Department of Ecology and Evolutionary Biology, University of Toronto, Toronto, ON M5S3B2, Canada.
Koffler Scientific Reserve at Joker's Hill, University of Toronto, Toronto, ON M5S3B2, Canada.
Plant Commun. 2020 Oct 10;1(6):100114. doi: 10.1016/j.xplc.2020.100114. eCollection 2020 Nov 9.
The maintenance of genetic variation in mutualism-related traits is key for understanding mutualism evolution, yet the mechanisms maintaining variation remain unclear. We asked whether genotype-by-environment (G×E) interaction is a potential mechanism maintaining variation in the model legume-rhizobia system, . We planted 50 legume genotypes in a greenhouse under ambient light and shade to reflect reduced carbon availability for plants. We found an expected reduction under shaded conditions for plant performance traits, such as leaf number, aboveground and belowground biomass, and a mutualism-related trait, nodule number. We also found G×E for nodule number, with ∼83% of this interaction due to shifts in genotype fitness rank order across light environments, coupled with strong positive directional selection on nodule number regardless of light environment. Our results suggest that G×E can maintain genetic variation in a mutualism-related trait that is under consistent positive directional selection across light environments.
在互惠共生相关特征中维持遗传变异对于理解共生进化至关重要,但维持变异的机制仍不清楚。我们询问了基因型-环境(G×E)相互作用是否是维持模式豆科植物-根瘤菌系统中变异的潜在机制,。我们在温室中种植了 50 种豆科植物,在自然光和阴凉处种植,以反映植物可用碳的减少。我们发现,在阴凉条件下,植物的性能特征(如叶片数量、地上和地下生物量)和一个与共生相关的特征(根瘤数量)预计会减少。我们还发现了根瘤数量的 G×E,其中约 83%的这种相互作用是由于基因型适应度等级在光照环境中的变化,再加上无论光照环境如何,根瘤数量都有强烈的正向定向选择。我们的研究结果表明,G×E 可以在一个与共生相关的特征中维持遗传变异,该特征在光照环境中受到持续的正向定向选择。