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……果实成熟过程中糖分含量的QTL定位与转录组分析

QTL mapping and transcriptome analysis of sugar content during fruit ripening of .

作者信息

Jiang Shuang, Li Shuigen, Luo Jun, Wang Xiaoqing, Shi Chunhui

机构信息

Forestry and Pomology Research Institute, Shanghai Key Lab of Protected Horticultural Technology, Shanghai Academy of Agricultural Sciences, Shanghai, China.

出版信息

Front Plant Sci. 2023 Mar 6;14:1137104. doi: 10.3389/fpls.2023.1137104. eCollection 2023.

Abstract

Sugar content is an important trait of fruits. The genetic background of fruits can affect their sugar content in different cultivars. The quantitative trait loci and genes related to sugar content during fruit ripening remain unclear. In this study, we performed quantitative trait locus (QTL) mapping of sugar content. Two QTLs (qSugar-LG6-Chr7 and qSugar-LG12-Chr3) were identified based on their total sugar contents. A total of 577 and 519 genes were annotated around these two QTL loci. The contents of fructose, sorbitol, glucose, and sucrose were measured at six time points in four cultivars before fruit maturation, including two sweet cultivars ("Zaoshengxinshui" and "ZQ65") and two general cultivars ("Qiushui" and "ZQ82"). In sweet cultivars, sucrose and fructose accumulate substantially, and sorbitol content decreases significantly during fruit ripening. A transcriptome analysis identified 125 upregulated and 222 downregulated differentially expressed genes (DEGs) in sweet cultivars. Two sucrose transport genes (, LOC103964096, and LOC103940043) were negatively correlated with sugar content. A weighted gene co-expression network analysis showed that two genes, sorbitol dehydrogenase (, LOC103960512 and LOC103960513), around the locus of qSugar-LG6-Chr7 were negatively co-expressed with the total sugar content, which was downregulated in the sweet cultivars. and may play important roles in regulating sugar content during pear ripening. Transcriptome analysis also revealed that some DEGs were related to sugars ( and ), hormones (), and transcription factors (, , and ). In conclusion, this study provides new insights into the molecular mechanisms associated with sugar content in the fruit ripening of .

摘要

糖含量是果实的一个重要性状。果实的遗传背景会影响不同品种果实的糖含量。果实成熟过程中与糖含量相关的数量性状位点和基因仍不清楚。在本研究中,我们对糖含量进行了数量性状位点(QTL)定位。基于总糖含量鉴定出了两个QTL(qSugar-LG6-Chr7和qSugar-LG12-Chr3)。在这两个QTL位点周围共注释了577个和519个基因。在四个品种果实成熟前的六个时间点测量了果糖、山梨醇、葡萄糖和蔗糖的含量,其中包括两个甜品种(“早生新水”和“ZQ65”)以及两个普通品种(“秋水”和“ZQ82”)。在甜品种中,果实成熟过程中蔗糖和果糖大量积累,山梨醇含量显著降低。转录组分析在甜品种中鉴定出125个上调和222个下调的差异表达基因(DEG)。两个蔗糖转运基因(LOC103964096和LOC103940043)与糖含量呈负相关。加权基因共表达网络分析表明,在qSugar-LG6-Chr7位点周围的两个基因山梨醇脱氢酶(LOC103960512和LOC103960513)与总糖含量呈负共表达,在甜品种中表达下调。LOC103960512和LOC103960513可能在梨果实成熟过程中调节糖含量方面发挥重要作用。转录组分析还揭示,一些差异表达基因与糖类(蔗糖和果糖)、激素(生长素)以及转录因子(MADS-box、NAC和bHLH)有关。总之,本研究为梨果实成熟过程中与糖含量相关的分子机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/738a/10025493/95f9ba416099/fpls-14-1137104-g001.jpg

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