Identification of inter- and intra-species variation in cereal grains through geometric morphometric analysis, and its resilience under experimental charring
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Identification of inter- and intra-species variation in cereal grains through geometric morphometric analysis, and its resilience under experimental charring

机译:通过几何形态学分析识别谷物谷物中的物种间变化,及其在实验性炭化下的弹性

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AbstractThe application of morphometric analysis in archaeobotany has the potential to refine quantitatively identifications of ancient plant material recovered from archaeological sites, most commonly preserved through charring due to exposure to heat. This paper uses geometric morphometrics, first, to explore variation in grain shape between three domesticated cereal species, einkorn (Triticum monococcum), emmer (Triticum dicoccum) and barley (Hordeum vulgare), both before and after experimental charring at 230 and 260?°C. Results demonstrate that outline analysis reliably reflects known variations in grain shape between species and differences due to charring observed in previous experimental work, and is capable of distinguishing the species, with near-perfect results, both before and after charring. Having established this, the same method was applied to different accessions of the same species, which indicated that three different grain morphotypes of einkorn and two, possibly three, of emmer could be identified in the uncharred material, and that at least two different morphotypes for each species could be distinguished even after charring at temperatures up to 260?°C. This opens up the possibility of tracking evolutionary change in crops, both chronologically and geographically, through morphometric analysis.Highlights?Outline analysis reliably reflects known variations in grain shape between species, and differences due to charring.?More subtle differences in grain shape between different populations of the same species can be identified.?Evolutionary change in crops could potentially be tracked, chronologically and geographically, through morphometric analysis.]]>
机译:<![CDATA [ 抽象 在archaeobotany中的应用程序的应用有可能在考古遗址恢复的古代植物材料的定量鉴定潜力,由于暴露于热量,最常见的是通过炭化保存。本文使用几何形态化学,首先,探讨三种驯化谷物种类之间的晶粒形状的变化,einkorn(小麦单球场),emmer( triticum dicoccum )和大麦( vordeum vulgare ),两者在230和260℃下进行实验性炭化。结果表明,轮廓分析可靠地反映了在先前的实验工作中观察到的炭化而在物种和差异之间的已知变化,并且能够将物种区分开,在炭化之前和之后的近似完美的结果。已经建立了这一点,将相同的方法应用于相同物种的不同含义,这表明可以在非约束材料中鉴定emmer的三种不同谷物的emmer,并且至少两种不同的Mor型号即使在高达260°C的温度下搅拌后,也可以区分每个物种。这使得时间顺序和地理位置地跟踪作物进化变化的可能性,通过形态学分析。 亮点 大纲分析可靠地反映了物种之间的晶粒形状的已知变化,以及由于炭化引起的差异。 不同种群之间的晶粒形状的更细微差异可以识别。 ]]>

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