首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >The oxygen isotopic compositions of silica phytoliths and plant water in grasses: Implications for the study of paleoclimate
【24h】

The oxygen isotopic compositions of silica phytoliths and plant water in grasses: Implications for the study of paleoclimate

机译:草中二氧化硅硅藻土和植物水中的氧同位素组成:对古气候研究的意义

获取原文
获取原文并翻译 | 示例
           

摘要

Information about climatic conditions during plant growth is preserved by the oxygen-isotope composition of biogenic silica (phytoliths) deposited in grasses. The oxygen-isotope composition of phytolith silica is dependent on soil-water delta(18)O values, relative humidity and evapotranspiration, and temperature during plant growth. Phytolith and plant-water delta(18)O values for C3 (A. breviligulata) and C4 (C. longifolia) grasses from natural and greenhouse sites in southwestern Ontario were used to compare the isotopic fractionation between biogenic silica and water in various parts of these living plants. For non or weakly transpiring tissues (rhizomes, stems, sheaths) in both grass species, the Delta(18)O(silica-plant water) remained constant at similar to 34 parts per thousand, and the delta(18)O and delta D values of plant water collected from pre-dawn and mid-day samplings showed little variation. These plant waters were only slightly enriched in O-18 and D relative to water provided to the grasses. Isotopic temperatures calculated from the silica and plant-water isotopic data matched measured growing temperatures for the region. By comparison, the upper leaf water was extremely enriched in oxygen-18 and deuterium at maximum rates of transpiration relative to water from non-transpiring tissues, as were the calculated, steady-state values for leaf-water delta(18)O and delta D. Silica produced in the transpiring tissues (leaf, inflorescence) has higher delta(18)O values than silica from non-transpiring tissues, but the enrichment is modest compared to upper leaf water under mid-day conditions. Leaf phytoliths have formed from plant water typical of average conditions in the lower leaf, where the extreme O-18-enrichment is not encountered. C. longifolia was also collected from Alberta and Nebraska, where growing conditions an different from southwestern Ontario. Phytoliths at all three sites have a similar pattern of delta(18)O values within the plants, but the isotopic separation between leaf and stem silica increases from 4 to 8 parts per thousand as average relative humidity decreases. The difference between actual growing temperature and that calculated using measured delta(18)O values for stem silica and local meteoric water became progressively larger as relative humidity decreased, likely because of evaporative O-18-enrichment of soil water. Such effects are most pronounced in arid environments and pertinent in grasslands where much of the active rooting zone can be situated at the shallower depths most affected by the O-18-enrichment of soil water. Copyright (C) 2000 Elsevier Science Ltd. [References: 82]
机译:有关植物生长过程中气候条件的信息可通过沉积在草丛中的生物硅(植物石)的氧同位素组成来保存。植硅石二氧化硅的氧同位素组成取决于土壤-水三角洲(18)O值,相对湿度和蒸散量以及植物生长期间的温度。利用安大略西南部天然和温室地点的C3(A. breviligulata)和C4(C. longifolia)草的植物体和植物水δ(18)O值,比较了安大略省西南部不同地区生物硅和水之间的同位素分馏这些有生命的植物。对于两种草种中非或弱蒸腾的组织(根茎,茎,鞘),Delta(18)O(二氧化硅植物水)保持恒定,接近千分之三十四,delta(18)O和delta D从黎明前和午间采样收集的植物水的值几乎没有变化。相对于提供给草的水,这些植物水仅富含O-18和D。根据二氧化硅和植物水同位素数据计算出的同位素温度与该地区测得的生长温度相匹配。相比之下,相对于来自非蒸腾组织的水,上部叶水以最大的蒸腾速率最大程度地富集了氧18和氘,以及计算出的叶水delta(18)O和delta的稳态值也是如此D.蒸腾的组织(叶片,花序)中产生的二氧化硅比非蒸腾的组织中的二氧化硅具有更高的delta(18)O值,但是与中午条件下的上部叶片水相比,其富集程度较小。叶片叶石层是由植物水形成的,该植物水通常处于下部叶片的平均条件下,而下部叶片未遇到极端的O-18富集。 C. longifolia也是从阿尔伯塔省和内布拉斯加州采集的,那里的生长条件不同于西南安大略省。在这三个位置的植硅石在植物中具有相似的delta(18)O值模式,但是随着平均相对湿度的降低,叶和茎二氧化硅之间的同位素分离从千分之4增加到千分之八。随着相对湿度的降低,实际生长温度与使用干二氧化硅和局部陨石的测得的delta(18)O值计算得出的温度之间的差异会逐渐增大,这可能是由于土壤中O-18的蒸发富集所致。这种影响在干旱环境中最为明显,而在草原上则是最重要的,在草原上许多活跃的生根区可能位于最受土壤O-18富集影响的较浅深度。版权所有(C)2000 Elsevier Science Ltd. [引用:82]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号