Loureiro Iñigo, Escorial María-Concepción, Chueca María-Cristina
Plant Protection Department, Weed Control Group, Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), Madrid. Spain.
PLoS One. 2016 Jun 23;11(6):e0157892. doi: 10.1371/journal.pone.0157892. eCollection 2016.
The transfer of herbicide resistance genes by pollen is a major concern in cross-pollinated species such as annual ryegrass (Lolium rigidum). A two-year study was conducted in the greenhouse, under favorable conditions for pollination, to generate information on potential maximum cross-pollination. This maximum cross-pollination rate was 56.1%. A three-year field trial was also conducted to study the cross-pollination rates in terms of distance and orientation to an herbicide-resistant pollen source. Under field conditions, cross-pollination rates varied from 5.5% to 11.6% in plants adjacent to the pollen source and decreased with increasing distances (1.5 to 8.9% at 15 m distance and up to 4.1% at 25 m in the downwind direction). Environmental conditions influenced the cross-pollination both under greenhouse and field conditions. Data were fit to an exponential decay model to predict gene flow at increasing distances. This model predicted an average gene flow of 7.1% when the pollen donor and recipient plants were at 0 m distance from each other. Pollen-mediated gene flow declined by 50% at 16.7 m from the pollen source, yet under downwind conditions gene flow of 5.2% was predicted at 25 m, the farthest distance studied. Knowledge of cross-pollination rates will be useful for assessing the spread of herbicide resistance genes in L. rigidum and in developing appropriate strategies for its mitigation.
花粉传播除草剂抗性基因是一年生黑麦草(Lolium rigidum)等异花授粉物种的一个主要问题。在温室中进行了一项为期两年的研究,在有利于授粉的条件下,以获取有关潜在最大异花授粉的信息。这个最大异花授粉率为56.1%。还进行了一项为期三年的田间试验,以研究距离抗除草剂花粉源的远近和方向对异花授粉率的影响。在田间条件下,与花粉源相邻的植株异花授粉率在5.5%至11.6%之间,并随着距离增加而降低(下风向15米处为1.5%至8.9%,25米处高达4.1%)。环境条件在温室和田间条件下均影响异花授粉。数据拟合指数衰减模型以预测距离增加时的基因流动。当花粉供体和受体植株彼此距离为0米时,该模型预测平均基因流动为7.1%。花粉介导的基因流动在距花粉源16.7米处下降50%,但在下风向条件下,在研究的最远距离25米处预测基因流动为5.2%。了解异花授粉率将有助于评估黑麦草中除草剂抗性基因的传播,并制定适当的缓解策略。