1.深圳博物馆,广东 深圳 518027
2.中山大学生命科学学院,广东 广州 510275
韩蒙(1990年生),女;研究方向:新生代植物多样性;E-mail: hmeng1207@163.com
金建华(1966年生),男;研究方向:新生代植物多样性;E-mail: lssjjh@mail.sysu.edu.cn
纸质出版日期:2023-07-25,
网络出版日期:2023-04-24,
收稿日期:2022-12-31,
录用日期:2023-03-12
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韩蒙,宋含章,金建华.广东茂名盆地古近纪类黄杞属(胡桃科)果化石多样性[J].中山大学学报(自然科学版),2023,62(04):1-9.
HAN Meng,SONG Hanzhang,JIN Jianhua.Diversity of Palaeocarya (Juglandaceae) fossil fruits from the Paleogene of Maoming Basin, Guangdong[J].Acta Scientiarum Naturalium Universitatis Sunyatseni,2023,62(04):1-9.
韩蒙,宋含章,金建华.广东茂名盆地古近纪类黄杞属(胡桃科)果化石多样性[J].中山大学学报(自然科学版),2023,62(04):1-9. DOI: 10.13471/j.cnki.acta.snus.2023E005.
HAN Meng,SONG Hanzhang,JIN Jianhua.Diversity of Palaeocarya (Juglandaceae) fossil fruits from the Paleogene of Maoming Basin, Guangdong[J].Acta Scientiarum Naturalium Universitatis Sunyatseni,2023,62(04):1-9. DOI: 10.13471/j.cnki.acta.snus.2023E005.
类黄杞属(
Palaeocarya
Saporta, 1873, emend. Manchester, 1987)隶属于胡桃科,是一个化石属,典型特征为翅果具有三裂片。该属的化石记录非常丰富,在北半球的新生代地层中被广泛报道。在中国,类黄杞属的化石记录主要见于海南、广西、吉林和云南。本文描述了发现于广东茂名盆地晚始新世和早渐新世地层中的类黄杞属果化石4种,分别为:
Palaeocarya yunnanensis
San-Ping Xie et Bai-Nian Sun,
P. guangxiensis
Li et Chen Y. F.,
P
.
gaolingensis
Yun-Fa Chen,
P
.
hispida
H. H. Meng et Z. K. Zhou。这是迄今广东首次发现类黄杞属大化石,表明在晚始新世时类黄杞属植物即已分布到我国低纬度亚热带地区,并开始了多样性的演化。
As a member of Juglandaceae, the fossil genus
Palaeocarya
Saporta, 1873, emend. Manchester, 1987 is well represented in the Cenozoic of the Northern Hemisphere, and it is characterized by a tri-lobed winged fruit. In China,
Palaeocarya
fossil record is mainly known from Hainan, Guangxi, Jilin and Yunnan. Here, we describe four species of
Palaeocarya
winged fruits from the upper Eocene and lower Oligocene of the Maoming Basin of Guangdong:
Palaeocarya yunnanensis
San-Ping Xie et Bai-Nian Sun,
P. guangxiensis
Li et Chen Y. F.,
P
.
gaolingensis
Yun-Fa Chen,and
P
.
hispida
H. H. Meng et Z. K. Zhou. This is the first fossil discovery of
Palaeocarya
in Guangdong, indicating that this genus
had been distributed to low latitude subtropical region of China no later than the late Eocene, and had begun to diversify from that time.
茂名盆地类黄杞属胡桃科果实化石植物地理史
Maoming BasinPalaeocaryaJuglandaceaefossil fruitphytogeography
广东省地质矿产局, 1988. 中华人民共和国地质矿产部地质专报(一)区域地质第9号, 广东省区域地质志[M]. 北京: 地质出版社.
郭敏, 周明文, 李瑞, 等, 2009. 广东茂名盆地油页岩成矿因素分析[J]. 华南地质与矿产, 25(2): 47‒51.
匡可任,李沛琼,1979. 中国植物志(第21卷)[M]. 北京: 科学出版社.
李殿超, 朱建伟, 严焕榕, 等, 2006. 广东省茂名盆地油页岩的沉积特征及分布规律[J]. 吉林大学学报(地球科学版), 36(6): 938‒943.
李浩敏, 陈运发, 陈耿娇, 等, 2003. 广西宁明第三纪类黄杞翅果化石[J]. 古生物学报, 42(4): 537‒547.
路安民, 1982. 论胡桃科的地理分布[J]. 植物分类学报, 20(3): 257‒274.
邵洋, 李斌科, 张思航, 等, 2016. 云南临沧晚中新世类黄杞及其古生物地理意义[J]. 古生物学报, 55(4): 482‒494.
严焕榕, 朱建伟, 李殿超, 等, 2006. 茂名盆地金塘矿区油页岩特征及形成条件[J]. 世界地质, 25(4): 407‒410.
余金凤, 吴作基, 1983. 广东茂名盆地茂五井的孢粉组合及其地质时代的探讨[J]. 地层学杂志, 7(2): 112‒118+163‒164.
ALEKSANDROVA G N, KODRUL T M, JIN J H, 2015. Palynological and paleobotanical investigations of Paleogene sections in the Maoming Basin, South China[J]. Stratigr Geol Correl, 23(3): 300‒325.
BERRY E W, 1916. The lower Eocene floras of southeastern North America[M]. Washington: Government Printing Office.
CHEN Y, MANCHESTER S R, SONG Z, et al, 2014. Oligocene fossil winged fruits of tribe Engelhardieae (Juglandaceae) from the Ningming Basin of Guangxi Province, South China[J]. Int J Latest Res Sci Techno, 3(5): 13‒17.
CHEN Y, WANG H, LIUFU Y, et al, 2018. A new species of Palaeocarya (Juglandaceae) from the Ningming Basin in Guangxi, South China[J]. Phytotaxa, 367(1): 55‒62.
DILCHER D L, POTTER Jr F W, CREPET W L, 1976. Investigations of angiosperms from the Eocene of North America: Juglandaceous winged fruits[J]. Am J Bot, 63(5): 532‒544.
DONG J L, WANG W J, DENG P, et al, 2016. New material of Palaeocarya from the Oligocene of Ningming, Guangxi, South China[J]. PalZ, 90(2): 399‒412.
FRIIS E M, 1983. Upper Cretaceous (Senonian) floral structures of juglandalean affinity containing normapolles pollen[J]. Rev Palaeobot Palynol, 39(1/2): 161‒188.
GUO S X, ZHANG G F, 2002. Oligocene Sanhe flora in Longjing County of Jilin, northeast China[J]. Acta Palaeontol Sin, 41(2):193‒210.
HAZRA T, HAZRA M, KUMAR S, et al, 2021. First fossil evidence of Palaeocarya (Engelhardioideae: Juglandaceae) from India and its biogeographical implications[J]. J Syst Evol, 59(6): 1307‒1320.
HE W L, WANG X J, 2021. A Miocene flora from the Toupi Formation in Jiangxi Province, southeastern China[J]. Palaeoworld, 30(4): 757‒769.
HERMAN A B, SPICER R A, ALEKSANDROVA G N, et al, 2017. Eocene-early Oligocene climate and vegetation change in southern China: Evidence from the Maoming Basin[J]. Palaeogeogr Palaeoclimatol Palaeoecol, 479: 126‒137.
HUZIOKA K, KOGA T, 1981. The middle Miocene daijima-type floras in southwestern border of northeast Honshu, Japan[J]. J Geogr Chigaku Zasshi, 90(4): 235‒246.
JÄHNICHEN H, FRIEDRICH W L, TAKÁC M, 1984. Engelhardioid leaves and fruits from the European Tertiary, Part Ⅱ[J]. Tert Res, 6(3): 109‒134.
JÄHNICHEN H, MAI D H, WALTHER H, 1977. Blätter und Früchte von Engelhardia lesch. ex bl. (Juglandaceae) aus Dem europäischen tertiär[J]. Feddes Repert, 88(5/6): 323‒363.
JIN J, 2009. Two Eocene fossil fruits from the Changchang Basin of Hainan Island, China[J]. Rev Palaeobot Palynol, 153(1/2): 150‒152.
MacGINITIE H D, 1941. A middle Eocene flora from the central Sierra Nevada[M]. Washington: Carnegie Institution of Washington Publication.
MacGINITIE H D, 1969. The Eocene Green River flora of northwestern Colorado and northeastern Utah[M]. Berkeley: University of California Press.
MANCHESTER S R, 1987. The fossil history of the Juglandaceae[J]. Monogr Syst Bot Mo Bot Gard, 21:1‒137.
MANCHESTER S R, 1989. Early history of the Juglandaceae[J]. Plant Syst Evol, 162: 231‒250.
MANCHESTER S R, COLLINSON M E, GOTH K, 1994. Fruits of the Juglandaceae from the Eocene of Messel, Germany, and implications for early Tertiary phytogeographic exchange between Europe and western North America[J]. Int J Plant Sci, 155(3): 388‒394.
MANCHESTER S R, DILCHER D L, 1982. Pterocaryoid fruits (Juglandaceae) in the Paleogene of North America and their evolutionary and biogeographic significance[J]. Am J Bot, 69(2): 275‒286.
MANNING W E, 1959. Alfaroa and Engelhardtia in the new world[J]. Bull Torrey Bot Club, 86(3): 190‒198.
MANNING W E, 1978. The classification within the Juglandaceae[J]. Ann Mo Bot Gard, 65(4): 1058‒1087.
MANOS P S, SOLTIS P S, SOLTIS D E, et al, 2007. Phylogeny of extant and fossil Juglandaceae inferred from the integration of molecular and morphological data sets[J]. Syst Biol, 56(3): 412‒430.
MENG H H, SU T, HUANG Y J, et al, 2015. Late Miocene Palaeocarya (Engelhardieae: Juglandaceae) from southwest China and its biogeographic implications[J]. J Syst Evol, 53(6): 499‒511.
REID E M, CHANDLER M E J, 1933. The London Clay flora [M]. London: British Museum (Natural History).
SAPORTA G, 1873. Etudes sur la vegetation du sud-est de la France a l'epoque tertiaire. Suppl. I: Revision de flore des gypses d'Aix[J]. Ann Sci Nat, 18: 81‒244.
STONE D E, 2010. Review of new world Alfaroa and old world Alfaropsis (Juglandaceae)[J]. Novon A J Bot Nomencl, 20(2): 215‒224.
The Angiosperm Phylogeny Group, 2016. An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants: APG IV[J]. Bot J Linn Soc, 181(1): 1‒20.
WAHRHAFTIG C, WOLFE J A, LEOPOLD E B, et al, 1969. The coal-bearing group in the Nenana coal field, Alaska[M]. Washington: United States Government Printing Office.
WANG J, LI H, ZHU Z, et al, 1994. Magnetostratigraphy of Tertiary rocks from Maoming Basin, Guangdong Province, China[J]. Chin J of Geochem, 13(2): 165‒175.
WOLFE J A, 1973. Fossil forms of Amentiferae[J]. Brittonia, 25(4): 334‒355.
XIE S, SUN B, DILCHER D L, et al, 2010. Numerical taxonomy of Palaeocarya (Juglandaceae) from the Mangbang Formation of West Yunnan, China[J]. Rev Palaeobot Palynol, 162(2): 193‒202.
ZACHOS J, PAGANI M, SLOAN L, et al, 2001. Trends, rhythms, and aberrations in global climate 65 Ma to present[J]. Science, 292(5517): 686‒693.
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