Department of Biology, The Pennsylvania State University, University Park, Pennsylvania, United States of America.
PLoS One. 2011;6(12):e28459. doi: 10.1371/journal.pone.0028459. Epub 2011 Dec 12.
The clonal weed Solanum carolinense exhibits plasticity in the strength of its self-incompatibility (SI) system and suffers low levels of inbreeding depression (δ) in the greenhouse. We planted one inbred and one outbred plant from each of eight maternal plants in a ring (replicated twice) and monitored clonal growth, herbivory, and reproduction over two years. Per ramet δ was estimated to be 0.63 in year one and 0.79 in year two, and outbred plants produced 2.5 times more ramets than inbred plants in the spring of year two. Inbred plants also suffered more herbivore damage than outbred plants in both fields, suggesting that inbreeding compromises herbivore resistance. Total per genet δ was 0.85 over the two years, indicating that S. carolinense is unlikely to become completely self-compatible, and suggesting that plasticity in the SI system is part of a stable mixed-mating system permitting self-fertilization when cross pollen limits seed production.
克隆杂草南方茄 exhibiting plasticity in the strength of its self-incompatibility (SI) system and suffers low levels of inbreeding depression (δ) in the greenhouse. We planted one inbred and one outbred plant from each of eight maternal plants in a ring (replicated twice) and monitored clonal growth, herbivory, and reproduction over two years. Per ramet δ was estimated to be 0.63 in year one and 0.79 in year two, and outbred plants produced 2.5 times more ramets than inbred plants in the spring of year two. Inbred plants also suffered more herbivore damage than outbred plants in both fields, suggesting that inbreeding compromises herbivore resistance. Total per genet δ was 0.85 over the two years, indicating that S. carolinense is unlikely to become completely self-compatible, and suggesting that plasticity in the SI system is part of a stable mixed-mating system permitting self-fertilization when cross pollen limits seed production.
南方茄属克隆杂草在其自交不亲和(SI)系统的强度方面表现出可塑性,并且在温室中遭受低水平的近交衰退(δ)。我们从 8 个母株中的每个母株种植了一个自交系和一个杂交系植物,形成一个环(重复两次),并在两年内监测克隆生长、草食性和繁殖。每个分株的δ估计在第一年为 0.63,第二年为 0.79,第二年春季杂交系植物产生的分株比自交系植物多 2.5 倍。在两个试验田,自交系植物比杂交系植物遭受更多的草食性损害,表明近交降低了草食性抗性。两年间每个基因座的总δ为 0.85,表明南方茄属不太可能完全自交亲和,并且 SI 系统的可塑性是一种稳定的混合交配系统的一部分,当异花花粉限制种子产生时,允许自交。