Vaughan D A, Balázs E, Heslop-Harrison J S
National Institute of Agrobiological Sciences, Kannondai 2-1-2, Tsukuba 305-8602, Ibaraki, Japan.
Ann Bot. 2007 Nov;100(5):893-901. doi: 10.1093/aob/mcm224.
Research related to crop domestication has been transformed by technologies and discoveries in the genome sciences as well as information-related sciences that are providing new tools for bioinformatics and systems' biology. Rapid progress in archaeobotany and ethnobotany are also contributing new knowledge to understanding crop domestication. This sense of rapid progress is encapsulated in this Special Issue, which contains 18 papers by scientists in botanical, crop sciences and related disciplines on the topic of crop domestication. One paper focuses on current themes in the genetics of crop domestication across crops, whereas other papers have a crop or geographic focus. One feature of progress in the sciences related to crop domestication is the availability of well-characterized germplasm resources in the global network of genetic resources centres (genebanks). Germplasm in genebanks is providing research materials for understanding domestication as well as for plant breeding. In this review, we highlight current genetic themes related to crop domestication. Impressive progress in this field in recent years is transforming plant breeding into crop engineering to meet the human need for increased crop yield with the minimum environmental impact - we consider this to be 'super-domestication'. While the time scale of domestication of 10 000 years or less is a very short evolutionary time span, the details emerging of what has happened and what is happening provide a window to see where domestication might - and can - advance in the future.
基因组科学以及信息相关科学中的技术与发现改变了与作物驯化相关的研究,这些科学为生物信息学和系统生物学提供了新工具。考古植物学和民族植物学的快速发展也为理解作物驯化贡献了新知识。这种快速发展的感觉体现在本期特刊中,其中包含了植物学、作物科学及相关学科的科学家撰写的18篇关于作物驯化主题的论文。一篇论文聚焦于不同作物驯化遗传学的当前主题,而其他论文则以特定作物或地理区域为重点。与作物驯化相关科学进展的一个特点是,全球遗传资源中心网络(基因库)中拥有特征明确的种质资源。基因库中的种质为理解驯化以及植物育种提供了研究材料。在这篇综述中,我们突出了与作物驯化相关的当前遗传学主题。近年来该领域令人瞩目的进展正在将植物育种转变为作物工程,以满足人类在最小化环境影响的情况下提高作物产量的需求——我们将此视为“超级驯化”。虽然一万年或更短时间的驯化时间尺度在进化上是非常短的,但已发生和正在发生之事所呈现的细节提供了一个窗口,可以看到驯化在未来可能以及能够前进的方向。