Citation: | NAN Fang-Ru, FENG Jia, XIE Shu-Lian. Phylogenetic relationship of genus Kumanoa based on chloroplast Psaa and psba genes[J]. ACTA HYDROBIOLOGICA SINICA, 2015, 39(1): 155-163. DOI: 10.7541/2015.20 |
[1] |
Entwisle T J, Vis M L, Chiasson W B, et al. Systematics of the Batrachospermales (Rhodophyta)-a synthesis [J]. Journal of Phycology, 2009, 45(3): 704-715
|
[2] |
Kumano S. Taxonomy of the family Batrachospermaceae (Batrachospermales, Rhodophyta) [J]. Japanese Journal of Phycology, 1993, 41(3): 253-274
|
[3] |
Xie S L, Yao G. Change and development of the classification systems of Batrachospermaceae (Rhodophyta) and evaluation of its main characteristics [J]. World Sci-Tech R D, 2006, 28(1): 33-39 [谢树莲, 姚戈. 串珠藻科分类系统述评及主要分类特征的评价. 世界科技研究与发展, 2006, 28(1): 33-39]
|
[4] |
Entwisle T J, Foard H J. Batrachospermum (Batrachospermales, Rhodophyta) in Australia and New Zealand: new taxa and records in sections Contorta and Hybrida [J]. Australian Systematic Botany, 1999, 12(4): 615-633
|
[5] |
Vis M L, Saunders G W, Sheath R G, et al. Phylogeny of the Batrachospermales (Rhodophyta) inferred from rbcL and 18S ribosomal DNA gene sequences [J]. Journal of Phycology, 1998, 34(2): 341-350
|
[6] |
Vis M L, Entwisle T J. Insights into the phylogeny of the Batrachospermales (Rhodophyta) from rbcL sequence data of Australian taxa [J]. Journal of Phycology, 2000, 36(6): 1175-1182
|
[7] |
Vis M L, Chiasson W B, Sheath R G. Phylogenetic relationship of Batrachospermum species (Batrachospermales, Rhodophyta) from coastal streams in French Guiana [J]. Phycologia, 2005, 44(4): 441-446
|
[8] |
Li Q, Ji L, Xie S L. Phylogenetic analysis of Batrachospemales (Florideophyceae, Rhodophyta) based on chloroplast rbcL sequences [J]. Acta Hydrobiologica Sinica, 2010, 34(1): 20-28 [李强, 吉莉, 谢树莲. 串珠藻目植物的系统发育-基于rbcL序列的证据. 水生生物学报, 2010, 34(1): 20-28]
|
[9] |
Vis M L, Necchi O, Chiasson W B, et al. Molecular phylogeny of the genus Kumanoa (Batrachospermales, Rhodophyta) [J]. Journal of Phycology, 2012, 48(3): 750-758
|
[10] |
Jao C C. Studies on the freshwater algae of China Ⅷ. A preliminary account of the Chinese freshwater Rhodophyceae [J]. Sinensia, 1941, 12: 245-290
|
[11] |
Shi Z X, Wei Y X, Li Y Y, et al. Studies on Algae Resources in Southwest Area [M]. Beijing: Science Press. 1994, 1-405 [施之新, 魏印心, 李尧英, 等. 西南地区藻类资源考察专集. 北京: 科学出版社. 1994, 1-405]
|
[12] |
Xie S L, Shi Z X. New reports of Batrachospermum Roth (Batrachospermales, Rhodophyta) from China [J]. Bulletin of Botanical Research, 2003, 23(3): 269-275 [谢树莲, 施之新. 中国串珠藻属新记录. 植物研究, 2003, 23(3): 269-275]
|
[13] |
Xie S L, Shi Z X, Lu H S, et al. Four new reports of Batrachospermum (Batrachospermales, Rhodophyta) from China [J]. Journal of Wuhan Botanical Research, 2003, 21(2): 148-152 [谢树莲, 施之新, 卢海声, 等. 中国串珠属的4个新记录种. 武汉植物研究, 2003, 21(2): 148-152]
|
[14] |
Xie S L, Shi Z X. Three new species of Batrachospermum Roth (Batrachospermales, Rhodophyta) in China [J]. Chinese Journal of Oceanology and Limnology, 2005, 23(2): 204-209.
|
[15] |
Shi Z X. Flora Algarum Sinicarum Aquae Dulcis, Vol. 13, Rhodophyta and Phaeophyta [M]. Beijing: Science Press. 2006, 57, 62-68 [施之新. 中国淡水藻志, 第13卷, 红藻门和褐藻门. 北京: 科学出版社. 2006, 57, 62-68]
|
[16] |
Yang E C, Boo S M. Evidence for two independent lineages of Griffithsia (Ceramiaceae, Rhodophyta) based on plastid protein-coding psaA, psbA, and rbcL gene sequences [J]. Molecular Phylogenetics and Evolution, 2004, 31(2): 680-688
|
[17] |
Wang Y N, Feng J, Xie S L. Phylogenetic relationship of Thoreales based on psaA and psbA genes [J]. Bulletin of Botanical Research, 2011, 31(3): 257-260 [王亚楠, 冯佳, 谢树莲. 基于 psaA 和 psbA 基因的红索藻目系统发育研究. 植物研究, 2011, 31(3): 257-260]
|
[18] |
Yoon H S, Hackett J D, Bhattacharya D. A single origin of the peridinin-and fucoxanthin-containing plastids in dinoflagellates through tertiary endosymbiosis [J]. Proceedings of the National Academy of Sciences, 2002, 99(18): 11724-11729
|
[19] |
Thompson J D, Gibson T J, Plewniak F, et al. The CLUSTAL-X windows interface: flexible strategies for multiple sequence alignment aided by quality analysis tools [J]. Nucleic Acids Research, 1997, 25(24): 4876-4882
|
[20] |
Tamura K, Peterson D, Peterson N, et al. MEGA5: molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony methods [J]. Molecular Biology and Evolution, 2011, 28(10): 2731-2739
|
[21] |
Rannala B, Yang Z. Probability distribution of molecular evolutionary trees: a new method of phylogenetic inference [J]. Journal of Molecular Evolution, 1996, 43(3): 304-311
|
[22] |
Ronquist F, Huelsenbeck J P. MrBayes 3: Bayesian phylogenetic inference under mixed models [J]. Bioinformatics, 2003, 19(12): 1572-1574
|
[23] |
Xia X, Xie Z. DAMBE: software package for data analysis in molecular biology and evolution [J]. Journal of Heredity, 2001, 92(4): 371-373
|
[24] |
Posada D, Buckley T R. Model selection and model averaging in phylogenetics: advantages of Akaike information criterion and Bayesian approaches over likelihood ratio tests [J]. Systematic Biology, 2004, 53(5): 793-808
|
[25] |
Shi Z X. Flora Algarum Sinicarum Aquae Dulcis, Vol. 13, Rhodophyta and Phaeophyta [M]. Beijing: Science Press. 2006, 57, 20-22. [施之新. 中国淡水藻志, 第13卷, 红藻门和褐藻门. 北京: 科学出版社. 2006, 57, 20-22]
|
[26] |
Xie S L. Phylogenetic analysis on the Batrachospermales (Rhodophyta) based on morphological data [J]. Journal of Shanxi University ( Natural Science Edition), 2007, 30(2): 245-250 [谢树莲. 串珠藻目 (红藻门) 基于形态学证据的系统发育分析. 山西大学学报 (自然科学版), 2007, 30(2): 245-250]
|
[27] |
Xie S L, Ling Y J. Modern geographical distribution and origin of Batrachospermales [J]. Journal of Shanxi University, 2002, 25(2): 149-155 [谢树莲, 凌元洁. 串珠藻目的现代地理分布和起源. 山西大学学报 (自然科学版), 2002, 25(2): 149-155]
|
[28] |
Ji l, Chen L, Feng J, et al. Molecular phylogenetics of Batrachospermum Roth (Rodophyta) based on cox2-3 spacer sequence [J]. Journal of Shanxi Univercity, 2013, 36(3): 449-454 [吉莉, 陈乐, 冯佳, 等. 基于 cox2-3 spacer 序列的串珠藻属系统发育研究. 山西大学学报 (自然科学版), 2013, 36(3): 449-454]
|
[29] |
Stefaniak K, Kokociski M, Rurek M, et al. The polymorphic psaA and rbcL loci in populations of Planktothrix agardhii in Polish hypertrophic lakes [J]. Biologia Bratislava, 2005, 60(3): 313-317
|
[30] |
Christiansen G, Molitor C, Philmus B, et al. Nontoxic strains of Cyanobacteria are the result of major gene deletion events induced by a transposable element [J]. Molecular Biology and Evolution, 2008, 25(8): 1695-1704
|
[31] |
Yang Z M, Zhang Q, Xie S L, et al. Sequence analyses of chloroplastic psaA gene fragment from Phaeocystis globosa [J]. Journal of Tropical and Subtropical Botany, 2004, 12(5): 435-439 [杨泽民,章群, 谢数涛, 等. 球形棕囊藻 (Phaeocystis globosa) 叶绿体psaA基因片段的序列分析. 热带亚热带植物学报, 2004, 12(5): 435-439]
|
[32] |
She D W, Zhang H B, Wang Y, et al. Sequence analyses of Chloroplastic psaA gene fragment from Porphyra haitanensis [J]. Fisheries Science, 2007, 26(5): 289-291 [佘大为, 张海波, 王月, 等. 坛紫菜叶绿体psaA基因片段的序列分析. 水产科学, 2007, 26(5): 289-291]
|
[33] |
Shi Z X. Flora Algarum Sinicarum Aquae Dulcis, Vol. 13, Rhodophyta and Phaeophyta [M]. Beijing: Science Press. 2006, 62-68 [施之新. 中国淡水藻志, 第13卷, 红藻门和褐藻门. 北京: 科学出版社. 2006, 62-68]
|
[1] | ZHANG Yang, GUO Xiao-Yu, HU Chun-Xiang, YANG Hai-Jian, LIU Yang, LI Hua. KONICACRONEMA (GOMONTIELLALES): A NEWLY RECORDED DESERT CYANOBACTERIAL GENUS IN CHINA[J]. ACTA HYDROBIOLOGICA SINICA. DOI: 10.7541/2025.2024.0487 |
[2] | CHEN Jia-Xin, CAI Fang-Fang. ALLOCOLEOPSIS (COLEOFASCICULALES, CYANOBACTERIA), A NEW RECORD GENUS OF TERRESTRIAL CYANOBACTERIA IN CHINA[J]. ACTA HYDROBIOLOGICA SINICA, 2025, 49(6): 062517. DOI: 10.7541/2025.2024.0323 |
[3] | DENG Rui, XU Ping-Ping, FAN Pan-Pan, LI Bo, ZHANG Yu-Heng, LÜ Hai-Ying, BI Yong-Hong. RESPONSES OF PHOTOSYNTHETIC ACTIVITY OF MICROCYSTIS AERUGINOSA ON SHORT-TERM EXPOSURE TO DIFFERENT LED LIGHTS[J]. ACTA HYDROBIOLOGICA SINICA, 2023, 47(1): 71-79. DOI: 10.7541/2022.2021.0339 |
[4] | LI Na, BI Yong-Hong, GAO Da-Wen, HU Zheng-Yu, REN Nan-Qi. EFFECTS OF ELEVATED CO2 CONCENTRATION ON GROWTH OF MICROCYSTIS AERUGINOSA[J]. ACTA HYDROBIOLOGICA SINICA, 2011, 35(4): 698-702. DOI: 10.3724/SP.J.1035.2011.00698 |
[9] | XU Hong, ZHEN Jing-Qian, ZHANG Jun, LI Xun, HU Han-Hua. SELF-INTERACTION OF CIRCADIAN CLOCK PROTEIN KAIA OF MICROCYSTIS AERUGINOSA IN YEAST TWO HYBRIDIZATION SYSTEM[J]. ACTA HYDROBIOLOGICA SINICA, 2005, 29(5): 591-594. |
[10] | Xu Ping, Tseng Chaotsi. UPTAKE OF AMINO ACIDS BY TOXIC MICROCYSTIS AERUGINOSA PCC 7820[J]. ACTA HYDROBIOLOGICA SINICA, 1994, 18(2): 180-182. |