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对约 3 亿年前古生代湖泊中繁盛的古老嗜盐碱性绿藻的古老性的新限制。

A new constraint on the antiquity of ancient haloalkaliphilic green algae that flourished in a ca. 300 Ma Paleozoic lake.

机构信息

MOE Key Laboratory of Surficial Geochemistry, School of Earth Sciences and Engineering, Nanjing University, Nanjing, China.

Department of Earth and Planetary Sciences, University of California, Riverside, CA, USA.

出版信息

Geobiology. 2021 Mar;19(2):147-161. doi: 10.1111/gbi.12423. Epub 2020 Dec 16.

Abstract

It is established that green algae and land plants progressively colonized freshwater and terrestrial habitats throughout the Paleozoic Era, but little is known about the ecology of Paleozoic saline lakes. Here, we report lipid biomarker and petrographic evidence for the occurrence of a green alga as a major primary producer in a late Paleozoic alkaline lake (Fengcheng Formation; 309-292 Ma). A persistently saline and alkaline lacustrine setting is supported by mineralogical and lipid biomarker evidence alongside extremely enriched δ N values (+16 to +24‰) for the lake depocenter. The prominence of C and C steroids, co-occurring with abundant carotene-derived accessory pigment markers in these ancient rocks, is suggestive of prolific primary production and elevated source inputs from haloalkaliphilic green algae. The high C /C -sterane ratios (0.78-1.29) are significantly higher than the typical marine value reported for late Paleozoic rocks (<0.5) and thus are associated with certain groups of chlorophytes. Adaptation to such extreme lacustrine environments, aided by enhanced biosynthesis of certain cell membrane lipids, likely played an important role in the evolution and physiological development of ancient green algae.

摘要

现已证实,绿藻和陆生植物在整个古生代时期逐渐占领了淡水和陆地栖息地,但人们对古生代咸水湖的生态知之甚少。在这里,我们报告了脂质生物标志物和岩相学证据,证明在晚古生代碱性湖中(丰城组;309-292 Ma),绿藻是一种主要的初级生产者。矿物学和脂质生物标志物证据以及湖盆中心极高的δ N 值(+16 至+24‰)表明,该湖泊具有持续的咸碱性环境。这些古老岩石中存在丰富的 C 和 C 甾醇,与大量类胡萝卜素衍生的辅助色素标记物共存,表明存在丰富的初级生产和来自嗜盐嗜碱绿藻的大量源输入。高 C /C -甾烷比(0.78-1.29)明显高于报道的晚古生代岩石的典型海洋值(<0.5),因此与某些绿藻群有关。在增强某些细胞膜脂质生物合成的帮助下,对这种极端湖泊环境的适应可能在古代绿藻的进化和生理发育中发挥了重要作用。

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