伪柔弱拟菱形藻复合群的形态分类学研究
THE STUDY ON MORPHOLOGICAL TAXONOMY OF PSEDUO-NITZSCHIA PSEUDODELICATISSIMA COMPLEX
-
摘要: 于2007 年夏季(8 月)在广东省大亚湾海域观察到伪柔弱拟菱形藻复合群的6 个种类: 花形拟菱形藻(P. caciantha Lundholm, Moestrup & Hasle)、靓纹拟菱形藻(P. calliantha Lundholm, Moestrup & Hasle)、尖细拟菱形藻[P. cuspidata (Hasle) Lundholm, Moestrup & Hasle]、曼氏拟菱形藻(P. mannii Amato & Montresor)、伪柔弱拟菱形藻[P. pseudodelicatissima (Hasle) Lundholm, Hasle & Moestrup]和中华拟菱形藻(P. sinica Qi & Wang),其中花形拟菱形藻、靓纹拟菱形藻和曼氏拟菱形藻为我国新记录种类。对该复合群种类的形态学特征、生活习性和生态分布进行了观察和描述, 并对其种类之间的形态学特征进行了比较研究。
-
关键词:
- 伪柔弱拟菱形藻复合群 /
- 形态学特征 /
- 新记录种类 /
- 大亚湾
Abstract: Increasing evidence show that cryptic and pseudo-cryptic species are widespread in several diatom taxa. This is the case with the genus Pseudo-nitzschia, which includes chain-forming pennate diatoms that bloom both in coastal and open ocean waters. In the last years, up 10 new species have been described on the basis of morphological and molecular investigations, and some of them are only distinguishable on the basis of minute ultrastructural features of their siliceous frustulae. This is the case of P. pseudodelicatissima complex. It has been confirmed that P. pseudodelicatissima complex was a kind of pelagic diatom species which distribute commonly in Chinese coastal waters. Because of few subtle morphological features which just could be observed under electronic microscope (EM) among P. pseudodelicatissima complex taxa, it is greatly difficult to reach accurate identification and there are many debates at present. For clarifying the species diversity of P. pseudodelicatissima complex and its dominant species in Daya Bay, water and net samples were collected from six stations in summer (August), 2007. All samples were fixed with Lugo’s solution in situ and brought back to the laboratory. Then, they were concentrated to a final volume about 2—10 mL by settlement overnight for several times. These samples could be observed and analyzed under light microscope. For observation under transmission electron microscope, subsamples were taken and treated through several steps. Firstly, after dropped into same volume of concentrated H2SO4, these samples were boiled in the water bath for about 15—20 minutes to remove the organic materials. Secondly, these samples should be washed to neutrality with distilled water for several times. Then, these samples could be observed, identified, photographed and counted under transmission electron microscope. Including six species, P. caciantha Lundholm, Moestrup & Hasle, P. calliantha Lundholm, Moestrup & Hasle, P. cuspidata (Hasle) Lundholm, Moestrup & Hasle, P. mannii Amato & Montresor, P. pseudodelicatissima (Hasle) Lundholm, Hasle & Moestrup and P. sinica Qi & Wang, P. pseudodelicatissima complex were found. And P. caciantha, P. calliantha, P. mannii were identified as three newly recorded diatom species for China. Along with LM and TEM photos, the detailed morphological description, habits and ecological distribution of these six species were given in this paper. Simultaneously, the taxonomic comparison among resembling species were made. The six species described in this paper have morphological features in common: the long and slender valves, the present of a larger central interspace, the uniseriate striae, the similarity of the structure of the valve face and the valve mantle, and the hexagonal perforation pattern of the poroid hymen. However, several other features such as structure of the poroid hymen, density of fibulae and striae, the width and shape of valves, and the structure of the cingular bands differed among the species and could be used for differentiating these six species from each other. After investigation of the cell abundance of each species, it is concluded that the most common species distributing in Daya Bay is P. calliantha, not P. pseudodelicatissima which has been reported formerly. -
-
[1] Bates S S, Bird C J, Freitas D E. Pennate diatom, Nitzschiapungens, as the primary source of domoic acid, a toxin inshellfish form eastern Prince Edward Island, Canada [J].Canadian Journal Fishery Aquiculture Science, 1989, 46:1203—1215.
[2] Bates S S, Garrison D L & Homer R A. Bloom dunamics andphysiology of domoic acid-producing Pseudo-nitzschia species[A]. In Anderson D M, Cembella A D, Hallegraeff G M(Eds.), Physiological ecology of harmful algal blooms [M].Heidelberg: Springer-Verlag. 1998, 267—292.
[3] Hallegraeff G M. Species of the diatom genus Pseudonitzschiain Australian waters [J]. Botanica Marina, 1994,37: 397—411308 水生生物学报 34 卷.
[4] Chen J F, Xu N, Wang Z H, et al. Dynamics ofPseudo-nitzschia spp. and environmental factors in Daya Bay,the South China Sea [J]. Acta Scientiae Circumstantiae, 2002,22(6): 743—748 [陈菊芳, 徐宁, 王朝辉, 等. 大亚湾拟菱形藻种群的季节变化与环境因子的关系. 环境科学学报,2002, 22(6): 743—748].
[5] Gao Y, Liang J R, Gao Y H, et al. Review of morphologicaland molecular identification of Pseudo-nitzschia, a bloomforming diatom [J]. Marine Sciences, 2005, 29(1): 67—72[高杨, 梁君荣, 高亚辉, 等. 赤潮拟菱形藻形态学分类和分子生物技术鉴定研究概述.海洋科学, 2005, 29(1): 67—72].
[6] Hasle G R. Pseudo-nitzschia as a genus distinct fromNitzschia (Bacillariophyceae) [J]. Journal of Phycology,1994, 30: 1036—1039.
[7] Amato A & Montresor M. Morphological, phylogeny, andsexual cycle of Pseudo-nitzschia mannii sp. nov. (Bacillariophyceae):a pseudo-cryptic species within the P. pseudodelicatissimacomplex [J]. Phycologia, 2008, 47(5): 487—497.
[8] Qi Y Z, Wang J, Zheng L. The taxonomy and bloom ecologyof Pseudo-nitzschia on the coasts of China [A]. In ProceedingsIOC-WESRPAC Third International Scientific Symposium[M]. Bali: Indonesia Institute of Sciences. 1994, 88—95.
[9] Chen J F, Qi Y Z, Xu N, et al. Pseudo-nitzschia bloom andits ecological role in the biological community in the DayaBay, the South China Sea [J]. Acta Oceanologica Sinica,2005, 27(1): 114—119 [陈菊芳, 齐雨藻, 徐宁, 等. 大亚湾拟菱形藻水华及其在生物群落中的生态地位. 海洋学报, 2005, 27(1): 114—119].
[10] Chen J F, Qi Y Z, Xu N, et al. Annual dynamics of phytoplanktoncommunity and abundance at Aotou Cover, DayaBay [J]. Acta Hydrobiologica Sinica, 2006, 30(3): 311—317 [陈菊芳, 齐雨藻, 徐宁, 等. 大亚湾澳头水域浮游植物群落结构及周年数量动态. 水生生物学报, 2006, 30(3):311—317].
[11] Gao Y H, Yu Q B, Qi Y Z, et al. Species composition andecological distribution of planktonic diatoms in the ChangjiangRiver estuary during Spring [J]. Chinese Journal of AppliedEcology, 2003, 14(7): 1044—1048 [高亚辉, 虞秋波,齐雨藻, 等. 长江口附近海域春季浮游硅藻的种类组成和生态分布. 应用生态学报, 2003, 14(7): 1044—1048].
[12] Gao Y H, Xie W L, Li Y, et al. Pseudo-nitzschia: taxonomyand biogeographical distribution in the estuary of ChangjiangRiver, China [A]. In Witkowski A. (Eds.), Proceedings of18th International Diatom Symposium [M]. Bristol: BiopressLimited. 2006, 75—90.
[13] Lundholm N, Moestrop ?, Hasle G R, et al. A study of thePseuso-nitzschia pseudodelicatissima/cuspidate complex(Bacillariophyceae): what is P. pseudodelicatissima [J]?Journal of Phycology, 2003, 39: 797—813.
[14] Martin J L, Haya K, Burridge L E, et al. Nitzschia pseudodelicatissima—a source of domoic acid in the Bay of Fundy,eastern Canada [J]. Marine Ecological Progress Series, 1990,67: 177—182.
[15] Lundholm N, Skov J, Pocklington R, et al. Studies of themarine planktonic diatom Pseudo-nitzschia 2. Autecology ofP. pseudodelicatissima based on isolates from Danish coastalwaters [J]. Phycologia, 1997, 36: 381—388.
[16] Lundholm N, Skov J, Pocklington R, et al. Domoic acid, thetoxic amino acid responsible for amnesic shellfish poisoning,now in Pseudo-nitzschia seriata (Bacillariophyceae) inEurope [J]. Phycologia, 1994, 33: 475—478.
[17] Skov J, Lundholm N, Moestrop ?, et al. Potentially toxicphytoplankton 4. The diatom genus Pseudo-nitzschia (Diatomophyceae/Bacillariophyceae) [A]. In Lindley J A (Eds.),ICES identification leaflets for plankton ICES [M]. Copenhagen:Palaegade 2-4, DK-1261. 1999, 1—23.
[18] Buri? Z, Vili?i? D, Mihali? K C, et al. Pseudo-nitzschiablooms in the Zrmanja River Estuary (Estuary Adriatic Sea)[J]. Diatom Research, 2008, 23(1): 51—63.
[19] Hasle G R, Lange C B, Syvertsen E E. A review ofPseudo-nitzschia, with special reference to the Skagerrak,North Atlantic and adjacent waters [J]. Helgol Meeresunters,1996, 50: 131—175.
[20] Xing X L, Yang J X, Kang Y Y, et al. Morphological studyand toxic analysis for two Pseudo-nitzschia species isolatedfrom Daya Bay [J]. Journal of Oceanography in TaiwanStrait, 2007, 26(4): 576—582 [邢小丽, 杨军霞, 康燕玉,等. 大亚湾水域两种拟菱形藻的形态学鉴定及毒素分析.台湾海峡, 2007, 26(4): 576—582].
[21] Mann D G, McDonald S M, Bayer M M, et al. The Sellaphorapupula species complex (Bacillariophyceae): morphometricanalysis, ultrastructure and mating data provideevidence for five new species [J]. Phycologia, 2004, 43:459—482.
[22] Sarno D, Kooistra W H C F, Medlin L K, et al. Diversity inthe genus Skeletonema (Bacillariophyceae) Ⅱ. An assessmentof the taxonomy of S. costatum-like species, with thedescription of four new species [J]. Journal of Phycology,2005, 41: 151—176.
[23] Amato A, Kooistra W H C F, Levialdi G J H, et al. Reproductiveisolation among sympatric cryptic species in marinediatoms [J]. Protist, 2007, 158: 193—207.
[24] Beszteri B, John U, Medlin L K. An assessment of crypticgenetic diversity within the Cyclotella meneghiniana speciescomplex (Bacillariophyta) based on nuclear and plastidgenes, and amplified fragment length polymorphisms [J].European Journal of Phycology, 2007, 42: 47—60.
[25] Vanormelingen P, Chepurnov V A, Mann D G, et al. Geneticdivergence and reproductive barriers among morphologicallyheterogeneous sympatric clones of Eunotia bilunaris senuslato (Bacillariophyta) [J]. Protist, 2008, 159: 73—90.
[26] Mann D G, Evans K M. Molecular genetics and the neglectedart of diatomics [A]. In Brodie J & Lewis J M (Eds), Unravellingthe algae- the past, present and future of algal molecularsystematics [M]. London: CRC Press. 2007, 231—265.
[27] Kaczmarska I, Fryxell G.A. The diatom genus Nitzschia:morphologic variation of some small bicapitata species intwo Gulf Stream Warm Core Rings [A]. In Ricard M (Eds.),Proceeding of the eighth international diatom symposium[M]. Koenigstein: Otto Koeltz Science Publishers. 1986,237—252.
-
期刊类型引用(13)
1. 王生福,杨傲傲,刘华雪,李修岭,李伟斯,王士满. 拟菱形藻软骨藻酸产生影响因素及检测方法研究进展. 中国渔业质量与标准. 2019(03): 34-44 . 百度学术
2. 董焕嫦,黄春秀,李扬. 中国沿海新报道的三种产毒拟菱形藻. 水生生物学报. 2018(05): 1057-1065 . 本站查看
3. 黄春秀,董焕嫦,吴海燕,谭志军,李扬. 福氏拟菱形藻(Pseudo-nitzschia fukuyoi)——中国产毒拟菱形藻的新记录. 海洋与湖沼. 2017(05): 1014-1021 . 百度学术
4. 黄春秀,董焕嫦,李扬. 我国东南海域2个新记录拟菱形藻物种及其产毒特征. 海洋与湖沼. 2017(04): 767-776 . 百度学术
5. 黄春秀,徐国双,李扬. 大亚湾水域并基拟菱形藻的种类鉴定和产毒特征分析. 水生生物学报. 2017(05): 1118-1125 . 本站查看
6. 于仁成,罗璇. 我国近海有毒藻和藻毒素的研究现状与展望. 海洋科学集刊. 2016(00): 155-166 . 百度学术
7. 徐国双,李扬. 我国沿海拟菱形藻属的2新记录种及其产毒特征分析. 热带亚热带植物学报. 2015(06): 614-624 . 百度学术
8. Song Lun,Song Guangjun,Song Yonggang,Xu Xiaohong. Toxic Algae and Early Warning Management in Yellow Sea and Bohai Sea of China. Animal Husbandry and Feed Science. 2014(02): 83-86 . 必应学术
9. 宋伦,宋广军,王年斌,刘世才. 黄渤海贝毒机理及产毒藻类的研究现状. 水产科学. 2013(07): 428-434 . 百度学术
10. 李扬,赵秋兰,吕颂辉. 我国沿海线形亚属海链藻的形态学研究. 水生生物学报. 2013(01): 70-81 . 本站查看
11. 李扬,赵秋兰,吕颂辉. 我国沿海双唇形突海链藻的形态学研究. 水生生物学报. 2013(01): 106-115 . 本站查看
12. 李扬,赵秋兰,吕颂辉. 我国3个新记录海链藻种类的形态学研究. 水生生物学报. 2012(06): 1041-1045 . 本站查看
13. 李扬,赵秋兰,吕颂辉. 我国沿海闭合突海链藻的形态学研究. 水生生物学报. 2012(06): 1097-1105 . 本站查看
其他类型引用(2)
计量
- 文章访问数: 1057
- HTML全文浏览量: 5
- PDF下载量: 705
- 被引次数: 15