研究员
王军
职 务: 所长
职 称: 研究员
学 科: 地层古生物学
电子邮件: jun.wang@nigpas.ac.cn
通讯地址: 南京市北京东路39号
邮政编码: 210008
个人简历

中国科学院南京地质古生物研究所研究员,博士生导师。从事石炭-二叠纪陆相地层、植物分类与演化、古生态学和古气候学等相关领域的研究。现任中国科学院南京地质古生物研究所所长,学术委员会委员,中国科学院大学南京学院副院长;兼任国际古植物学会副主席,中国古生物学会理事长,江苏省古生物学会理事长,江苏省地质学会副理事长,中国古生物学会古植物学分会理事,国家古生物化石保护专家委员会委员,国际期刊《Palaeoworld》编委。

教育、工作经历

2024–现在:中国科学院南京地质古生物研究所 所长

2018.092023.12:中国科学院南京地质古生物研究所 副所长

2008.012018.08:中国科学院南京地质古生物研究所 古植物与孢粉研究室 主任

2006.102007.10 德国明斯特大学地球与环境科学系 博士后

2006.09–现在:中国科学院南京地质古生物研究所 博士生导师

2004.022004.08:美国宾夕法尼亚大学地球与环境科学系 高级学者

2002.032002.04:美国宾夕法尼亚大学地球与环境科学系 访问合作

2001.01–现在:中国科学院南京地质古生物研究所 研究员

1999.102000.12:中国科学院南京地质古生物研究所 副研究员

1997.071999.09:中国科学院南京地质古生物研究所 博士后,合作导师:李星学院士

1994.091997.06:西北大学,地质系,获得古生物与地层学博士学位

1991.091994.06:兰州大学,地质系,获得古生物与地层学硕士学位

1987.091991.06:兰州大学,地质系,获得地质学学士学位

研究方向

研究领域:

13亿年前植物庞贝的发现和复原研究 

受保存条件所限,迄今人们所看到的地球历史上的远古森林复原图都存在巨大的时空误差,并非实际复原,而是所谓概念性复原。对远古森林的实际复原依赖于原位埋藏化石森林的发现。近年来,王军研究员主持的课题组在内蒙古乌达煤田发现了一距今约三亿年前被火山喷发所埋藏的成煤沼泽森林,其保存方式与庞贝城颇为相似,可以说是地球生物界的一个植物庞贝。相关研究采用类似于现代考古的埋藏学方法,实现了世界上迄今为止对地史时期陆地景观的、最大面积的植被实际复原研究,成功绘制了远古森林的实际复原图。植物庞贝群落结构保存完美,人们能够鉴定森林的组成类群、树木密度、分层结构、生态梯度等等,从而进行精确的古植物学及古生态学研究,检测现代生态学的相关法则是否在三亿年前既已存在。同时,由于该植物群生存于地球冰室-温室过渡时期,此项研究对于探讨现代植物生态系统演变趋势也具有重要参考价值。相关研究论文发表在2012327PNAS,10913):4927-4932上。PNAS杂志同期配置出版了由美国Smithsonian Institution BashforthDiMichele博士撰写的题为由二叠纪成煤植被窥探晚古生代生态学Permian Coal Forest offers a glimpse of late Paleozoic ecology”对本项研究进行了专题评述,称赞类似这样的时间尺度为一瞬间的地史时期的植物群使得人们能够象现代生态学家那样研究远古森林的生态学规律。同年511日出版的美国《Science》杂志以火山灰中浮现远古陆地Primeval Land Rises From the Ashes——为题,在新闻聚焦栏目报导了植物庞贝的研究成果。围绕中国乌达天堂的遗失和发现与时间赛跑等主题,记者用流畅诙谐的语言,从大众科普的角度再现了课题组对植物庞贝艰苦漫长的探索和抢救性的研究保护过程。

在近些年植物庞贝的挖掘中,王军研究员团队还发现地质历史上第二例植物缠绕化石,将将植物缠绕习性往前追溯至晚古生代。依据植物形态和解剖特征,该缠绕植物推测为一种回卷蕨类的真蕨植物。不同于现生缠绕植物偏爱右旋,当前缠绕植物显示出稳定的左旋缠绕习性。有意思的是,宿主植物也是一种华丽美木目的种子蕨攀爬植物。这种双重攀爬的现象进一步揭示了早二叠世森林群落生态的复杂性。该项研究发表在20191119Current Biology,29(22):R1172-R1173上。

2) 植物地层学研究——我国晚古生代植物大化石组合序列划分,及植物群演替与晚古生代冰期盛衰的对应关系探索

中国石炭-二叠纪植物大化石组合序列从上世纪60年代确立以来一直沿用至今。但是,这种组合序列的确立严重受到岩石地层划分的影响,由此导致植物组合划分总是与岩石底层单元界限一致,人们总是把一个岩石地层单元内所含化石植物群归结为一个独立的植物化石组合。这显然不符合生物地层学原理,也阻碍了对植物群演替与气候环境背景响应模式的深入探讨。王军研究员自博士学位论文研究工作开始,在渭北煤田尝试性地进行严格意义上的植物生物地层学工作 (Wang et al.,2000,2005,2010;沈光隆等,2000)。将植物地层带依据化石植物的首次与末次出现层位、出现频率、富集程度、叶形演变状况进行划分,并把化石属种在岩石地层中的位置使用了层位系数进行定量描述,实现了化石层位的定量计算。所得化石带的界限与岩石地层单元界限不一致,同时也与已知华北各地植物化石组合序列迥异。这一研究实例证明我国华北非海相地层植物化石组合序列的生物地层学意义亟待完善,并进一步指明我国非海相地层生物地层学研究的努力方向。相关成果发表于《第3届全国地层会议论文集》、《古生物学报》、美国Bulletin of New Mexico Museum of Natural History(《新墨西哥州自然历史博物馆通讯》)、International Journal of Coal Geology《国际煤田地质学报》。基于上述探讨的结果,把渭北煤田的实践结合华北其它区域已有的研究成果,提出了界限不同于岩石地层单元界线的植物大化石组合序列,并结合迄今所有已知信息提出了最新的华北非海相地层与国际地质年代表的对应关系。在此基础上,尝试性地将植物群的演替状况与晚古生代冰期盛衰相互对比,鉴别出了若干次植物群组分上的更替与冰期阶段性的对应,初步反映了植物群冰期气候之间的响应关系。值得指出的是,石炭-二叠纪大冰期期间及其后的程度不等的温室效应对植被的影响,对于研究现代温室效应对植被的影响,比地史时期任何其他时段的类似事件都具有可比性。因此,探讨晚古生代植被对石炭-二叠纪大冰期期间及其后发生的温室效应的响应模式,对探讨现代地球温室效应下植被的响应性变化具有重要的现实意义。

进一步地,除了要考虑将独立岩层中的植物化石视作一个组合,还要全面分析岩层所代表的沉积环境,植物化石是原地埋藏还是经历搬运,如果经历搬运,是单来源还是多来源,原始生长环境又是如何等诸多问题,这就将生物地层进一步深化到生态地层的研究范畴。近些年来,学界已认识到华北太原组岩石地层跨越石炭二叠纪界限,一般将太原组的中、上两段视为下二叠统。然而,来自内蒙古乌达煤田植物庞贝锆石定年的证据显示该地区的太原组顶部位于石炭二叠纪界限附近(Schmitz et al.,2020),植物化石组合也可对比到欧美同时期的植物群(Wang et al.,2013)。这表明华北板块太原组地层在石炭-二叠纪是穿时分布的。此外,王军研究员团队在植物庞贝岩层之上的6号煤层顶板发现有大量压印植物化石。与植物庞贝所代表的成煤沼泽森林不同,顶板中的植物化石组合是经异地搬运堆积于湖泊周边。这个植物化石组合中存在AutuniaGigantonocleaYuania等多个属级分子的异常早现现象(Wang et al.,2004,2014a;Zhou et al.,2018),显示了植物地层学亟待开展生态地层学的相关研究工作(Zhou et al.,2017)。

3)系统古生物学研究——瓢叶目植物的分类、起源和演化研究

作为对华夏植物群的系统古生物学研究,王军研究员重点对瓢叶目植物开展了系统深入的研究,先后发表论文18篇,其中16篇为SCI检索刊物论文,确立了自己在该研究领域的研究特色。该研究以古植物形态学和解剖学研究为主攻方向,包括瓢叶目植物的生物学特征、地层学及演化和古生态学等方面,研究成果被最新出版的国际权威学者撰写的古植物学教科书(Taylor et al.,2009)所引用。相关成果简述如下:

(1) 解决了一个长期以来中国和美国学者对瓢叶目植物一个属的鉴定命名争议。在检查原始标本的基础上,厘定了美国属名Russellites Mamay 1968 是中国属名Yuania Sze的晚出异名。(Wang and Chaney,Taxon,2010)。

(2) 研究命名瓢叶目整体植物Paratingia wudensis Wang et al. (Wang et al.,American Journal of Botany,2009)。描述第二个瓢叶目整体植物联合齿叶Tingia unita,证明这类植物的生态型为小型乔木,并可生长在成煤沼泽环境。(王军,科学通报,2006;Wang Jun,Chinese Science Bulletin,2006;Wang et al.,Review of Palaeobotany and Palynology,2020)。

(3) 研究报道内蒙古乌达早二叠世4个连续保存的植物群落。其中的成煤植物群中发育了瓢叶目植物Paratingia Tingia 新种,证明瓢叶目植物可以生长在低湿地、甚至成煤沼泽植物群。(王军等,古生物学报,2004;Pfefferkorn and Wang,International Journal of Coal Geology,2007;Palaeogeography,Palaeoclimatology,Palaeoecology,2016;Wang et al.,Chinese Science Bulletin,2014b)

(4) 描述命名渭北煤田下石盒子组韩城盘穗Discinites hanchengsis Wang et Shen。以往华夏植物群中没有发现过成熟的盘穗的孢子囊穗的原位孢子,第一次揭示了从原位孢子特征来看华夏和欧美植物群中瓢叶目的异同。(Wang and Shen,Review of Palaeobotany and Palynology,2000)。根据伴生状况及埋藏学角度推测斜羽叶Plagiozamites的生殖器官是球果而非种子(Wang,2008,Global Geology)。来自贵州宣威组的化石材料则揭示伴生的球果具双性孢子(Wang et al.,American Journal of Botany,2017)。

(5) 命名新种Discinites wudensis sp. nov. Yuania wudensis sp. nov.,并运用古植物埋葬学的方法论,认定营养器官和繁殖器官的联生关系。这为整体植物重建取得了突破性进展,也为最终解决分类问题积累了重要信息。(Wang et al.,International Journal of Plant Sciences,2004)

(6) 研究描述目前唯一的瓢叶目矿化繁殖器官化石——我国宁夏石嘴山早二叠世矿化的中华盘穗Discinites sinensis。文章发表于《科学通报》中英文。(王军,科学通报,1999Wang Jun,Chinese Sicence Bulletion,2000)。研究人员详细解剖了Discinites sinensis Wang 的孢子囊。它由囊壁、绒毡层和孢子团构成。孢子囊的形态和解剖特征的深入了解,进一步显示了瓢叶目植物的特殊性。(Wang Jun,International Journal of Plant Sciences,2005)Discinites sinensis Wang极少部分的原位小孢子具有孔盖,这在已知的分散孢子和原位孢子中均无记录。它的发现本身就进一步印证了瓢叶目植物的特殊性。(Wang et al,Review of Palaeobotany and Palynology,2004)。通过对中华盘穗Discinites sinensis Wang部分原位小孢子孔盖进一步深入细致的观察研究,认为它们可能是昆虫咬食行为所致,为探索二叠纪动植物间生态关系提供了重要信息。(Wang et al,Review of Palaeobotany and Palynology,2009)


此外,对华夏植物群的系统古生物学研究还包括建立了一类新的种子植物髻籽羊齿科Nystroemiaceae Wang and Pfefferkorn. 这类植物具有非常先进的叶性器官,与中生代以来常见的类似于银杏叶的阔叶,但是其繁殖器官胚珠、种子的结构十分原始,类似者常见于早石炭世-晚泥盆世。这样在进化程度上相差巨大的营养和繁殖器官构成一种植物有机体,恰恰证明了植物进化历程的复杂性。在晚古生代植物群中,这是迄今基于对华夏植物群的研究所确立的,除大羽羊齿目(Gigantopteridales)之外的另一个科级分类单位。该项成果发表于英国《皇家学会会刊B》。

承担科研项目情况

1) 国家自然科学基金重点项目,中国石炭二叠纪植物古地理:过程、机制与启示,2023.01–2027.12,主持。

2) 现代古生物学和地层学国家重点实验室自主课题,中国植物庞贝的系统分类学深入研究, 2020.07–2024.06,主持。

3) 中国科学院战略性先导科技专项(B类),关键地史时期生物与环境演变过程及其机制/晚古生代至早中生代陆地生态系统演化研究,2018.06–2023.05,共同主持。

4) 中国科学院战略性先导科技专项(B类),二叠纪陆地生态系统崩溃与火山活动,2016.06–2021.05,主持。

5) 国家自然科学基金重点项目,中国植物庞贝”–––内蒙古乌达早二叠世成煤沼泽植物群的群落生态,2016.01–2020.12,主持。 


代表论著

近五年发表的论文:

1. Sun, W.J., Zhou, W.M., Wu, Y.F., Pšenička, J., Hilton, J., Wang, J.*, 2025. Scolecopteris oxydonta sp. nov., a new marattialean fern from the early Permian Wuda Tuff Flora. Review of Palaeobotany and Palynology, 332, 105231.

2. Li, D.D, Hilton, J., Sun, W.J., Zhou, W.M., Wan, M.L., Bek, J., Pšenička, J., Wang, J.*,2025. Whole-Plant Reconstruction of Scolecopteris libera (Marattiales, Psaroniaceae) from the Early Permian of China. International Journal of Plant Sciences, 186(2), 127–147.

3. D'Antonio, M.P., Breasley, C.M., Pfefferkorn, H.W., Wang, J., Boyce, C.K., 2024. Stigmaria: on the substrate before in the substrate. Palaeoworld, https://doi.org/10.1016/j.palwor.2023.07.005.

4. Jiang, K.G., Wang, K.Y., Wang, J., Wan, M.L., 2024. Protocupressinoxylon baii sp. nov., a gymnospermous fossil trunk from the Upper Shihhotse Formation (Permian) of Yangquan City, Shanxi Province, North China. Review of Palaeobotany and Palynology, 325, 105110.

5. Li, F.Y., Feng, Z., Pšenička, J., Wang, J.,Zhou, W.M.,2024. Arthropod coprolites and wound reaction in the late Paleozoic climbing fern Hansopteris. Palaeoentomology, 7(5), 628-637.

6. Wan, M.L., Li, D.D., Wan, S., Yang, W., Zhou, W.M., Wang, K.Y., Jiang, K.G.,Wang, J. 2024. Frond characteristics of Cyrillopteris (ex. Odontopteris) orbicularis (Halle) comb. et emend. nov.: New evidence from the Permian Upper Shihezi (Upper Shihhotse) Formation of North China. Review of Palaeobotany and Palynology, 324, 105092.

7. Wang, K.Y., Huang, X., Yang, W., Wang, J., Wan, M.L., 2024. First record of plant–plant facilitative interaction from the Moscovian (Pennsylvanian, upper Carboniferous) of North China. Palaeoworld, 33.

8. Zhou, W.M., Pšenička, J., Hilton, J., Wang, J. 2024. Discovery of the enigmatic taeniopterid plant Ilfeldia from the lower Permian of North China and its palaeophytogeographical implications. Historical Biology, 1-8.

9. Zhou, W.M., Pšenička, J., Frojdova, J.V., Wang, J., Wan, M.L., Feng, Z., 2023. Two anachoropterid fern rachises from the in situ volcanic ash of the Whetstone Horizon (Kladno Formation, Pennsylvanian), Radnice Basin, Czech Republic. Palaeoworld,33, 341-362.

10. 高壮, 周卫明, 万明礼, 王军*, 2024. 内蒙古乌达煤田上石炭统世太原组植物群落研究. 古生物学报, 63(4), 444-467.

11. 吴怡菲, 李丹丹, 孙文俊, 张宜, 王军*, 2024. 厚脉栉羊齿Pecopteris lativenosa Halle emend. Li et al. 的羽叶复原. 古生物学报, 63(3), 354-371.

12. Bek, J., Pšenička, J., Drabkova, J., Zhou, W.M., Wang, J., 2023. Thomasites gen. nov. a new herbaceous lycophyte and its spores from late Duckmantian of the Radnice Basin, Czech Republic and palynological grouping of Palaeozoic herbaceous lycophytes. Review of Palaeobotany and Palynology, 310, 104842.

13. Li, D.D., Wan, M.L., Liu, L., Hilton, J., Wu, Y.F., Wang, J.*, 2023. A pioneering riparian community dominated by Nystroemiaceae gymnosperms from the Guadalupian (middle Permian) of China. Review of Palaeobotany and Palynology, 316: 104918

14. Pšenička, J., Frojdova, J.V., Bek, J., Zodrow, E.L., Zhou, W.M., Wang, J., Li, D.D., Feng, Z., Guo, Y., Zhou, Y., 2023. A new marattialean fern Diplazites campbellii sp. nov. and its in situ spores from the Pennsylvanian of the Sydney Coalfield, Nova Scotia, Canada. Review of Palaeobotany and Palynology, 312, 104850.

15. Wang, K.Y., Huang, X., Yang, W., Wang, J., Wan, M.L.*, 2023. A new gymnospermous stem from the Moscovian (Carboniferous) of North China, and its palaeoecological significance for the Cathaysian Flora at the early evolutionary stage. Review of Palaeobotany and Palynology, 311, 104858.

16. Yang, Y., Wang, S.J., Wang, J.*, 2023. Stem anatomy confirms Tingia unita is a progymnosperm. Biology, 12(4), 494. doi: 10.3390/biology12040494.

17. Zhou, W.M., Pšenička, J., Bek, J., Libertin, M., Wang, S., Wang, J., 2023. A new species of Botryopteridium Doweld from the early Permian Wuda Tuff Flora and its evolutionary significance. Review of Palaeobotany and Palynology, 311, 104849.

18. Zhou, W.M., He, X.Y., Wang, S.J., Pšenička, J., Roßler, R., Rothwell, G.W., Wang, J., 2023. (3005) Proposal to conserve the name Botryopteris Renault (fossil Pteridophyta) against Botryopteris C. Presl (Ophioglossaceae). Taxon, 72(6), 1377–1379.

19. Chen, B.Y., Wan, M.L., Zhou, W.M., Wang, S.J., Wang, J.*, 2022. Anatomy of Stigmaria asiatica Jongmans et Gothan from the Asselian (lowermost Permian) of Wuda Coalfield, Inner Mongolia, North China. Palaeoworld, 31(2), 311–323.

20. D’Antonio, M.P., Boyce, C.K., Zhou, W.M., Pfefferkorn, H.W., Wang, J.*, 2022. Primary tissues dominated ground–level trunk diameter in Sigillaria: evidence from the Wuda Tuff, Inner Mongolia. Journal of the Geological Society, 179(2), gs2021–021.

21. Li, D.D., Zhou, W.M., Wan, M.L., Wang, S.J., Wang, J.*, 2022. Leaf scar and petiole anatomy reveal Pecopteris lativenosa Halle is a marattialean fern. Geobios.72: 37–53.

22. Pšenička, J., Zhou, W.M., Boyce, C.K., Frojdova, J. V., Bek, J., Oplustil, S., Wang, J.*, 2022. Two new leptosporangiate ferns from in situ volcanic ash of the Whetstone Horizon (Kladno Formation, Pennsylvanian), Pilsen Basin, Czech Republic. Review of Palaeobotany and Palynology, 299, 104608.

23. Shen, B.H., Shen, S.Z., Wu, Q., Zhang, S.C., Zhang, B., Wang, X.D., Hou,Z.S., Yuan, D.X., Zhang, Y.C., Liu, F., Liu, J., Zhang, H., Shi, Y.K., Wang, J., Feng, Z., 2022. Carboniferous and Permian integrative stratigraphy and timescale of North China Block. Science China Earth Sciences, 65(6), 983–1011.

24. Wang, K.Y., Yang, W., Li, D.D., Wang, J., Wan, M.L.*, 2022. Anatomically preserved cordaitalean trees from the Pennsylvanian of Yangquan City, Shanxi Province, and their implication for a perhumid climate in North China Block. Palaeoworld, 31(2): 294–310.

25. Zhang, B., Li, D.D., Wan, M.L., Zhou, W.M., Pšenička, J., Bek, J., Wang, J.*, 2022. A new species of Scolecopteris (Marattiales, Psaroniaceae) from the early Permian Wuda Tuff Flora. Review of Palaeobotany and Palynology, 304: 104717.

26. Zhou, W.M., Wan, M.L., Pšenička, J., Wang, J.*, 2022.  Discovery of coprolites in an Early Permian fern mesophyll. Palaeoentomology, 5(1), 001–005.

27. Zhou, W.M., Li, D.D., Pšenička, J., Boyce, C.K., Wang, S.J., Wang, J.*, 2022. Diodonopteris virgulata sp. nov., a climbing fern from the early Permian Wuda Tuff Flora and its paleoecology. Review of Palaeobotany and Palynology, 104699.

28. Bek, J., Wang, J.*, 2021. A comparative study on in situ spores of some Paleozoic noeggerathialeans and their implications for dispersed spore assemblages. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2021.104379.

29. Blomenkemper, P., Baumer, R., Backer, M., Abu Hamad, A., Wang, J., Kerp, H., Bomfleur, B., 2021. Bennettitalean leaves from the Permian of equatorial Pangea—the early radiation of an iconic Mesozoic gymnosperm group. Frontiers in Earth Science, 9, 162.

30. Chen, C., Wei, H.B., Wan, S., Wang, J., Wan, M.L., 2021. Mesofossils with noeggerathialean affinity based on epidermal characteristics from the Mississippian (lower Carboniferous) of Gansu Province, northwestern China. Review of Palaeobotany and Palynology, 290.

31. D'Antonio, M.P.B., Boyce, C.K., Wang, J.*, 2021. Two new species of Sigillaria Brongniart from the Wuda Tuff (Asselian: Inner Mongolia, China) and their implications for lepidodendrid life history reconstruction. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104203.

32. Frojdova, J.V., Wang, J., Pšenička, J., Bek, J., Oplustil, S., Libertin, M., 2021. A new leptosporangiate fern Oligosporangiopteris zhongxiangii gen. and sp. nov. from the lowermost Permian of Inner Mongolia, China–morphology, anatomy and reproductive organs. Review of Palaeobotany and Palynology, 294, 104479.

33. He, X.Z., Zhou, W.M., Li, D.D., Wang, S.J., Hilton, J., Wang, J.*, 2021. A 298–million–year–old gleicheniaceous fern from China. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104355.

34. Feng, Z.*, Wang, J., Zhou, W.M., Wan, M.L., Pšenička, J., 2021. Plant–insect interactions in the early Permian Wuda Tuff Flora, North China. Review of Palaeobotany and Palynology, 294, 104269.

35. Libertin, M., Bek, J., Wang, J., Oplustil, S., Pšenička, J., Frojdova, J.V., 2021. New data about three sphenophylls and their spores from the volcanic tuff of Wuda, Taiyuan Formation, earliest Permian, China. Review of Palaeobotany and Palynology, 294, 104484.

36. Liu, L., Pšenička, J., Bek, J., Wan, M. L., Pfefferkorn, H. W., Wang, J.*, 2021. A whole calamitacean plant Palaeostachya guanglongii from the Asselian (Permian) Taiyuan Formation in the Wuda Coalfield, Inner Mongolia, China. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104245.

37. Oplustil, S., Wang, J.*, Pfefferkorn, H.W., Pšenička, J., Bek, J., Libertin, M., Wan, M.L., He, X.Z., Yan, M.X., Wei, H.B., Votočkova Frojdova, J., 2021. T0 Early Permian coal–forest preserved in situ in volcanic ash bed in the Wuda Coalfield, Inner Mongolia, China. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104347.

38. Pšenička, J., Wang, J.*, Bek, J., Pfefferkorn, H. W., Oplustil, S., Zhou, W., Libertin, M., 2021. A zygopterid fern with fertile and vegetative parts in anatomical and compression preservation from the earliest Permian of Inner Mongolia, China. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2021.104382.

39. Schmitz, M.D., Pfefferkorn, H.W., Shen, S.Z., Wang, J.*, 2021. A volcanic tuff near the Carboniferous–Permian boundary, Taiyuan Formation, North China: Radioisotopic dating and global correlation. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104244.

40. Wan, M.L., Sun, W.J., Bek, J., Liu, F., Hill, C., Wang, J.*, 2021. Scolecopteris minuta sp. nov., a marattialean fern from the early Permian Wuda Tuff Flora of Inner Mongolia, China. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104246.

41. Wan, M.L., Yang, W., Wan, S., Wang, J., 2021. Wildfires in the Early Triassic of northeastern Pangaea: Evidence from fossil charcoal in the Bogda Mountains, northwestern China. Palaeoworld,10.1016/j.palwor.2021.07.002.

42. Wan, M.L., Yang, W., Wang, K.Y., Liu, L., Wang, J., 2021. Zhuotingoxylon liaoi gen. et sp. nov., a silicified coniferous trunk from the Changhsingian (Permian) of southern Bogda Mountains, northwestern China. Geological Journal. https://doi.org/10.1002/gj.4189.

43. Wang, J.*, Hilton, J., Pfefferkorn, H. W., Wang, S., Zhang, Y., Bek, J., Dilcher, D. 2021. Ancient noeggerathialean reveals the seed plant sister group diversified alongside the primary seed plant radiation. Proceedings of the National Academy of Sciences, 118(11).

44. Wang, J.*, Wan, S., Kerp, H., Bek, J., Wang, S.J., 2021. A whole noeggerathialean plant Tingia unita Wang from the earliest Permian peat–forming flora, Wuda Coalfield, Inner Mongolia. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104204.

45. Wang, J., Pfefferkorn, H.W., Opluštil, S., Kerp, H., 2021. Permian “vegetational Pompeii”: A peat-forming in situ preserved forest from the Wuda Coalfield, Inner Mongolia, China – Introduction to a volume of detailed studies. Review of Palaeobotany and Palynology, 294, 104502. Doi: 10.1016/j.revpalbo.2021.104502.

46. Wang, S.J., Wang, J.*, Liu, L., Hilton, J., 2021. Stem diversity of the marattialean tree fern family Psaroniaceae from the earliest Permian Wuda Tuff Flora. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2021.104378.

47. Wu, Q., Ramezani, J., Zhang, H., Wang, J., Zeng, F., Zhang, Y., Shen, S. Z., 2021. High–precision U–Pb age constraints on the Permian floral turnovers, paleoclimate change, and tectonics of the North China block. Geology, 10.1130/G48051.1.

48. Zhou, W.M., Pšenička, J., Bek, J., Wan, M.L., Boyce, C.K., Wang, J.*, 2021. A new anachoropterid fern from the Asselian (Cisuralian) Wuda Tuff Flora. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104346.

49. Zhou, W.M., Wan, S., Wan, M.L., Hilton, J., Pšenička, J., Wang, J.*, 2021. Yangopteris ascendens (Halle) gen. et comb. nov., a climbing alethopterid pteridosperm from the Asselian (earliest Permian) Wuda Tuff Flora. Review of Palaeobotany and Palynology, 294, 10.1016/j.revpalbo.2020.104282.

50. Zhou, W.M., Pšenička, J., Hilton, J., Wang, J.*, 2021. Palaeobiogeographical implications of the earliest botryopterid ferns in Cathaysia. Historical Biology, 33(11), 2577–2583.

51. Zhou, W.M., Chen, B. Y., Sun, W., He, X.Z., Hilton, J., Wang, J.*, 2021. A new gigantopterid genus from the late Permian of the Daha Coalfield, Tibetan Plateau and its implication on plant–insect interactions. Historical Biology, 33(12), 32283240.

52. Zhou, W.M., D'Antonio, M.P., Boyce, C.K., Wang, J.*, 2021. An upright psaroniaceous stump and two surrounding pecopteroids from the early Permian Wuda Tuff Flora. Palaeoworld, 30(3). 451–460.

53. 孙文俊, 李丹丹, 周卫明, Bek J., 刘陆军, 王军*, 2021. 内蒙古乌达煤田早二叠世太原组拥挤始莲座蕨(新种) Eoangiopteris congestus sp. nov. 古生物学报, 60(2): 224–242.

地址:南京市北京东路39号(210008)
Tel:025-83282105 Fax:025-83357026
Email:ngb@nigpas.ac.cn
微信公众号