{"title":"伊朗西南部扎格罗斯盆地Interior Fars的阿普第阶-阿尔比阶过渡期的新浮游有孔虫记录:对南部较浅的新特提斯最新阿普第纪古地理的启示","authors":"Javad Sharifi , Mohammad Vahidinia , Atsushi Ando , Mohamad Hosein Mahmudy-Gharaie","doi":"10.1016/j.geobios.2023.05.005","DOIUrl":null,"url":null,"abstract":"<div><p><span>The Aptian–Albian (A–A) transition encompassed a critical timing in the evolution of Fars Platform (Zagros Basin, SW Iran), such that a number of previous studies on its proximal part (called “Coastal Fars”) illustrated platform recovery after sustained demise due to latest Aptian<span> maximum sea-level lowstand. So far, much less attention has been given to the distal part of the platform – “Interior Fars” – where the lack of proper geological age interpretations, in particular, has been limiting a full paleoenvironmental reconstruction of the southern shallower Neo-Tethys. In order to establish the chronostratigraphic framework of Interior Fars, this study presents a novel set of planktonic foraminiferal record for the A–A Kazhdumi Formation at the Saroie section. The identified fauna comprises nine species from four genera, all of which are reported for the first time from Fars Platform. The observed new bioevents are generally consistent with those of the proposed reference section at a deeper intrashelf setting (Tang-e-Maghar, Dezful Embayment), allowing for the establishment of a local upper Aptian–Lower </span></span>Albian<span><span> zonation and leading to adequate constraints on the local Aptian/Albian boundary and the timing of prominent black shale<span> deposition (possible “Jacob” equivalent). Based on this new Saroie chronostratigraphic scheme, it is evident that sedimentation across the A–A transition was maintained fully marine at the Saroie section, Interior Fars. This finding does not support the previous inference of extensive subaerial exposure of the entire Fars Platform at that time, thereby calling for a major revision of the published prevailing model for latest Aptian </span></span>paleogeography of this region. These new insights will facilitate better understanding of the Fars Platform evolution in the Zagros Basin as well as paleoenvironmental reconstructions along the southern Neo-Tethys.</span></p></div>","PeriodicalId":55116,"journal":{"name":"Geobios","volume":"78 ","pages":"Pages 49-62"},"PeriodicalIF":1.6000,"publicationDate":"2023-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"New planktonic foraminiferal record across the Aptian–Albian transition in Interior Fars, Zagros Basin, SW Iran: Implication for latest Aptian paleogeography along the southern shallower Neo-Tethys\",\"authors\":\"Javad Sharifi , Mohammad Vahidinia , Atsushi Ando , Mohamad Hosein Mahmudy-Gharaie\",\"doi\":\"10.1016/j.geobios.2023.05.005\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p><span>The Aptian–Albian (A–A) transition encompassed a critical timing in the evolution of Fars Platform (Zagros Basin, SW Iran), such that a number of previous studies on its proximal part (called “Coastal Fars”) illustrated platform recovery after sustained demise due to latest Aptian<span> maximum sea-level lowstand. So far, much less attention has been given to the distal part of the platform – “Interior Fars” – where the lack of proper geological age interpretations, in particular, has been limiting a full paleoenvironmental reconstruction of the southern shallower Neo-Tethys. In order to establish the chronostratigraphic framework of Interior Fars, this study presents a novel set of planktonic foraminiferal record for the A–A Kazhdumi Formation at the Saroie section. The identified fauna comprises nine species from four genera, all of which are reported for the first time from Fars Platform. The observed new bioevents are generally consistent with those of the proposed reference section at a deeper intrashelf setting (Tang-e-Maghar, Dezful Embayment), allowing for the establishment of a local upper Aptian–Lower </span></span>Albian<span><span> zonation and leading to adequate constraints on the local Aptian/Albian boundary and the timing of prominent black shale<span> deposition (possible “Jacob” equivalent). Based on this new Saroie chronostratigraphic scheme, it is evident that sedimentation across the A–A transition was maintained fully marine at the Saroie section, Interior Fars. This finding does not support the previous inference of extensive subaerial exposure of the entire Fars Platform at that time, thereby calling for a major revision of the published prevailing model for latest Aptian </span></span>paleogeography of this region. 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引用次数: 0
摘要
Aptian - albian (a- a)过渡包含了Fars台地(伊朗西南部Zagros盆地)演化的关键时刻,因此之前对其近端部分(称为“沿海Fars”)的许多研究表明,由于最新Aptian最高海平面低洼,台地在持续消亡后恢复。到目前为止,人们对台地的远端部分——“内法尔斯”——的关注要少得多,特别是在那里缺乏适当的地质年龄解释,限制了对南部较浅的新特提斯的全面古环境重建。为了建立内法尔斯的年代地层格架,本研究在Saroie剖面提出了一套新的a - a Kazhdumi组浮游有孔虫记录。鉴定区系包括4属9种,均为首次在法尔斯平台报道。观察到的新生物事件与在更深的陆架内背景(Tang-e-Maghar, Dezful Embayment)中提出的参考剖面的生物事件基本一致,允许建立局部上阿普提亚-下阿尔比亚带,并对局部阿普提亚/阿尔比亚边界和突出的黑色页岩沉积时间(可能相当于“Jacob”)进行充分的限制。根据这个新的Saroie年代地层方案,很明显,在法尔斯内陆的Saroie剖面,A-A过渡的沉积完全保持在海洋中。这一发现不支持以往关于当时整个法尔斯台地的广泛地面暴露的推断,因此呼吁对该地区最新阿普tian古地理的主流模式进行重大修订。这些新发现将有助于更好地理解扎格罗斯盆地法尔斯台地的演化,以及新特提斯南部古环境的重建。
New planktonic foraminiferal record across the Aptian–Albian transition in Interior Fars, Zagros Basin, SW Iran: Implication for latest Aptian paleogeography along the southern shallower Neo-Tethys
The Aptian–Albian (A–A) transition encompassed a critical timing in the evolution of Fars Platform (Zagros Basin, SW Iran), such that a number of previous studies on its proximal part (called “Coastal Fars”) illustrated platform recovery after sustained demise due to latest Aptian maximum sea-level lowstand. So far, much less attention has been given to the distal part of the platform – “Interior Fars” – where the lack of proper geological age interpretations, in particular, has been limiting a full paleoenvironmental reconstruction of the southern shallower Neo-Tethys. In order to establish the chronostratigraphic framework of Interior Fars, this study presents a novel set of planktonic foraminiferal record for the A–A Kazhdumi Formation at the Saroie section. The identified fauna comprises nine species from four genera, all of which are reported for the first time from Fars Platform. The observed new bioevents are generally consistent with those of the proposed reference section at a deeper intrashelf setting (Tang-e-Maghar, Dezful Embayment), allowing for the establishment of a local upper Aptian–Lower Albian zonation and leading to adequate constraints on the local Aptian/Albian boundary and the timing of prominent black shale deposition (possible “Jacob” equivalent). Based on this new Saroie chronostratigraphic scheme, it is evident that sedimentation across the A–A transition was maintained fully marine at the Saroie section, Interior Fars. This finding does not support the previous inference of extensive subaerial exposure of the entire Fars Platform at that time, thereby calling for a major revision of the published prevailing model for latest Aptian paleogeography of this region. These new insights will facilitate better understanding of the Fars Platform evolution in the Zagros Basin as well as paleoenvironmental reconstructions along the southern Neo-Tethys.
期刊介绍:
Geobios publishes bimonthly in English original peer-reviewed articles of international interest in any area of paleontology, paleobiology, paleoecology, paleobiogeography, (bio)stratigraphy and biogeochemistry. All taxonomic groups are treated, including microfossils, invertebrates, plants, vertebrates and ichnofossils.
Geobios welcomes descriptive papers based on original material (e.g. large Systematic Paleontology works), as well as more analytically and/or methodologically oriented papers, provided they offer strong and significant biochronological/biostratigraphical, paleobiogeographical, paleobiological and/or phylogenetic new insights and perspectices. A high priority level is given to synchronic and/or diachronic studies based on multi- or inter-disciplinary approaches mixing various fields of Earth and Life Sciences. Works based on extant data are also considered, provided they offer significant insights into geological-time studies.