Whole-genome resequencing of wild and cultivated cannabis reveals the genetic structure and adaptive selection of important traits

生物 大麻 驯化 生态型 基因座(遗传学) 作物 基因组 发芽 大麻 植物 基因 生物技术 遗传学 农学 心理学 精神科
作者
Xuan Chen,Min Zhang,Qingying Zhang,Lu Wang,Rong Guo,Yi-Xun Zhan,Pin Lv,Yuan Xu,Mengbi Guo,Yuan Zhang,Kun Zhang,Liu Yan-hu,Moon-Sik Yang
出处
期刊:BMC Plant Biology [Springer Nature]
卷期号:22 (1) 被引量:2
标识
DOI:10.1186/s12870-022-03744-0
摘要

Abstract Background Cannabis is an important industrial crop species whose fibre, seeds, flowers and leaves are widely used by humans. The study of cannabinoids extracted from plants has been popular research topic in recent years. China is one of the origins of cannabis and one of the few countries with wild cannabis plants. However, the genetic structure of Chinese cannabis and the degree of adaptive selection remain unclear. Results The main morphological characteristics of wild cannabis in China were assessed. Based on whole-genome resequencing SNPs, Chinese cannabis could be divided into five groups in terms of geographical source and ecotype: wild accessions growing in the northwestern region; wild accessions growing in the northeastern region; cultivated accessions grown for fibre in the northeastern region; cultivated accessions grown for seed in northwestern region, and cultivated accessions in southwestern region. We further identified genes related to flowering time, seed germination, seed size, embryogenesis, growth, and stress responses selected during the process of cannabis domestication. The expression of flowering-related genes under long-day (LD) and short-day (SD) conditions showed that Chinese cultivated cannabis is adapted to different photoperiods through the regulation of Flowering locus T-like ( FT-like ) expression. Conclusion This study clarifies the genetic structure of Chinese cannabis and offers valuable genomic resources for cannabis breeding.
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