Telomere to telomere flax (Linum usitatissimum L.) genome assembly Unlocks insights beyond fatty acid metabolism pathways

IF 8.7 1区 农林科学 Q1 Agricultural and Biological Sciences
Jianyu Lu, Hanlu Wu, Fu Wang, Jinxi Li, Yifei Wang, Qian Zhao, Yingping Wang, Xiaonan Wang, Xiujuan Lei, Ruidong Sun, Jun Zhang, Aisheng Xiong, Michael K Deyholos, Jian Zhang
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Abstract

One of China's most important resources is flax (Linum usitatissimum L.), an ancient crop with significant nutritional and therapeutic benefits. Despite its importance, existing flax reference genomes remain incomplete, with many unassembled sequences. Here, we report a gapless 482.51 Mb telomere-to-telomere (T2T) flax genome assembly, predicting 46,634 genes, of which 42,805 were functionally annotated. Repetitive sequences constitute 60.05% of the genome, and we identified 30 telomeres and 15 centromeres across the chromosomes. Whole-genome duplication (WGD) events were detected at approximately 11.5, 53.5, and 114 million years ago (MYA) based on synonymous substitution rates (Ks). The T2T assembly enabled the reconstruction of the fatty acid metabolic pathway, identifying 49 related genes, including 6 newly annotated ones. Furthermore, genomic co-localization was observed between fatty acid metabolism pathway-related genes and transposable elements, suggesting that functional differentiation of these genes in flax evolution may have occurred through transposon-mediated duplication events. Phylogenetic analysis of SAD and FAD gene families revealed that FAD genes segregate into FAD2 and FAD3/7/8 subfamilies. Gene structure and motif analyses demonstrated conserved exon-intron architectures and motif organization within each phylogenetic clade of SAD and FAD genes. Promoter region characterization identified numerous cis-acting elements responsive to phytohormones (MeJA and abscisic acid) and abiotic stresses (low temperature and anaerobic induction) in both SAD and FAD genes. Our knowledge of the evolution of the flax genome is improved by this excellent genome assembly, which also offers a strong basis for enhancing agricultural attributes and speeding up molecular breeding.
端粒到端粒亚麻(Linum usitatissimum L.)基因组组装揭示了脂肪酸代谢途径之外的见解
中国最重要的资源之一是亚麻(Linum usitatissimum L.),一种具有显著营养和治疗价值的古老作物。尽管它很重要,但现有的亚麻参考基因组仍然不完整,有许多未组装的序列。在这里,我们报告了一个482.51 Mb的无间隙的端粒到端粒(T2T)亚麻基因组组装,预测了46,634个基因,其中42,805个被功能注释。重复序列占基因组的60.05%,我们在染色体上鉴定了30个端粒和15个着丝粒。基于同义替代率(Ks),在大约1150万年前、5350万年前和1.14亿年前(MYA)检测到全基因组重复(WGD)事件。T2T组装实现了脂肪酸代谢途径的重建,鉴定了49个相关基因,其中包括6个新注释的基因。此外,脂肪酸代谢途径相关基因和转座因子之间的基因组共定位表明,这些基因在亚麻进化中的功能分化可能是通过转座子介导的复制事件发生的。对SAD和FAD基因家族的系统发育分析表明,FAD基因分离为FAD2和FAD3/7/8亚家族。基因结构和基序分析表明,SAD和FAD基因在每个系统发育分支中都具有保守的外显子-内含子结构和基序组织。启动子区鉴定鉴定了SAD和FAD基因中许多对植物激素(MeJA和脱落酸)和非生物胁迫(低温和厌氧诱导)有响应的顺式作用元件。这一优秀的基因组组合提高了我们对亚麻基因组进化的认识,也为提高农业属性和加快分子育种提供了坚实的基础。
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来源期刊
Horticulture Research
Horticulture Research Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
11.20
自引率
6.90%
发文量
367
审稿时长
20 weeks
期刊介绍: Horticulture Research, an open access journal affiliated with Nanjing Agricultural University, has achieved the prestigious ranking of number one in the Horticulture category of the Journal Citation Reports ™ from Clarivate, 2022. As a leading publication in the field, the journal is dedicated to disseminating original research articles, comprehensive reviews, insightful perspectives, thought-provoking comments, and valuable correspondence articles and letters to the editor. Its scope encompasses all vital aspects of horticultural plants and disciplines, such as biotechnology, breeding, cellular and molecular biology, evolution, genetics, inter-species interactions, physiology, and the origination and domestication of crops.
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