci (QTLs). In a multiomic approach, genes from the species transcriptome were mapped and correlated to those markers. A gene coexpression network was modeled with gene expression estimates from a diverse set of genotypes, enabling a comprehensive investigation of molecular mechanisms associated with these regions. The heritabilities of the evaluated traits ranged from 0.44 to 0.92. A total of 28,106 filtered SNPs were used to predict phenotypic measurements, achieving a mean predictive ability of 0.762. By employing feature selection techniques, we could reduce the dimensionality of SNP datasets, revealing potential genotype-phenotype associations. The functional annotation of genes near these markers revealed associations with auxin transport and biosynthesis of lignin, flavonol, and folic acid. Further exploration with the gene coexpression network uncovered associations with DNA metabolism, stress response, and circadian rhythm. These genes and regions represent important targets for expanding our understanding of the metabolic regulation of agronomic traits and offer valuable insights applicable to species breeding. Our work represents an innovative contribution to molecular breeding techniques for tropical forages, presenting a viable marker-assisted breeding approach and identifying target regions for future molecular studies on these agronomic traits.

摘要

热带饲草,特别是那些属于该属的饲草,在养牛生产中起着至关重要的作用,并且是热带和亚热带地区动物的主要食物来源。这些物种中的大多数是无融合生殖的四倍体,这凸显了[物种名称]的重要性,它是一种有性二倍体物种,可以被四倍体化以用于与无融合生殖物种的种间杂交。作为支持育种计划的一种手段,我们的研究调查了在[物种名称]家族中进行全基因组家系预测以预测农艺性状的可行性。对五十个半同胞家系在不同季节建立的、具有不同有效水分容量的不同刈割处理下的绿物质产量、干物质产量、再生能力、叶片干物质和茎干物质进行了评估。基于来自家系池的DNA样本,采用简化基因组测序方法进行基因分型。除了传统的基因组预测方法外,还采用了机器学习和特征选择算法来减少预测所需的标记数量,并提高跨表型的预测准确性。为了探索农艺性状的调控机制,我们的研究使用基于树的方法评估了所选预测标记的显著性,有可能将这些区域与数量性状位点(QTL)联系起来。采用多组学方法,将该物种转录组中的基因进行定位,并与那些标记相关联。利用来自一组多样化基因型的基因表达估计值构建了一个基因共表达网络,从而能够全面研究与这些区域相关的分子机制。所评估性状的遗传力范围为0.44至0.92。总共28,106个经过筛选的单核苷酸多态性(SNP)用于预测表型测量,平均预测能力达到0.7,62。通过采用特征选择技术,我们能够降低SNP数据集的维度,揭示潜在的基因型 - 表型关联。这些标记附近基因的功能注释揭示了与生长素运输以及木质素、黄酮醇和叶酸生物合成的关联。通过基因共表达网络的进一步探索,发现了与DNA代谢、应激反应和昼夜节律的关联。这些基因和区域是扩展我们对农艺性状代谢调控理解的重要靶点,并为物种育种提供了有价值的见解。我们的工作代表了对热带饲草分子育种技术的创新性贡献,提出了一种可行的标记辅助育种方法,并确定了未来关于这些农艺性状分子研究的目标区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e4e/10749977/232a22bfc78c/fpls-14-1303417-g001.jpg

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