Depositional Environment and Ecological Response of Bioconstructions: A Case Study of Southern China (Guizhou Province) in Moscovian-Gzhelian.

IF 3.2 3区 生物学 Q1 BIOLOGY
Life-Basel Pub Date : 2024-09-11 DOI:10.3390/life14091150
Xiao Li, Enpu Gong, Yongli Zhang, Changqing Guan, Wentao Huang
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引用次数: 0

Abstract

From the late Carboniferous to the early Permian, multiple pulses of glaciation and deglaciation have been caused by the LPIA. The Pennsylvanian period experienced phases of recovery, proliferation, and decline, ultimately forming a reef system distinctly different from that of the Mississippian period. During the late Bashkirian to Moscovian, the metazoan reef experienced a limited resurgence, with reef predominantly formed by chaetetid developing in the United States, northern China, and Japan. During the Kasimovian to Gzhelian, the phylloid algal reef dominated the global reef systems. In the late Pennsylvanian, bioconstruction cases and paleoenvironmental proxies in southern Guizhou Province were studied to investigate the composition, recovery, and evolutionary processes of the bioconstructions as well as their response to environmental variations during this period. Several bioconstructions have been reported in the Lumazhai section of Houchang Town, Guizhou Province, southern China, from the Moscovian to the Gzhelian. The upper Carboniferous strata are well-preserved and continuously exposed. The continuous strata, abundant fossils, and diverse bioconstructions provide excellent research materials for exploring the mutual constraints between organisms and their environment. This study identified ten microfacies, whose vertical evolution indicated significant changes in the depositional environment related to relative sea-level fluctuations. Skeletal grains are widely present in these facies. Among them, foraminifera, algae, bryozoans, crinoids, and Tubiphytes are the most common and exhibit distinct distribution characteristics in various environments. Quantitative statistics, CCA and theoretical ecospace have been utilized to examine and interpret environmental impact factors. Quantitative analysis of their relative abundance and distribution patterns provides insights into the complex interactions between organisms and environmental factors. The relative abundances of different organisms and factors controlling their bioconstructions are influenced by relative sea-level changes. CCA analysis reveal that hydrodynamic conditions are the primary influencing factor. Variation trends in average tiering and motility reveal the characteristics of biological communities during environmental changes in phylloid algae and microbial bioconstructions. These bioconstructions are not directly correlated with changes in environmental factors, and the biological communities in phylloid algae mounds and biostromes exhibit similar organism compositions and ecological niches across different environments.

沉积环境与生物构造的生态响应:中国南方(贵州省) Moscovian-Gzhelian 个案研究。
从石炭纪晚期到二叠纪早期,LPIA 引发了多次冰川期和脱冰期。宾夕法尼亚期经历了恢复、增殖和衰退等阶段,最终形成了与密西西比期截然不同的珊瑚礁系统。在巴什基尔晚期至莫斯科期,元古宙珊瑚礁经历了有限的复苏,在美国、中国北部和日本主要由糠虾类(chaetetid)形成。在卡西莫维期至格切尔期,植物藻礁在全球珊瑚礁系统中占主导地位。通过对贵州省南部晚彭世文世生物构造案例和古环境代用资料的研究,探讨了这一时期生物构造的组成、恢复、演化过程及其对环境变化的响应。在中国南部贵州省后场镇鲁马寨地段,从莫斯科期到格氏期有多种生物构造的报道。上石炭统地层保存完好,连续出露。连续的地层、丰富的化石和多样的生物构造为探索生物与环境之间的相互制约关系提供了极好的研究材料。这项研究确定了十个微地层,其垂直演化表明沉积环境与相对海平面波动有关的重大变化。骨骼颗粒广泛存在于这些岩层中。其中,有孔虫、藻类、红浮游动物、棘皮动物和管水母最为常见,并在不同环境中呈现出不同的分布特征。定量统计、CCA 和理论生态空间被用来研究和解释环境影响因素。通过对其相对丰度和分布模式的定量分析,可以深入了解生物与环境因素之间复杂的相互作用。不同生物的相对丰度和控制其生物结构的因素受到海平面相对变化的影响。CCA 分析表明,水动力条件是主要的影响因素。平均分层和运动性的变化趋势揭示了环境变化过程中植物藻类和微生物生物构造的生物群落特征。这些生物构造与环境因素的变化并不直接相关,在不同的环境中,藻丘和生物穹隆中的生物群落表现出相似的生物组成和生态位。
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来源期刊
Life-Basel
Life-Basel Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
4.30
自引率
6.20%
发文量
1798
审稿时长
11 weeks
期刊介绍: Life (ISSN 2075-1729) is an international, peer-reviewed open access journal of scientific studies related to fundamental themes in Life Sciences, especially those concerned with the origins of life and evolution of biosystems. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers.
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