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Stable carbon isotope analysis as a direct means of inferring crop water status and water management practices

机译:稳定的碳同位素分析是推断作物水分状况和水管理实践的直接手段

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摘要

Stable carbon isotope analysis of plant remains is a promising tool for researchers studying palaeoclimate and past agricultural systems. The potential of the technique is clear: it offers a direct measure of the water conditions in which plants grew. In this paper, we assess how reliably stable carbon isotope discrimination can be used to infer water conditions, through the analysis of present-day crop plants grown at multiple locations across the Mediterranean and south-west Asia. The key findings are that: (1) ∆¹³C, as expected, provides an indication of water conditions, (2) even for plants grown in similar conditions there is variation in ∆¹³C and (3) ∆¹³C may reflect crop water status for a period beginning well before the grain filling period. A new framework is presented which increases the robustness with which ∆¹³C values of plant remains can be interpreted in terms of the water conditions in which ancient crops grew.
机译:植物残骸的稳定碳同位素分析对于研究古气候和过去的农业系统的研究人员而言是一种很有前途的工具。该技术的潜力很明显:它可以直接测量植物生长的水分状况。在本文中,我们通过分析在地中海和西南亚多个位置种植的当今农作物,评估了如何可靠地利用稳定的碳同位素歧视来推断水状况。主要发现是:(1)预期的∆C可以提供水状况的指示;(2)即使对于在相似条件下生长的植物,∆C的变化也很大;(3)∆C的温度可能反映了作物的水分状况。谷物灌浆期之前的一段时期。提出了一个新的框架,该框架提高了植物残体的ΔC13值的健壮性,可以根据古代农作物生长的水分条件来解释。

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