Hurgobin Bhavna, Tamiru-Oli Muluneh, Welling Matthew T, Doblin Monika S, Bacic Antony, Whelan James, Lewsey Mathew G
La Trobe Institute for Agriculture and Food, Department of Animal, Plant and Soil Sciences, School of Life Sciences, La Trobe University, AgriBio Building, Bundoora, VIC, 3086, Australia.
Australian Research Council Research Hub for Medicinal Agriculture, La Trobe University, AgriBio Building, Bundoora, VIC, 3086, Australia.
New Phytol. 2021 Apr;230(1):73-89. doi: 10.1111/nph.17140. Epub 2021 Jan 8.
Cannabis (Cannabis sativa L.) is one of the oldest cultivated plants purported to have unique medicinal properties. However, scientific research of cannabis has been restricted by the Single Convention on Narcotic Drugs of 1961, an international treaty that prohibits the production and supply of narcotic drugs except under license. Legislation governing cannabis cultivation for research, medicinal and even recreational purposes has been relaxed recently in certain jurisdictions. As a result, there is now potential to accelerate cultivar development of this multi-use and potentially medically useful plant species by application of modern genomics technologies. Whilst genomics has been pivotal to our understanding of the basic biology and molecular mechanisms controlling key traits in several crop species, much work is needed for cannabis. In this review we provide a comprehensive summary of key cannabis genomics resources and their applications. We also discuss prospective applications of existing and emerging genomics technologies for accelerating the genetic improvement of cannabis.
大麻(Cannabis sativa L.)是最古老的栽培植物之一,据称具有独特的药用特性。然而,大麻的科学研究受到1961年《麻醉品单一公约》的限制,该国际条约禁止麻醉药品的生产和供应,除非有许可证。最近,某些司法管辖区关于用于研究、医疗甚至娱乐目的的大麻种植的立法有所放宽。因此,现在有可能通过应用现代基因组学技术来加速这种多用途且可能具有医学用途的植物品种的开发。虽然基因组学对于我们理解几种作物物种的基本生物学和控制关键性状的分子机制至关重要,但大麻仍需要大量工作。在这篇综述中,我们全面总结了关键的大麻基因组学资源及其应用。我们还讨论了现有和新兴基因组学技术在加速大麻遗传改良方面的潜在应用。