[1] |
胡维芬, 张兰兰, 陈木宏, 等, 2015. 南海断面春季活体放射虫生态分布及其对环境的响应[J]. 中国科学: 地球科学, 45(1): 83-98.
|
|
HU WEIFEN, ZHANG LANLAN, CHEN MUHONG, et al, 2015. Distribution of living radiolarians in spring in the South China Sea and its responses to environmental factors[J]. Science China: Earth Sciences, 45(1): 83-98 (in Chinese with English abstract).
|
[2] |
鈴木紀毅, 相田吉昭, 2011. 放散虫の生物学一分布, 现存量, 共生生物[J]. 日本プランクト学会, 58(1): 40-48.
|
|
SUZUKI N, AITA Y, 2011. Topics on the spatial distributions, standing stocks, and symbiosis of living Radiolaria (Rhizaria, Protoctista)[J]. The Plankton Society of Japan, 58(1): 40-48 (in Japanese with English abstract).
|
[3] |
谭智源, 高洪绪, 宿星慧, 1978. 镰形棒矛虫在东海西部的数量分布[J]. 海洋与湖沼, 9(1): 59-66.
|
|
TAN ZHIYUAN, GAO HONGXU, SU XINGHU, 1978. The quantitative distribution of Sticholonche zanclea in the western part of the East China Sea[J]. Oceanologia et limnologia sinica, 9(1): 59-66 (in Chinese with English abstract).
|
[4] |
张杰, 张兰兰, 陈木宏, 等, 2020. 现代放射虫的高阶分类现状及其生态学意义[J]. 微体古生物学报, 37(1): 82-98.
|
|
ZHANG JIE, ZHANG LANLAN, CHEN MUHONG, et al, 2020. The higher level classification of modern radiolarians and their ecological significance[J]. Acta Micropalaeontologica Sinica, 37(1): 82-98 (in Chinese with English abstract).
|
[5] |
张兰兰, 邱卓雅, 向荣, 等, 2021. 基于生物硅记录的孟加拉湾东南部末次冰期以来的古生产力变化[J]. 地学前缘, 29(4): 136-143.
|
|
ZHANG LANLAN, QIU ZHUOYA, XIANG RONG, et al, 2022. Productivity evolution in the southeastern Bay of Bengal since the last glaciation: insight from biogenic silica records[J]. Earth Science Frontiers, 29(4): 136-143 (in Chinese with English abstract).
doi: 10.13745/j.esf.sf.2022.1.15
|
[6] |
张武昌, 张翠霞, 肖天, 2009. 海洋浮游生态系统中小型浮游动物的生态功能[J]. 地球科学进展, 24(11): 1195-1201.
|
|
ZHANG WUCHANG, ZHANG CUIXIA, XIAO TIAN, 2009. Role of microzooplankton in marine planktonic ecosystem[J]. Advances in Earth Science, 24(11): 1195-1201 (in Chinese with English abstract).
doi: 10.11867/j.issn.1001-8166.2009.11.1195
|
[7] |
张作人, 谭智源, 1964. 东海放射虫的研究 Ⅰ. 等辐骨虫目[J]. 海洋科学集刊, 6: 33-78.
|
|
ZHANG ZUOREN, TAN ZHIYUAN, 1964. Studies on the Radiolaria of the East China Sea Ⅰ. Acantharia[J]. Studia Marine Sinica, 6: 33-78 (in Chinese with English abstract).
|
[8] |
ABELMANN A, GOWING M M, 1996. Horizontal and vertical distribution pattern of living radiolarians along a transect from the Southern Ocean to the South Atlantic subtropical region[J]. Deep-Sea Research part I, 43(3): 361-382.
doi: 10.1016/0967-0637(96)00003-9
|
[9] |
ABELMANN A, NIMMERGUT A, 2005. Radiolarians in the sea of Okhotsk and their ecological implication for paleoenvironmental reconstructions[J]. Deep Sea Research Ⅱ, 52(16-18): 2302-2331.
|
[10] |
ADL S M, BASS D, LANE C E, et al, 2019. Revisions to the classification, nomenclature, and diversity of Eukaryotes[J]. Journal of Eukaryotic Microbiology, 66(1): 4-119.
doi: 10.1111/jeu.12691
pmid: 30257078
|
[11] |
BERNSTEIN R E, BETZER P R, FEELY R A, et al, 1987. Acantharian fluxes and strontium to chlorinity ratios in the north Pacific Ocean[J]. Science, 237(4821): 1490-1494.
pmid: 17816791
|
[12] |
BIARD T, STEMMANN L, PICHERAL M, et al, 2016. In situ imaging reveals the biomass of giant protists in the global ocean[J]. Nature, 532(7600): 504-507.
doi: 10.1038/nature17652
|
[13] |
CHENG XIAWEN, ZHANG LANLAN, GAO FEI, et al, 2022. Biodiversity of Zooplankton in 0-3000 m waters from the eastern Indian Ocean in spring 2019 based on metabarcoding[J]. Water Biology and Security, 1(1): 100005.
doi: 10.1016/j.watbs.2022.100005
|
[14] |
DE WEVER P, DUMITRICA P, CAULET J P, et al, 2001. Radiolarians in the Sedimentary Record[M]. Amsterdam, The Netherlands: Gordon and Breach Science Publishes, 1-533.
|
[15] |
DECELLE J, MARTIN P, PABORSTAVA K, et al, 2013. Diversity, ecology and biogeochemistry of cyst-forming Acantharia (Radiolaria) in the oceans[J]. Plos One, 8(1): e53598.
doi: 10.1371/journal.pone.0053598
|
[16] |
DECELLE J, SUZUKI N, MAHÉ F, et al, 2012. Molecular phylogeny and morphological evolution of the Acantharia (Radiolaria)[J]. Protist, 163(3): 435-450.
doi: 10.1016/j.protis.2011.10.002
pmid: 22154393
|
[17] |
DWORETZKY B A, MORLEY J J, 1987. Vertical distribution of Radiolaria in the eastern equatorial Atlantic: analysis of a multiple series of closely-spaced plankton tows[J]. Marine Micropaleontology, 12: 1-19
doi: 10.1016/0377-8398(87)90011-9
|
[18] |
ESKINAZI-SANT’ANNA E M, 2006. Sticholonche zanclea (Protozoa, Actinopoda) in fecal pellets of copepods and Euphasia sp. in Brazilian coastal waters[J]. Brazilian Journal of Biology, 66(3): 839-847.
doi: 10.1590/S1519-69842006000500009
|
[19] |
ESKINAZI-SANT’ANNA E M, 2013. Remains of the protozoan Sticholonche zanclea in the faecal pellets of Paracalanus quasimodo, Parvocalanus crassirostris, Temora stylifera and Temora turbinate (Copepoda, Calanoida) in Brazilian coastal waters[J]. Brazilian Journal of Oceanography, 61(1): 73-76.
doi: 10.1590/S1679-87592013000100008
|
[20] |
FOL H, 1883. Sur le Sticholonche zanclea et un nouvel ordre de Rhizopodes[J]. Memoires de I’Institut National Genevois, 15: 1-35 (in French).
|
[21] |
GONZÁLEZ H E, 1992. Distribution and abundance of minipellets around the Antarctic Peninsula—implications for protistan feeding behavior[J]. Marine Ecology, Progress Series, 90(3): 223-236.
doi: 10.3354/meps090223
|
[22] |
GUTIERREZ-RODRIGUEZ A, STUKEL M R, LOPES DOS SANTOS A, et al, 2019. High contribution of Rhizaria (Radiolaria) to vertical export in the California Current Ecosystem revealed by DNA metabarcoding[J]. The ISME Journal, 13(4): 964-976.
doi: 10.1038/s41396-018-0322-7
|
[23] |
ISHITANI Y, TAKAHASHI K, 2007. The vertical distribution of Radiolaria in the waters surrounding Japan[J]. Marine Micropaleontology, 65(3-4): 113-136.
doi: 10.1016/j.marmicro.2007.06.002
|
[24] |
ITAKI T, 2003. Depth-related radiolarian assemblage in the water-column and surface sediments of the Japan Sea[J]. Marine Micropaleontology, 47(3-4): 253-270.
doi: 10.1016/S0377-8398(02)00119-6
|
[25] |
JYOTHIBABU R, VINAYACHANDRAN P N, MADHU N V, et al, 2015. Phytoplankton size structure in the southern Bay of Bengal modified by the Summer Monsoon Current and associated eddies: Implications on the vertical biogenic flux[J]. Journal of Marine Systems, 143: 98-119.
doi: 10.1016/j.jmarsys.2014.10.018
|
[26] |
KAMYKOWSKI D, ZENTARA S-J, 1990. Hypoxia in the world ocean as recorded in the historical data set[J]. Deep-Sea Research, 37(12): 1861-1874.
doi: 10.1016/0198-0149(90)90082-7
|
[27] |
KLING S A, 1979. Vertical distribution of polycystine radiolarians in the central North Pacific[J]. Marine Micropaleontology, 4: 295-318.
doi: 10.1016/0377-8398(79)90022-7
|
[28] |
LIU SHENGFA, ZHANG HUI, CAO PENG, et al, 2021. Paleoproductivity evolution in the northeastern Indian Ocean since the last glacial maximum: Evidence from biogenic silica variations[J]. Deep-Sea Research Part I-Oceanographic Research Papers, 175: 103591.
doi: 10.1016/j.dsr.2021.103591
|
[29] |
MATSUZAKI K M, ITAKI T, SUGISAKI S, 2020. Polycystine radiolarians vertical distribution in the subtropical Northwest Pacific during Spring 2015 (KS15-4)[J]. Paleontological Research, 24(2): 113-133.
doi: 10.2517/2019PR019
|
[30] |
MEUNIER A, 1910. Microplankton des Mers de Barents et de Kara. Due d' Orleans, Campagne Artique de 1907[M]. Bruxelles: Imprimerie Scientifique, 1-255(in French).
|
[31] |
MICHAELS A F, 1991. Acantharian abundance and symbiont productivity at the VERTEX seasonal station[J]. Journal of Plankton Research, 13(2): 399-418.
doi: 10.1093/plankt/13.2.399
|
[32] |
MICHAELS A F, CARON D A, SWANBERG N R, et al, 1995. Planktonic sarcodines (Acantharia, Radiolaria, Foraminifera) in surface waters near Bermuda: abundance, biomass and vertical flux[J]. Journal of Plankton Research, 17(1): 131-163.
doi: 10.1093/plankt/17.1.131
|
[33] |
NAKAMURA Y, SUZUKI N, 2015. Phaeodaria: Diverse Marine Cercozoans of World-Wide Distribution[M]. //OHTSUKA S, SUZAKI T, HORIGUCHI T, et al, Marine Protists:Diversity and Dynamics. Japan: Springer: 223-249.
|
[34] |
NIKOLAEV S I, BERNEY C, FAHRNI J F, et al, 2004. The twilight of Heliozoa and rise of Rhizaria, an emerging supergroup of amoeboid eukaryotes[J]. Proceedings of National Academy of Sciences, 101(21): 8066-8071.
doi: 10.1073/pnas.0308602101
|
[35] |
NIMMERGUT A, ABELMANN A, 2002. Spatial and seasonal changes of radiolarian standing stocks in the sea of Okhotsk[J]. Deep Sea Research I, 49(3): 463-493.
doi: 10.1016/S0967-0637(01)00074-7
|
[36] |
NOT F, GAUSLING R, AZAM F, et al, 2007. Vertical distribution of picoeukaryotic diversity in the Sargasso Sea[J]. Environmental Microbiology, 9(5): 1233-1252.
pmid: 17472637
|
[37] |
NÖTHIG E -M, GOWING M M, 1991. Late winter abundance and distribution of phaeodarian radiolarians, other large protozooplankton and copepod nauplii in the Weddell Sea, Antarctica[J]. Marine Biology, 111(3): 473-484.
doi: 10.1007/BF01319421
|
[38] |
OKAZAKI Y, TAKAHASHI K, ITAKI T, et al, 2004. Comparison of radiolarian vertical distributions in the Okhotsk Sea near the Kuril Islands and in the northwestern North Pacific off Hokkaido Island[J]. Marine Micropaleontology, 51(3-4): 257-284.
doi: 10.1016/j.marmicro.2004.01.003
|
[39] |
POLET S, BERNEY C, FAHRNI J, et al, 2004. Small-subunit ribosomal RNA gene sequences of Phaeodarea challenge the monophyly of Haeckel's Radiolaria[J]. Journal of Eukaryotic Microbiology, 155(1): 53-63.
|
[40] |
SENGUPTA D, RAJ G B, SHENOI S, 2006. Surface freshwater from Bay of Bengal runoff and Indonesian Throughflow in the tropical Indian Ocean[J]. Geophysical Research Letters, 33(22): 440-452.
|
[41] |
SHANNON C E, 1948. A Mathematical Theory of Communication[J]. Bell System Technical Journal, 27: 379-423.
doi: 10.1002/bltj.1948.27.issue-3
|
[42] |
STEINER Z, SARKAR A, PRAKASH S, et al, 2020. Dissolved strontium, Sr/Ca ratios, and the abundance of Acantharia in the Indian and Southern Oceans[J]. ACS Earth Space Chemistry, 4(6): 802-811.
doi: 10.1021/acsearthspacechem.9b00281
|
[43] |
SUZUKI N, NOT F, 2015. Biology and ecology of radiolarian[M]. Marine protists. Tokyo: Springer: 179-222.
|
[44] |
TAKAHASHI K, LING H Y, 1980. Distribution of Sticholonche (Radiolaria) in the Upper 800 m of the waters in the equatorial Pacific[J]. Marine Micropaleontology, 5(3): 311-319.
doi: 10.1016/0377-8398(80)90015-8
|
[45] |
VENKATAR K, BISCAYE P E, 1973. Clay mineralogy and sedimentation in the eastern Indian Ocean[J]. Deep-Sea Research, 20(8): 727-736.
|
[46] |
YAMASHITA H, TAKAHASHI K, FUJITANI N, 2002. Zonal and vertical distribution of radiolarians in the western and central Equatorial Pacific in January 1999[J]. Deep Sea Research Ⅱ, 49(13-14): 2823-2862.
|
[47] |
ZHANG JIE, ZHANG LANLAN, XIANG RONG, et al, 2020. Radiolarian biogeographic contrast between spring of 2017 and winter of 2017-2018 in the South China sea and Malacca Strait[J]. Continental Shelf Research. 208: 104254.
|
[48] |
ZHANG LANLAN, CHEN MUHONG, XIANG RONG, et al, 2009. Distribution of polycystine radiolarians in the northern South China Sea in September 2005[J]. Marine Micropaleontology, 70(1-2): 20-38.
doi: 10.1016/j.marmicro.2008.10.002
|
[49] |
ZHAO FENG, FILKER S, XU KUIDONG, et al, 2017. Patterns and Drivers of Vertical Distribution of the Ciliate Community from the Surface to the Abyssopelagic Zone in the Western Pacific Ocean[J]. Frontiers in Microbiology, 8: 1-14.
|