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蔬菜大豆籽粒的比较转录组分析揭示了籽粒品质所必需的基因。

Comparative transcriptome analysis of vegetable soybean grain discloses genes essential for grain quality.

机构信息

Institute of Vegetables, Zhejiang Academy of Agricultural Sciences, 198, Shiqiao Rd, Hangzhou, 310021, Zhejiang, China.

Key Laboratory of Vegetable Legumes Germplasm Enhancement and Molecular Breeding in Southern China of Ministry of Agriculture and Rural Affairs, 198, Shiqiao Rd, Hangzhou, 310021, Zhejiang, China.

出版信息

BMC Plant Biol. 2024 Jun 3;24(1):491. doi: 10.1186/s12870-024-05214-1.

Abstract

BACKGROUND

Vegetable soybean is an important vegetable crop in world. Seed size and soluble sugar content are considered crucial indicators of quality in vegetable soybean, and there is a lack of clarity on the molecular basis of grain quality in vegetable soybean.

RESULTS

In this context, we performed a comprehensive comparative transcriptome analysis of seeds between a high-sucrose content and large-grain variety (Zhenong 6, ZN6) and a low-sucrose content and small-grain variety (Williams 82, W82) at three developmental stages, i.e. stage R5 (Beginning Seed), stage R6 (Full Seed), and stage R7 (Beginning Maturity). The transcriptome analysis showed that 17,107 and 13,571 differentially expressed genes (DEGs) were identified in ZN6 at R6 (vs. R5) and R7 (vs. R6), respectively, whereas 16,203 and 16,032 were detected in W82. Gene expression pattern and DEGs functional enrichment proposed genotype-specific biological processes during seed development. The genes participating in soluble sugar biosynthesis such as FKGP were overexpressed in ZN6, whereas those responsible for lipid and protein metabolism such as ALDH3 were more enhanced in W82, exhibiting different dry material accumulation between two genotypes. Furthermore, hormone-associated transcriptional factors involved in seed size regulation such as BEH4 were overrepresented in ZN6, exhibiting different seed size regulation processes between two genotypes.

CONCLUSIONS

Herein, we not only discovered the differential expression of genes encoding metabolic enzymes involved in seed composition, but also identified a type of hormone-associated transcriptional factors overexpressed in ZN6, which may regulate seed size and soluble content. This study provides new insights into the underlying causes of differences in the soybean metabolites and appearance, and suggests that genetic data can be used to improve its appearance and textural quality.

摘要

背景

菜用大豆是世界重要的蔬菜作物。种子大小和可溶性糖含量被认为是菜用大豆品质的关键指标,而菜用大豆籽粒品质的分子基础尚不清楚。

结果

在这方面,我们在三个发育阶段(R5 期(种子开始)、R6 期(完全种子)和 R7 期(开始成熟))对高蔗糖含量和大粒品种(珍农 6 号,ZN6)和低蔗糖含量和小粒品种(威廉姆斯 82 号,W82)之间的种子进行了全面的比较转录组分析。转录组分析表明,ZN6 在 R6(相对于 R5)和 R7(相对于 R6)时分别鉴定出 17107 和 13571 个差异表达基因(DEGs),而 W82 则分别检测到 16203 和 16032 个。基因表达模式和 DEGs 功能富集提出了种子发育过程中基因型特异的生物学过程。参与可溶性糖生物合成的基因如 FKGP 在 ZN6 中过度表达,而参与脂质和蛋白质代谢的基因如 ALDH3 在 W82 中更增强,表现出两种基因型之间不同的干物质积累。此外,参与种子大小调节的激素相关转录因子如 BEH4 在 ZN6 中过度表达,表现出两种基因型之间不同的种子大小调节过程。

结论

本文不仅发现了参与种子组成代谢酶的基因差异表达,还鉴定出一种在 ZN6 中过度表达的与激素相关的转录因子,它可能调节种子大小和可溶性含量。本研究为菜用大豆代谢物和外观差异的潜在原因提供了新的见解,并表明遗传数据可用于改善其外观和质地品质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9188/11145879/711a4fbf59b8/12870_2024_5214_Fig1_HTML.jpg

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