Epistasis between genetic variations on MdMYB109 and MdHXK1 exerts a large effect on sugar content in apple fruit

IF 6.2 1区 生物学 Q1 PLANT SCIENCES The Plant Journal Pub Date : 2024-12-09 DOI:10.1111/tpj.17187
Zhongyan Zhang, Zhenyu Huang, Bei Wu, Ting Wu, Yi Wang, Zhenhai Han, Xinzhong Zhang
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Abstract

Many quantitative traits are controlled by multiple genetic variations with minor effects, making it challenging to resolve the underlying genetic network and to apply functional markers in breeding. Affected by up to a hundred quantitative trait loci (QTLs), fruit-soluble sugar content is one of the most complex quantitative traits in apple (Malus sp.). Here, QTLs for apple fruit sucrose and fructose content were identified via QTL mapping and bulked-segregant analysis sequencing (BSA-seq) using a population derived from a ‘Jonathan’ × ‘Golden Delicious’ cross. Allelic variations and non-allelic interactions were validated in the candidate genes within these defined QTL regions. Three single-nucleotide polymorphisms (SNPs) (SNP −326 C/T, SNP −705 A/G, and SNP −706 G/T) in the MdMYB109 promoter region affected the binding ability of the repressive transcription factor MdWRKY33, leading to increased MdMYB109 expression. MdMYB109 bound directly to the promoter of the sucrose transporter gene MdSUT2.2 and activated its expression, raising fruit sucrose content. A SNP (SNP1060 A/G) in the hexokinase gene MdHXK1 affected the phosphorylation of the transcription factor MdbHLH3, and phosphorylated MdbHLH3 interacted with MdMYB109 to co-activate MdSUT2.2 expression and increase fruit sucrose content. Adding the joint effects of the genotype combinations at the SNP markers based on the SNPs in MdMYB109 and MdHXK1 increased the prediction accuracy of a genomics-assisted prediction (GAP) model for total soluble solid content from 0.3758 to 0.5531. These results uncovered functional variations in MdMYB109 and MdHXK1 regulating apple fruit sucrose content. The updated GAP model with improved predictability can be used efficiently in apple breeding.

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MdMYB109和MdHXK1遗传变异之间的上位性对苹果果实含糖量有较大影响。
许多数量性状是由多个遗传变异控制的,影响很小,这给解决潜在的遗传网络和在育种中应用功能标记带来了挑战。果实可溶性糖含量是苹果(Malus sp.)最复杂的数量性状之一,受多达100个数量性状位点的影响。本研究利用“乔纳森”与“金冠”杂交的群体,通过QTL定位和散装分离分析测序(BSA-seq)鉴定了苹果果实蔗糖和果糖含量的QTL。在这些确定的QTL区域内的候选基因中验证了等位基因变异和非等位基因相互作用。MdMYB109启动子区域的3个单核苷酸多态性(SNP -326 C/T、SNP -705 A/G和SNP -706 G/T)影响了抑制转录因子MdWRKY33的结合能力,导致MdMYB109的表达增加。MdMYB109直接与蔗糖转运基因MdSUT2.2的启动子结合,激活其表达,提高果实蔗糖含量。己糖激酶基因MdHXK1中的一个SNP (SNP1060 A/G)影响转录因子MdbHLH3的磷酸化,磷酸化后的MdbHLH3与MdMYB109相互作用,共同激活MdSUT2.2表达,增加果实蔗糖含量。以MdMYB109和MdHXK1的SNP为基础,加入SNP标记上基因型组合的联合效应,将基因组辅助预测(GAP)模型对可溶性固形物总含量的预测精度从0.3758提高到0.5531。这些结果揭示了调节苹果果实蔗糖含量的MdMYB109和MdHXK1的功能变化。改进后的GAP模型具有较好的可预测性,可有效地应用于苹果育种。
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来源期刊
The Plant Journal
The Plant Journal 生物-植物科学
CiteScore
13.10
自引率
4.20%
发文量
415
审稿时长
2.3 months
期刊介绍: Publishing the best original research papers in all key areas of modern plant biology from the world"s leading laboratories, The Plant Journal provides a dynamic forum for this ever growing international research community. Plant science research is now at the forefront of research in the biological sciences, with breakthroughs in our understanding of fundamental processes in plants matching those in other organisms. The impact of molecular genetics and the availability of model and crop species can be seen in all aspects of plant biology. For publication in The Plant Journal the research must provide a highly significant new contribution to our understanding of plants and be of general interest to the plant science community.
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