Population Genomic Approaches for Weed Science

Author:

Martin Sara L.ORCID,Parent Jean-SebastienORCID,Laforest MartinORCID,Page EricORCID,Kreiner Julia M.,James Tracey

Abstract

Genomic approaches are opening avenues for understanding all aspects of biological life, especially as they begin to be applied to multiple individuals and populations. However, these approaches typically depend on the availability of a sequenced genome for the species of interest. While the number of genomes being sequenced is exploding, one group that has lagged behind are weeds. Although the power of genomic approaches for weed science has been recognized, what is needed to implement these approaches is unfamiliar to many weed scientists. In this review we attempt to address this problem by providing a primer on genome sequencing and provide examples of how genomics can help answer key questions in weed science such as: (1) Where do agricultural weeds come from; (2) what genes underlie herbicide resistance; and, more speculatively, (3) can we alter weed populations to make them easier to control? This review is intended as an introduction to orient weed scientists who are thinking about initiating genome sequencing projects to better understand weed populations, to highlight recent publications that illustrate the potential for these methods, and to provide direction to key tools and literature that will facilitate the development and execution of weed genomic projects.

Funder

Agriculture and Agri-Food Canada

Publisher

MDPI AG

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

Cited by 15 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Standing genetic variation fuels rapid evolution of herbicide resistance in blackgrass;Proceedings of the National Academy of Sciences;2023-04-12

2. Biological Control and Use of Bioherbicides;Weed Science and Weed Management in Rice and Cereal‐Based Cropping Systems;2023-03-31

3. Weed Science and Weed Management;Weed Science and Weed Management in Rice and Cereal‐Based Cropping Systems;2023-03-31

4. Common evolutionary trajectory of short life-cycle in Brassicaceae ruderal weeds;Nature Communications;2023-01-18

5. Crossability and Genetic Characterization of a North American Representative of Ipomoea grandifolia (Convolvulaceae), a Member of Ipomoea Series Batatas;Systematic Botany;2022-09-16

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