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X-ray Synchrotron Microtomography of a silicified Jurassic Cheirolepidiaceae (Conifer) cone: histology and morphology of Pararaucaria collinsonae sp. nov.

机译:硅化的侏罗科(针叶树)锥的X射线同步辐射显微照相术:Pararaucaria collinsonae sp。的组织学和形态。十一月

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摘要

We document a new species of ovulate cone (Pararaucaria collinsonae) on the basis of silicified fossils from the Late Jurassic Purbeck Limestone Group of southern England (Tithonian Stage: ca. 145 million years). Our description principally relies on the anatomy of the ovuliferous scales, revealed through X-ray synchrotron microtomography (SRXMT) performed at the Diamond Light Source (UK). This study represents the first application of SRXMT to macro-scale silicified plant fossils, and demonstrates the significant advantages of this approach, which can resolve cellular structure over lab-based X-ray computed microtomography (XMT). The method enabled us to characterize tissues and precisely demarcate their boundaries, elucidating organ shape, and thus allowing an accurate assessment of affinities. The cones are broadly spherical (ca. 1.3 cm diameter), and are structured around a central axis with helically arranged bract/scale complexes, each of which bares a single ovule. A three-lobed ovuliferous scale and ovules enclosed within pocket-forming tissue, demonstrate an affinity with Cheirolepidiaceae. Details of vascular sclerenchyma bundles, integument structure, and the number and attachment of the ovules indicate greatest similarity to P. patagonica and P. carrii. This fossil develops our understanding of the dominant tree element of the Purbeck Fossil Forest, providing the first evidence for ovulate cheirolepidiaceous cones in Europe. Alongside recent discoveries in North America, this significantly extends the known palaeogeographic range of Pararaucaria, supporting a mid-palaeolatitudinal distribution in both Gondwana and Laurasia during the Late Jurassic. Palaeoclimatic interpretations derived from contemporaneous floras, climate sensitive sediments, and general circulation climate models indicate that Pararaucaria was a constituent of low diversity floras in semi-arid Mediterranean-type environments.
机译:我们根据英格兰南部晚期侏罗纪的Purbeck石灰岩群(Tithonian阶段:约1.45亿年)的硅化化石记录了一种新的排卵锥(Pararaucaria collinsonae)。我们的描述主要依赖于通过在钻石光源(英国)进行的X射线同步加速器显微照相术(SRXMT)揭示的卵巢鳞片的解剖结构。这项研究代表了SRXMT在大型硅化植物化石上的首次应用,并证明了该方法的显着优势,与基于实验室的X射线计算机断层摄影(XMT)相比,它可以解析细胞结构。该方法使我们能够表征组织并精确划定它们的边界,阐明器官的形状,从而实现对亲和力的准确评估。视锥大致为球形(直径约1.3厘米),并围绕中心轴结构,螺旋形排列的act片/鳞片复合物,每个复合物裸露单个胚珠。三叶卵形鳞片和胚珠包围在形成袋的组织内,表明与虎耳草科有亲和力。血管巩膜束,外皮结构以及胚珠的数量和附着的细节表明与巴氏假单胞菌和卡氏假单胞菌有最大的相似性。这种化石使我们对Purbeck化石森林的主要树木元素有了更深入的了解,为欧洲排卵期的蝶形锥体提供了第一个证据。除北美最近的发现外,这极大地扩展了已知的巴拉圭亚古地理范围,支持侏罗纪晚期冈瓦纳和劳拉西亚的中古纬度分布。从同时期植物群,对气候敏感的沉积物和一般环流气候模型得出的古气候解释表明,巴拉圭球菌属是半干旱地中海型环境中低多样性植物群的组成部分。

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