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首页> 外文期刊>International journal of plant sciences >THE IMPACT OF GLOBAL WARMING ON FLORAL TRAITS THAT AFFECT THE SELFING RATE IN A HIGH-ALTITUDE PLANT
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THE IMPACT OF GLOBAL WARMING ON FLORAL TRAITS THAT AFFECT THE SELFING RATE IN A HIGH-ALTITUDE PLANT

机译:全球变暖对高海拔植物自交率的影响

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Premise of research. Changes in the abiotic environment can influence plant mating systems through phenotypic changes in floral traits that affect selfing. Herkogamy (spatial separation of male and female functions within a flower), dichogamy (temporal separation), and total flower number affect within- (autogamy) and/or among- (geitonogamy) flower selfing. We examined the potential effects of environmental changes associated with global warming on herkogamy, dichogamy, and number of flowers per plant and discussed the impacts on the mating system in a high-altitude species, Aquilegia coerulea. Methodology. In the high-altitude habitats in which this species grows, global warming is expected to increase both temperature and spring precipitation in the form of rain. We grew plants from 17 families from each of three natural populations of A. coerulea at two temperature and two water treatments, leading to 692 experimental plants (2 temperature × 2 water × 3 populations × 17 families × 3-4 individuals per family). We measured herkogamy and dichogamy, recorded total flower number for each plant, and examined variation in floral traits due to genes and the environment. Pivotal results. Herkogamy, dichogamy, and total flower number-traits known to influence selfing rate-were all phenotypically plastic in response to changes in water or temperature. Genetic variation for all three traits was detected within and/or among populations. Conclusions. On the basis of our results, we predict that the increase in total flower number as a plastic response to global warming will have the strongest influence on the selfing rate and increase the level of geitonogamous selfing. Because inbreeding depression is high in A. coerulea, selection will act to reduce floral display in order to reduce inbreeding depression, but there will be a balance between the negative impact of inbreeding depression and the advantage provided by large floral displays in attracting pollinators.
机译:研究前提。非生物环境的变化可通过影响自交的花卉性状的表型变化影响植物交配系统。 Herkogamy(一朵花中男性和女性功能的空间分离),Dichgamy(时间分离)和总花数会影响(自交配偶)和/或(geitonogamy)间花的自交。我们研究了与全球变暖有关的环境变化对雌雄同体,双歧杆菌和单株花的数量的潜在影响,并讨论了对高海拔物种天蓝天蛾的交配系统的影响。方法。在该物种生长的高海拔生境中,预计全球变暖将以雨水形式增加温度和春季降水。我们在两种温度和两种水处理下,从蓝藻的三个自然种群中的每一个中生长了17个科的植物,得到了692种实验植物(2个温度×2个水×3个种群×17个科×每个家庭3-4个个体)。我们测量了雌雄同体和两性配偶,记录了每种植物的总花数,并检查了由于基因和环境导致的花性状的变化。关键的结果。响应水或温度的变化,已知会影响自交率的Herkogamy,Dchogamy和总花数特征都是表型可塑性的。在种群内部和/或种群之间检测到所有三个性状的遗传变异。结论。根据我们的结果,我们预测总花数的增加作为对全球变暖的塑性响应,将对自交率产生最大的影响,并增加基因组配子体自交水平。由于蓝藻中近交抑郁程度较高,因此选择会减少花饰,以减少近交凹陷,但近亲抑郁的负面影响与大型花饰在吸引传粉媒介上的优势之间会保持平衡。

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