首页> 外文期刊>Geobiology >Grain trapping by filamentous cyanobacterial and algal mats: implications for stromatolite microfabrics through time
【24h】

Grain trapping by filamentous cyanobacterial and algal mats: implications for stromatolite microfabrics through time

机译:丝状蓝藻和藻类垫的谷物诱捕:通过时间对体托岩微制造的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Archean and Proterozoic stromatolites are sparry or fine-grained and finely laminated; coarse-grained stromatolites, such as many found in modern marine systems, do not appear until quite late in the fossil record. The cause of this textural change and its relevance to understanding the evolutionary history of stromatolites is unclear. Cyanobacteria are typically considered the dominant stromatolite builders through time, but studies demonstrating the trapping and binding abilities of cyanobacterial mats are limited. With this in mind, we conducted experiments to test the grain trapping and binding capabilities of filamentous cyanobacterial mats and trapping in larger filamentous algal mats in order to better understand grain size trends in stromatolites. Mats were cut into squares, inclined in saltwater tanks at angles from 0 to 75 degrees (approximating the angle of lamina in typical stromatolites), and grains of various sizes (fine sand, coarse sand, and fine pebbles) were delivered to their surface. Trapping of grains by the cyanobacterial mats depended strongly on (i) how far filaments protruded from the sediment surface, (ii) grain size, and (iii) the mat's incline angle. The cyanobacterial mats were much more effective at trapping fine grains beyond the abiotic slide angle than larger grains. In addition, the cyanobacterial mats actively bound grains of all sizes over time. In contrast, the much larger algal mats trapped medium and coarse grains at all angles. Our experiments suggest that (i) the presence of detrital grains beyond the abiotic slide angle can be considered a biosignature in ancient stromatolites where biogenicity is in question, and, (ii) where coarse grains are present within stromatolite laminae at angles beyond the abiotic angle of slide (e.g., most modern marine stromatolites), typical cyanobacterial-type mats are probably not solely responsible for the construction, giving insight into the evolution of stromatolite microfabrics through time.
机译:Archean和Norlozoic Stromatolites是一种凝固物或细粒度和精细层压;在现代海洋系统中发现的许多粗粒粒细胞盆,才能出现在化石记录中。这种质量变化的原因及其与理解跨罗致抗罗纹岩进化史的相关性尚不清楚。 Cyanobacteria通常被认为是通过时间的显性体托岩制造商,但是有限地证明捕获和结合能力的研究是有限的。考虑到这一点,我们进行了实验,以测试丝状蓝藻垫的晶粒捕获和结合能力,并在较大的丝状藻类中捕获,以便更好地了解粒抗原的晶粒尺寸趋势。将垫切成正方形,以0至75度的角度倾斜(近似旋转胶质抗原的角度),并且各种尺寸(细砂,粗砂和细鹅卵石)的颗粒递送到它们的表面。用蓝藻垫捕获谷物强烈依赖于(i)从沉积物表面,(ii)晶粒尺寸和(iii)垫倾斜角度有多远长丝。在捕获超出非生物滑动角度的粒细菌垫上比较大的晶粒更有效。此外,蓝藻垫随着时间的推移主动地束缚所有尺寸的谷物。相比之下,较大的藻类垫在所有角度捕获介质和粗颗粒。我们的实验表明,(i)超出非生物滑角的滴定颗粒的存在可以被认为是古代胚醇的生物血清属性,其中生物是存在的,并且(ii)在基于非生物角度的角度地存在粗颗粒的粗晶粒中幻灯片(例如,大多数现代海洋跨托孔),典型的蓝藻型垫子可能不仅对施工仅负责,介绍了通过时间的时间探讨了粒状微观植物的演变。

著录项

  • 来源
    《Geobiology》 |2015年第5期|共15页
  • 作者

  • 作者单位
  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
  • 关键词

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