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The influence of environmental factors on breeding system allocation at large spatial scales

机译:大空间尺度环境因素对育种系统配置的影响

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摘要

Plant breeding systems can vary widely among populations, yet few studies have investigated abiotic factors contributing to variation across a broad geographic range. Here we investigate variation in reproductive traits of Triodanis perfoliata (Campanulaceae), a species that exhibits dimorphic cleistogamy, a condition in which individual plants have both closed (selfing: cleistogamous: CL) and open (selfing or outcrossing: chasmogamous: CH) flowers. Chasmogamous production is theorized to be more costly because CH flowers have a larger exposed surface area and thus are more likely to lose more water than CL flowers. We examine relationships between abiotic conditions (temperature, precipitation and soil characteristics) and variation in breeding systems across 14 widespread populations using ordinary least squares models. We found that a large proportion of breeding system variation was described by climate and soil variables (R2 = 0.65–0.92). These results support the hypothesis that variation in the environment drives variation in breeding system allocation. Our broad geographic analyses provide a framework for mechanistic studies of cleistogamy, and employ a novel approach for examining reproductive traits and environmental variation at large scales. Given that two major components of our models were temperature and precipitation, our study further emphasizes the potential for ongoing climate change to alter plant breeding systems.
机译:植物育种系统在种群之间的差异很大,但是很少有研究调查非生物因素在广泛的地理范围内的变化。在这里,我们研究了Triodanis perfoliata(桔梗科)的繁殖性状的变异,该种植物表现出双态cleosogamy,一种情况下单个植物都关闭(自交:cleosogamous:CL)和开放(自交或异源:chasmogamous:CH)花。从理论上讲,准婚配菜的成本更高,因为CH花的裸露表面积更大,因此与CL花相比,水分流失的可能性更大。我们使用普通最小二乘模型研究了非生物条件(温度,降水和土壤特征)与14个广泛种群的繁殖系统变化之间的关系。我们发现,很大的繁殖系统变异是由气候和土壤变量描述的(R 2 = 0.65-0.92)。这些结果支持以下假设:环境的变化驱动繁殖系统分配的变化。我们广泛的地理分析提供了对同性恋习俗进行机械研究的框架,并采用了一种新颖的方法来大规模检查生殖性状和环境变异。考虑到我们模型的两个主要组成部分是温度和降水,我们的研究进一步强调了持续不断的气候变化改变植物育种系统的潜力。

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