Department of General Systems Studies, University of Tokyo, Komaba, Meguro, Tokyo 153-8902, Japan.
Proc Biol Sci. 2011 Oct 22;278(1721):3108-15. doi: 10.1098/rspb.2011.0239. Epub 2011 Mar 4.
It is critical to incorporate the process of population dynamics into community genetics studies to identify the mechanisms of the linkage between host plant genetics and associated communities. We studied the effects of plant genotypic diversity of tall goldenrod Solidago altissima on the population dynamics of the aphid Uroleucon nigrotuberculatum. We found genotypic variation in plant resistance to the aphid in our experiments. To determine the impact of plant genotypic diversity on aphid population dynamics, we compared aphid densities under conditions of three treatments: single-genotype plots, mixed-genotype plots and mixed-genotype-with-cages plots. In the latter treatment plants were individually caged to prevent natural enemy attack and aphid movement among plants. The synergistic effects of genotypes on population size were demonstrated by the greater aphid population size in the mixed-genotype treatment than expected from additive effects alone. Two non-exclusive hypotheses are proposed to explain this pattern. First, there is a source-sink relationship among plant genotypes: aphids move from plant genotypes where their reproduction is high to genotypes where their reproduction is low. Second, natural enemy mortality is reduced in mixed plots in a matrix of diverse plant genotypes.
将种群动态过程纳入社区遗传学研究对于确定宿主植物遗传学与相关群落之间联系的机制至关重要。我们研究了高大泽米草 Solidago altissima 的植物基因型多样性对蚜虫 Uroleucon nigrotuberculatum 种群动态的影响。在实验中,我们发现了植物对蚜虫的抗生性存在基因型变异。为了确定植物基因型多样性对蚜虫种群动态的影响,我们比较了在三种处理条件下蚜虫密度:单基因型小区、混合基因型小区和混合基因型加笼小区。在后一种处理中,植物被单独套笼以防止自然天敌的攻击和蚜虫在植物之间的移动。混合基因型处理中蚜虫种群数量大于仅从加性效应预期的数量,表明基因型之间存在协同效应。提出了两个非排他性假设来解释这种模式。首先,植物基因型之间存在源-汇关系:蚜虫从繁殖率高的植物基因型移动到繁殖率低的植物基因型。其次,在不同植物基因型的基质中,混合小区中自然天敌的死亡率降低。