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杜仲单倍体基因组的高质量从头组装为进化和橡胶生物合成提供了新见解。

High-quality de novo assembly of the Eucommia ulmoides haploid genome provides new insights into evolution and rubber biosynthesis.

作者信息

Li Yun, Wei Hairong, Yang Jun, Du Kang, Li Jiang, Zhang Ying, Qiu Tong, Liu Zhao, Ren Yongyu, Song Lianjun, Kang Xiangyang

机构信息

Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, 100083, Beijing, People's Republic of China.

National Engineering Laboratory for Tree Breeding, Beijing Forestry University, 100083, Beijing, People's Republic of China.

出版信息

Hortic Res. 2020 Nov 1;7(1):183. doi: 10.1038/s41438-020-00406-w.

Abstract

We report the acquisition of a high-quality haploid chromosome-scale genome assembly for the first time in a tree species, Eucommia ulmoides, which is known for its rubber biosynthesis and medicinal applications. The assembly was obtained by applying PacBio and Hi-C technologies to a haploid that we specifically generated. Compared to the initial genome release, this one has significantly improved assembly quality. The scaffold N50 (53.15 MB) increased 28-fold, and the repetitive sequence content (520 Mb) increased by 158.24 Mb, whereas the number of gaps decreased from 104,772 to 128. A total of 92.87% of the 26,001 predicted protein-coding genes identified with multiple strategies were anchored to the 17 chromosomes. A new whole-genome duplication event was superimposed on the earlier γ paleohexaploidization event, and the expansion of long terminal repeats contributed greatly to the evolution of the genome. The more primitive rubber biosynthesis of this species, as opposed to that in Hevea brasiliensis, relies on the methylerythritol-phosphate pathway rather than the mevalonate pathway to synthesize isoprenyl diphosphate, as the MEP pathway operates predominantly in trans-polyisoprene-containing leaves and central peels. Chlorogenic acid biosynthesis pathway enzymes were preferentially expressed in leaves rather than in bark. This assembly with higher sequence contiguity can foster not only studies on genome structure and evolution, gene mapping, epigenetic analysis and functional genomics but also efforts to improve E. ulmoides for industrial and medical uses through genetic engineering.

摘要

我们首次报道了获取高质量的单倍体染色体水平基因组组装,该基因组来自杜仲这一树种,杜仲以其橡胶生物合成和药用价值而闻名。该组装是通过将PacBio和Hi-C技术应用于我们专门构建的单倍体而获得的。与最初发布的基因组相比,此次组装的质量有了显著提高。支架N50(53.15 MB)增长了28倍,重复序列含量(520 Mb)增加了158.24 Mb,而缺口数量从104,772个减少到了128个。通过多种策略鉴定出的26,001个预测蛋白质编码基因中,共有92.87%被定位到17条染色体上。一个新的全基因组复制事件叠加在早期的γ古六倍体化事件之上,长末端重复序列的扩增对基因组的进化贡献巨大。与巴西橡胶树相比,该物种更为原始的橡胶生物合成依赖甲基赤藓糖醇磷酸途径而非甲羟戊酸途径来合成异戊烯基二磷酸,因为MEP途径主要在含反式聚异戊二烯的叶片和中间皮层中起作用。绿原酸生物合成途径的酶在叶片中而非树皮中优先表达。这种具有更高序列连续性的组装不仅有助于基因组结构与进化、基因定位、表观遗传分析和功能基因组学的研究,还能推动通过基因工程改良杜仲以用于工业和医学用途的工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c95/7603500/0c3580302a0a/41438_2020_406_Fig1_HTML.jpg

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