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Net primary productivity and below-ground crop residue inputs for root crops: Potato (Solanum tuberosum L.) and sugar beet (Beta vulgaris L.)

机译:块根作物的净初级生产力和地下作物残渣的投入:马铃薯(Solanum tuberosum L.)和甜菜(Beta vulgaris L.)

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摘要

Root crops are significant in agro-ecosystems of temperate climates. However, the amounts of crop residues for these crop types are not well documented and they need to be accounted for in the modeling of soil organic carbon dynamics. Our objective was to review field measurements of root biomass left in the soil as crop residues at harvest for potato and sugar beet. We considered estimates for crop residue inputs as root biomass presented in the literature and some unpublished results. Our analysis showed that compared to, for example, cereals, the contribution of below-ground net primary productivity (NPP) to crop residues is at least two to three times lower for root crops. Indeed, the field measurements indicated that root biomass for topsoils only represents on average 25 to 30 g dry matter (DM) m(-2) yr(-1). Other estimates, albeit variable and region-specific, tended to be higher. We suggest relative plant DM allocation coefficients for agronomic yield (R-P), above-ground biomass (R-S) and root biomass (R-R) components, expressed as a proportion of total NPP. These coefficients, representative for temperate climates (0.739:0.236:0.025 for potato and 0.626:0.357:0.017 for sugar beet), should be useful in the modeling of agro-ecosystems that include root crops.
机译:在温带气候的农业生态系统中,块根作物很重要。但是,这些农作物类型的农作物残留量尚未得到充分记录,因此需要在土壤有机碳动力学建模中加以考虑。我们的目标是回顾田间测量的马铃薯和甜菜收获时残留在土壤中作为作物残留物的土壤根系生物量。我们考虑了作物残渣投入的估计值作为文献中提出的根系生物量以及一些未发表的结果。我们的分析表明,与谷物相比,地下作物的地下净初级生产力(NPP)对作物残留的贡献至少要低两到三倍。的确,现场测量表明,表土的根生物量仅代表平均25至30 g干物质(DM)m(-2)yr(-1)。其他估计,尽管是可变的和针对特定区域的,但往往更高。我们建议针对农作物产量(R-P),地上生物量(R-S)和根生物量(R-R)组分的相对植物DM分配系数,以占总NPP的比例表示。这些系数代表温带气候(马铃薯为0.739:0.236:0.025,甜菜为0.626:0.357:0.017),在包括根类作物的农业生态系统建模中应该很有用。

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