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The complex genome and adaptive evolution of polyploid Chinese pepper (Zanthoxylum armatum and Zanthoxylum bungeanum)
Plant Biotechnology Journal ( IF 13.8 ) Pub Date : 2022-09-19 , DOI: 10.1111/pbi.13926
Lisong Hu 1, 2, 3 , Zhongping Xu 1, 4 , Rui Fan 1, 2, 3 , Guanying Wang 4 , Fuqiu Wang 4 , Xiaowei Qin 1, 2, 3 , Lin Yan 1, 2, 3 , Xunzhi Ji 1, 2, 3 , Minghui Meng 5 , Soonliang Sim 6 , Wei Chen 4 , Chaoyun Hao 1, 2, 3 , Qinghuang Wang 1, 2, 3 , Huaguo Zhu 7 , Shu Zhu 8 , Pan Xu 5 , Hui Zhao 9, 10 , Keith Lindsey 11 , Henry Daniell 12 , Jonathan F Wendel 13 , Shuangxia Jin 4
Affiliation  

Zanthoxylum armatum and Zanthoxylum bungeanum, known as ‘Chinese pepper’, are distinguished by their extraordinary complex genomes, phenotypic innovation of adaptive evolution and species-special metabolites. Here, we report reference-grade genomes of Z. armatum and Z. bungeanum. Using high coverage sequence data and comprehensive assembly strategies, we derived 66 pseudochromosomes comprising 33 homologous phased groups of two subgenomes, including autotetraploid Z. armatum. The genomic rearrangements and two whole-genome duplications created large (~4.5 Gb) complex genomes with a high ratio of repetitive sequences (>82%) and high chromosome number (2n = 4x = 132). Further analysis of the high-quality genomes shed lights on the genomic basis of involutional reproduction, allomones biosynthesis and adaptive evolution in Chinese pepper, revealing a high consistent relationship between genomic evolution, environmental factors and phenotypic innovation. Our study provides genomic resources and new insights for investigating diversification and phenotypic innovation in Chinese pepper, with broader implications for the protection of plants under severe environmental changes.
更新日期:2022-09-19
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