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《胡桃基因组:关于胡桃醌和脂类生物合成的研究》。

The Manchurian Walnut Genome: Insights into Juglone and Lipid Biosynthesis.

机构信息

College of Forestry and Grassland, Jilin Agricultural University, Changchun 130117, China.

State Key Laboratory of Tree Genetics and Breeding, School of Forestry, Northeast Forestry University, Harbin 150040, China.

出版信息

Gigascience. 2022 Jun 28;11. doi: 10.1093/gigascience/giac057.

Abstract

BACKGROUND

Manchurian walnut (Juglans mandshurica Maxim.) is a tree with multiple industrial uses and medicinal properties in the Juglandaceae family (walnuts and hickories). J. mandshurica produces juglone, which is a toxic allelopathic agent and has potential utilization value. Furthermore, the seed of J. mandshurica is rich in various unsaturated fatty acids and has high nutritive value.

FINDINGS

Here, we present a high-quality chromosome-scale reference genome assembly and annotation for J. mandshurica (n = 16) with a contig N50 of 21.4 Mb by combining PacBio high-fidelity reads with high-throughput chromosome conformation capture data. The assembled genome has an estimated sequence size of 548.7 Mb and consists of 657 contigs, 623 scaffolds, and 40,453 protein-coding genes. In total, 60.99% of the assembled genome consists of repetitive sequences. Sixteen super-scaffolds corresponding to the 16 chromosomes were assembled, with a scaffold N50 length of 33.7 Mb and a BUSCO complete gene percentage of 98.3%. J. mandshurica displays a close sequence relationship with Juglans cathayensis, with a divergence time of 13.8 million years ago. Combining the high-quality genome, transcriptome, and metabolomics data, we constructed a gene-to-metabolite network and identified 566 core and conserved differentially expressed genes, which may be involved in juglone biosynthesis. Five CYP450 genes were found that may contribute to juglone accumulation. NAC, bZip, NF-YA, and NF-YC are positively correlated with the juglone content. Some candidate regulators (e.g., FUS3, ABI3, LEC2, and WRI1 transcription factors) involved in the regulation of lipid biosynthesis were also identified.

CONCLUSIONS

Our genomic data provide new insights into the evolution of the walnut genome and create a new platform for accelerating molecular breeding and improving the comprehensive utilization of these economically important tree species.

摘要

背景

胡桃科(胡桃属和山核桃属)的毛核桃(Juglans mandshurica Maxim.)是一种具有多种工业用途和药用特性的树木。毛核桃产生胡桃醌,这是一种有毒的化感物质,具有潜在的利用价值。此外,毛核桃的种子富含各种不饱和脂肪酸,具有很高的营养价值。

发现

在这里,我们通过结合 PacBio 高保真读数和高通量染色体构象捕获数据,为 J. mandshurica(n = 16)提供了一个高质量的染色体尺度参考基因组组装和注释,其连缀 N50 为 21.4 Mb。组装的基因组估计大小为 548.7 Mb,由 657 个连缀、623 个支架和 40453 个蛋白质编码基因组成。总共,组装基因组的 60.99%由重复序列组成。组装了 16 个对应于 16 条染色体的超级支架,其支架 N50 长度为 33.7 Mb,BUSCO 完整基因百分比为 98.3%。J. mandshurica 与 Juglans cathayensis 具有密切的序列关系,分化时间为 1380 万年前。结合高质量的基因组、转录组和代谢组学数据,我们构建了一个基因到代谢物的网络,并鉴定了 566 个核心和保守的差异表达基因,这些基因可能参与胡桃醌的生物合成。发现了 5 个 CYP450 基因,它们可能有助于胡桃醌的积累。NAC、bZip、NF-YA 和 NF-YC 与胡桃醌含量呈正相关。还鉴定了一些候选调节剂(如 FUS3、ABI3、LEC2 和 WRI1 转录因子),它们参与脂质生物合成的调控。

结论

我们的基因组数据为胡桃基因组的进化提供了新的见解,并为加速分子育种和提高这些经济重要树种的综合利用创造了一个新的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eae/9239856/3c8de75c80fa/giac057fig1.jpg

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