Suda Jan, Meyerson Laura A, Leitch Ilia J, Pyšek Petr
Institute of Botany, Academy of Sciences of the Czech Republic, Průhonice, CZ-252 43, Czech Republic.
Department of Botany, Faculty of Science, Charles University in Prague, Benátská 2, Prague 2, CZ-128 01, Czech Republic.
New Phytol. 2015 Feb;205(3):994-1007. doi: 10.1111/nph.13107. Epub 2014 Oct 17.
The ecological role of genome size in plant biology, biogeography, and morphology has garnered increasing attention as the methods and technology associated with measuring cytological characteristics have become more reliable and accessible. However, how plant genome size influences plant invasions and at what stage in the invasion this influence occurs have been little explored. Several large-scale analyses of published data have yielded valuable interspecific comparisons, but experimental studies that manipulate environmental factors are needed, particularly below the species level, to fully understand the role that genome size plays in plant invasion. In this review, we summarize the available knowledge, discuss the integration of genome size data into invasion research, and suggest how it can be applied to detect and manage invasive species. We also explore how global climate change could exert selective pressures on plant populations with varying genome sizes, thereby increasing the distribution range and invasiveness of some populations while decreasing others. Finally, we outline avenues for future research, including considerations of large-scale studies of intraspecific variation in genome size of invasive populations, testing the interaction of genome size with other factors in macroecological analyses of invasions, as well as the role this trait may play in plant-enemy interactions.
随着与测量细胞学特征相关的方法和技术变得更加可靠且易于获取,基因组大小在植物生物学、生物地理学和形态学中的生态作用日益受到关注。然而,植物基因组大小如何影响植物入侵以及这种影响发生在入侵的哪个阶段,目前鲜有研究。几项已发表数据的大规模分析得出了有价值的种间比较结果,但仍需要开展操纵环境因素的实验研究,尤其是在物种以下层面,以便全面了解基因组大小在植物入侵中所起的作用。在本综述中,我们总结了现有知识,讨论了将基因组大小数据整合到入侵研究中的情况,并提出了如何将其应用于检测和管理入侵物种。我们还探讨了全球气候变化如何对具有不同基因组大小的植物种群施加选择压力,从而扩大一些种群的分布范围和入侵性,同时缩小其他种群的分布范围和入侵性。最后,我们概述了未来的研究方向,包括考虑对入侵种群基因组大小的种内变异进行大规模研究、在入侵的宏观生态分析中测试基因组大小与其他因素的相互作用,以及该性状在植物与天敌相互作用中可能发挥的作用。