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Genetic components to belowground carbon fluxes in a riparian forest ecosystem: a common garden approach

机译:河岸森林生态系统地下碳通量的遗传成分:一种常见的花园方法

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Soil carbon dioxide (C02) efflux is a major component of terrestrial carbon (C) cycles, yet; the demonstration of covariation between overstory tree genetic-based traits and soil C flux remains a major frontier in understanding biological controls over soil C. Here, we used a common garden with two native tree species, Populus fremontii and P. angustifolia, and their naturally occurring hybrids to test the predictability of belowground C fluxes on the basis of taxonomic identity and genetic marker composition of replicated clones of individual genotypes. Three patterns emerged: soil C02 efflux and ratios of belowground flux to aboveground productivity differ by as much as 50-150% as a result of differences in clone identity and cross type; on the basis of Mantel tests of molecular marker matrices, we found that c 30% of this variation was genetically based, in which genetically similar trees support more similar soil C02 efflux under their canopies than do genetically dissimilar trees; and the patterns detected in an experimental garden match observations in the wild, and seem to be unrelated to measured abiotic factors. Our findings suggest that the genetic makeup of the plants growing on soil has a significant influence on the release of C fromsoils to the atmosphere.
机译:土壤二氧化碳(CO2)的排放是陆地碳(C)循环的主要组成部分。过度树的遗传学特征与土壤碳通量之间协变的证明仍然是了解土壤碳生物控制的主要前沿领域。在这里,我们使用了一个带有两个原生树种的公共花园,即杨树(Populus fremontii)和桔梗P. angustifolia,以及它们的自然树种。种出现的杂种,以根据单个基因型复制克隆的分类同一性和遗传标记组成,测试地下C通量的可预测性。出现了三种模式:由于克隆身份和杂交类型的差异,土壤CO 2的流出和地下通量与地下生产力的比率相差多达50-150%。根据分子标记矩阵的Mantel测试,我们发现这种变异的30%是基于遗传的,其中遗传相似的树木比其遗传异种的树木在其冠层下支持更多相似的土壤CO2外排;实验花园中检测到的模式与野外观察结果相符,似乎与非生物因素无关。我们的发现表明,土壤中生长的植物的遗传构成对土壤中C释放到大气中具有重要影响。

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