Department of Biological Sciences and Merriam-Powell Center for Environmental Research, Northern Arizona University, Flagstaff, AZ 86011, USA.
Trends Plant Sci. 2012 May;17(5):271-81. doi: 10.1016/j.tplants.2012.01.005. Epub 2012 Feb 7.
Community-level genetic specificity results when individual genotypes or populations of the same species support different communities. Our review of the literature shows that genetic specificity exhibits both life and afterlife effects; it is a widespread phenomenon occurring in diverse taxonomic groups, aquatic to terrestrial ecosystems, and species-poor to species-rich systems. Such specificity affects species interactions, evolution, ecosystem processes and leads to community feedbacks on the performance of the individuals expressing the traits. Thus, genetic specificity by communities appears to be fundamentally important, suggesting that specificity is a major driver of the biodiversity and stability of the world's ecosystems.
当同一物种的个体基因型或种群支持不同的群落时,就会产生群落水平的遗传特异性。我们对文献的回顾表明,遗传特异性表现出生命和来世效应;它是一种广泛存在的现象,发生在不同的分类群、水生到陆生生态系统以及物种贫乏到丰富的系统中。这种特异性会影响物种间的相互作用、进化、生态系统过程,并导致表达这些特征的个体的性能产生群落反馈。因此,群落的遗传特异性似乎是至关重要的,这表明特异性是世界生态系统生物多样性和稳定性的主要驱动因素。