首页> 外文期刊>Annals of Botany >Genetic Identity Affects Performance of Species in Grasslands of Different Plant Diversity: An Experiment with Lolium perenne Cultivars.
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Genetic Identity Affects Performance of Species in Grasslands of Different Plant Diversity: An Experiment with Lolium perenne Cultivars.

机译:遗传同一性影响不同植物多样性草地上物种的表现:黑麦草品种试验。

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Recent biodiversity research has focused on ecosystem processes, but less is known about responses of populations of individual plant species to changing community diversity and implications of genetic variation within species. To address these issues, effects of plant community diversity on the performance of different cultivars of Lolium perenne were analysed. METHODS: Populations of 15 genetic cultivars of Lolium perenne were established in experimental grasslands varying in richness of species (from 1 to 60) and functional groups (from 1 to 4). Population sizes, mean size of individual plants, biomass of individual shoots and seed production were measured in the first and second growing season after establishment. KEY RESULTS: Population sizes of all cultivars decreased with increasing community species richness. Plant individuals formed fewer shoots with a lower shoot mass in more species-rich plant communities. A large proportion of variation in plant size and relative population growth was attributable to effects of community species and functional group richness, but the inclusion of cultivar identity explained additional 4-7 % of variation. Cultivar identity explained most variation (28-51 %) at the shoot level (biomass of individual tillers and reproductive shoots, seed production, heading stage). Coefficients of variation of the measured variables across plant communities were larger in cultivars with a lower average performance, indicating that this variation was predominantly due to passive growth reductions and not a consequence of larger adaptive plastic responses. No single cultivar performed best in all communities. CONCLUSIONS: The decreasing performance of Lolium perenne in plant communities of increasing species richness suggests a regulation of competitive interactions by species diversity. Genetic variation within species provides a base for larger phenotypic variation and may affect competitive ability. However, heterogeneous biotic environments (= plant communities of different species composition) are important for the maintenance of intra-specific genetic variation.
机译:最近的生物多样性研究集中在生态系统过程上,但是对于单个植物物种的种群对不断变化的群落多样性的反应以及物种内部遗传变异的影响知之甚少。为了解决这些问题,分析了植物群落多样性对黑麦草不同品种性能的影响。方法:在实验草地上建立了15个黑麦草遗传品种的种群,这些草地的物种丰富(从1到60)和功能组(从1到4)不同。在建立后的第一个和第二个生长季节,测量种群大小,单株平均大小,单枝生物量和种子产量。关键结果:随着社区物种丰富度的增加,所有品种的种群规模均减小。在物种较多的植物群落中,植物个体形成的芽较少,芽质量较低。植物大小和相对种群增长的很大一部分变化都归因于群落物种和功能群丰富度的影响,但是品种身份的包含解释了另外4-7%的变化。品种身份解释了芽水平上的最大变异(28-51%)(单个分till和生殖芽的生物量,种子产量,抽穗期)。在具有较低平均性能的品种中,跨植物群落的测量变量的变异系数较大,这表明该变异主要是由于被动生长减少所致,而不是较大的适应性塑性响应的结果。没有一个品种在所有社区中表现最佳。结论:黑麦草在增加物种丰富度的植物群落中的表现下降表明物种多样性对竞争相互作用的调节。物种内的遗传变异为更大的表型变异提供了基础,并可能影响竞争能力。但是,异质性生物环境(=不同物种组成的植物群落)对于维持种内遗传变异很重要。

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