热带海洋学报 ›› 2021, Vol. 40 ›› Issue (1): 99-110.doi: 10.11978/2020028CSTR: 32234.14.2020028
刘金梅(), 姜晶晶, 马鑫, 黄冰心, 杨楠, 刘美媛, 丁兰平(
)
收稿日期:
2020-03-14
修回日期:
2020-06-12
出版日期:
2021-01-10
发布日期:
2020-06-11
通讯作者:
丁兰平
作者简介:
刘金梅(1996—), 女, 广西玉林人, 硕士研究生, 主要从事大型海藻的分类研究。email: 基金资助:
LIU Jinmei(), JIANG Jingjing, MA Xin, HUANG Bingxin, YANG Nan, LIU Meiyuan, DING Lanping(
)
Received:
2020-03-14
Revised:
2020-06-12
Online:
2021-01-10
Published:
2020-06-11
Contact:
DING Lanping
Supported by:
摘要:
沙菜属Hypnea海藻作为提取卡拉胶的原料之一, 具有重要的经济价值。但由于该属物种地理分布广泛, 表型可塑性强, 且缺乏详细的解剖学特征, 故有关其物种鉴定也就一直存在争议。本文利用冷冻切片技术, 通过形态学和解剖学方法, 对2013—2014年采自粤东汕头的沙菜属海藻进行了形态特征描述。经鉴定, 该地区沙菜属共有4种, 分别为密毛沙菜Hypnea boergesenii、裸干沙菜H. chordacea、长枝沙菜H. charoides和冻沙菜H. japonica。通过对这几种沙菜进行了较详细的内、外部结构特征分析, 给出了它们在国内外的地理分布及习性等信息, 并对沙菜属的科级分类系统(沙菜科Hypneaceae/赤叶藻科Cystocloniaceae)划分以及密毛沙菜是否为独立物种进行了讨论。
中图分类号:
刘金梅, 姜晶晶, 马鑫, 黄冰心, 杨楠, 刘美媛, 丁兰平. 我国粤东沙菜属(红藻门 杉藻目)的分类鉴定 *[J]. 热带海洋学报, 2021, 40(1): 99-110.
LIU Jinmei, JIANG Jingjing, MA Xin, HUANG Bingxin, YANG Nan, LIU Meiyuan, DING Lanping. Morphological taxonomy of genus Hypnea (Rhodophyta, Gigartinales) from eastern Guangdong, China[J]. Journal of Tropical Oceanography, 2021, 40(1): 99-110.
表1
密毛沙菜、鹿角沙菜、易曲沙菜和粗糙沙菜的特征比较"
粗糙沙菜H.aspera | 密毛沙菜H.boergesenii | 鹿角沙菜H.cervicornis | 易曲沙菜H.flexicaulis | 本文样品 | |
---|---|---|---|---|---|
藻体 | 不缠结 | 不缠结 | 缠结 | 缠结 | 不缠结 |
质地 | 软骨质 | 软骨质 | 膜质/亚软骨质 | 肉质/软骨质 | 软骨质 |
高度 | 5~7cm | 6~13cm | 10~14cm | 5~35cm | 6~10cm |
主轴 | 明显 | 明显 | 不明显 | 不明显 | 明显 |
分枝角度 | ≤90° | 常<90° | ≤90° | 45~150° | ≤90° |
枝端 | 伸直/弯曲 | 伸直/尖细 | 伸直/分叉/鹿角状 | 弯曲/钩状/鹿角状 | 伸直/尖细 |
镜状加厚 | 有 | 有 | 有 | 无 | 有 |
四分孢子囊位置 | 基部 | 基部/中部/上部 | 基部/中部 | 基部/中部 | 基部/中部/上部 |
四分孢子囊大小 | 长50~75μm; 宽22~37μm | 长28~36μm; 宽17~19μm | 长30~52μm; 宽17~27μm | 长35~55μm; 宽15~25μm | 长28~40μm; 宽17~28.5μm |
模式产地 | 新喀里多尼亚 | 中国台湾 | 巴西 | 日本 | 广东汕头 |
参考文献 | 本文 |
表1
密毛沙菜、鹿角沙菜、易曲沙菜和粗糙沙菜的特征比较"
粗糙沙菜H.aspera | 密毛沙菜H.boergesenii | 鹿角沙菜H.cervicornis | 易曲沙菜H.flexicaulis | 本文样品 | |
---|---|---|---|---|---|
藻体 | 不缠结 | 不缠结 | 缠结 | 缠结 | 不缠结 |
质地 | 软骨质 | 软骨质 | 膜质/亚软骨质 | 肉质/软骨质 | 软骨质 |
高度 | 5~7cm | 6~13cm | 10~14cm | 5~35cm | 6~10cm |
主轴 | 明显 | 明显 | 不明显 | 不明显 | 明显 |
分枝角度 | ≤90° | 常<90° | ≤90° | 45~150° | ≤90° |
枝端 | 伸直/弯曲 | 伸直/尖细 | 伸直/分叉/鹿角状 | 弯曲/钩状/鹿角状 | 伸直/尖细 |
镜状加厚 | 有 | 有 | 有 | 无 | 有 |
四分孢子囊位置 | 基部 | 基部/中部/上部 | 基部/中部 | 基部/中部 | 基部/中部/上部 |
四分孢子囊大小 | 长50~75μm; 宽22~37μm | 长28~36μm; 宽17~19μm | 长30~52μm; 宽17~27μm | 长35~55μm; 宽15~25μm | 长28~40μm; 宽17~28.5μm |
模式产地 | 新喀里多尼亚 | 中国台湾 | 巴西 | 日本 | 广东汕头 |
参考文献 | 本文 |
[1] | 丁兰平, 黄冰心, 王宏伟, 2015. 中国海洋红藻门新分类系统[J]. 广西科学, 22(2):164-188. |
DING LANPING, HUANG BINGXIN, WANG HONGWEI, 2015. New classification system of marine red algae of China[J]. Guangxi Sciences, 22(2):164-188 (in Chinese with English abstract). | |
[2] | 夏邦美, 张峻甫, 1999. 中国海藻志: 第二卷第五册红藻门伊谷藻目杉藻目红皮藻目[M]. 北京: 科学出版社: 78-90. |
XIA BANGMEI, ZHANG JUNFU, 1999. Flora algarum marinarum sinicarum: Tomus II: No. V: Rhodophyta Ahnfeltiales Gigartinales Rhodymeniales[M]. Beijing: Science Press: 78-90(in Chinese). | |
[3] | 张峻甫, 夏恩湛, 夏邦美, 1963. 钩沙菜和冻沙菜的比较研究[J]. 海洋与湖沼, 5(1):35-43. |
ZHANG JUNFU, XIA ENZHAN, XIA BANGMEI, 1963. A comparative study of Hypnea musciformis (WULF.) Lamouroux and Hypnea japonica Tanaka[J]. Oceanologia et Limnologia Sinica, 5(1):35-43 (in Chinese with English abstract). | |
[4] | AGARDH J G, 1851. Species, genera et ordines algarum, seu descriptiones succinctae specierum, generum et ordinum, quibus algarum regnum constituitur[M]. Lundae: C. W. K. Gleerup: 337-351, 352-506. |
[5] |
BITENCOURT F S, FIGUEIREDO J G, MOTA M R L, et al, 2008. Antinociceptive and anti-inflammatory effects of a mucin-binding agglutinin isolated from the red marine alga Hypnea cervicornis[J]. Naunyn-Schmiedeberg's Archives of Pharmacology, 377(2):139-148.
pmid: 18270688 |
[6] | CAIRES T A, COSTA I O, DE MATOS M R B, et al, 2013b. Phenological studies in populations of Hypnea musciformis (Rhodophyta: Gigartinales) in a tropical region of Brazil[J]. Brazilian Journal of Botany, 36(2):135-140. |
[7] | CASTELAR B, REIS R P, AZEREDO F, et al, 2016. Hypnea musciformis: alternative or complement to the production of Kappaphycus alvarezii introduced in tropical countries[J]. Aquaculture Research, 47(11):3538-3550. |
[8] | CHIOVITTI A, KRAFT G T, BACIC A, et al, 1998. Carrageenans from Australian representatives of the family Cystocloniaceae (Gigartinales, Rhodophyta), with description of Calliblepharis celatospora sp. nov., and transfer of Austroclonium to the family Areschougiaceae[J]. Journal of Phycology, 34(3):515-535. |
[9] |
DE FAVERI C, SCHMIDT É C, SIMIONI C, et al, 2015. Effects of eutrophic seawater and temperature on the physiology and morphology of Hypnea musciformis J. V. Lamouroux (Gigartinales, Rhodophyta)[J]. Ecotoxicology, 24(5):1040-1052.
pmid: 25750015 |
[10] | DE JESUS P B, SILVA M S, DE MATTOS LYRA G, et al, 2015. Extension of the distribution range of Hypnea stellulifera (Cystocloniaceae, Rhodophyta) to the South Atlantic: Morphological and molecular evidence[J]. Aquatic Botany, 123:26-36. |
[11] |
DE JESUS P B, NAUER F, DE MATTOS LYRA G, et al, 2016. Species-delimitation and phylogenetic analyses of some cosmopolitan species of Hypnea (Rhodophyta) reveal synonyms and misapplied names to H. cervicornis, including a new species from Brazil[J]. Journal of Phycology, 52(5):774-792.
pmid: 27283979 |
[12] | DE JESUS P B, NAUER F, DE MATTOS LYRA G, et al, 2019a. Phylogenetic relationships within the genus Hypnea (Cystocloniaceae, Rhodophyta): convergent evolution and its implications in the infrageneric classification[J]. Botanica Marina, 62(6):563-575. |
[13] | DE JESUS P B, DOS SANTOS PESTANA E M, DE JESUS AFFE H M, et al, 2019b. Reproductive morphology and phenological aspects of one morphological variant of Hypnea pseudomusciformis (Gigartinales, Rhodophyta)[J]. Acta Botanica Brasilica, 33(1):67-77. |
[14] | DEVI J S, BHIMBA B V, 2014. Antibacterial and antifungal activity of silver nanoparticles synthesized using Hypnea muciformis[J]. Biosciences Biotechnology Research Asia, 11(1):235-238. |
[15] | DING LANPING, MA YUANYUAN, HUANG BINGXIN, et al, 2013. Effects of seawater salinity and temperature on growth and pigment contents in Hypnea cervicornis J. Agardh (Gigartinales, Rhodophyta)[J]. BioMed Research International, 2013: 594308. |
[16] | GANESAN M, THIRUPPATHI S, JHA B, 2006. Mariculture of Hypnea musciformis (Wulfen) Lamouroux in South east coast of India[J]. Aquaculture, 256(1-4):201-211. |
[17] | GERALDINO P J L, YANG E C, BOO S M, 2006. Morphology and molecular phylogeny of Hypnea flexicaulis (Gigartinales, Rhodophyta) from Korea[J]. Algae, 21(4):417-423. |
[18] | GERALDINO P J L, YANG E C, KIM M S, et al, 2009. Systematics of Hypnea asiatica sp. nov. (Hypneaceae, Rhodophyta) based on morphology and nrDNA SSU, plastid rbcL, and mitochondrial cox1[J]. Taxon, 58(2):606-616. |
[19] | GERALDINO P J L, RIOSMENA-RODRIGUEZ R, LIAO L M, et al, 2010. Phylogenetic relationships within the genus Hypnea (Gigartinales, Rhodophyta), with a description of H. caespitosa sp. nov.[J]. Journal of Phycology, 46(2):336-345. |
[20] | GHADERI N, HASHTROUDI M S, 2017. Antibacterial and antioxidant activities of the red algae Hypnea charoides from coasts of Chabahar[J]. Research Journal of Pharmacognosy, 4(Supplement):54. |
[21] | GUIRY M D, [2020-03-12]. AlgaeBase: World-wide electronic publication[DB/OL]. Galway: National University of Ireland. http://www.algaebase.org. |
[22] | HOMMERSAND M H, FREDERICQ S, 2003. Biogeography of the marine red algae of the South African West Coast: a molecular approach[C]// Proceedings of the 17th International Seaweed Symposium. Oxford: Oxford University Press: 325-336. |
[23] | ISLAM S, AZIZ A, CHOWDHURY A H, 2010. Marine algae of St. Martin's Island, Bangladesh. VIII. New records of red algae (Rhodophyceae)[J]. Bangladesh Journal of Botany, 39(1):87-96. |
[24] | KANG P J, NAM K W, 2014. Notes on marine algal species from Korea[J]. Journal of Fisheries and Marine Sciences Education, 26(1):236-243. |
[25] |
KANG P J, NAM K W, 2015. Survey of indigenous species of marine algae in Korea: New record of Hypnea chordacea Kützing (Gigartinales, Rhodophyta)[J]. Journal of Fisheries and Marine Sciences Education, 27(1):198-202.
doi: 10.13000/JFMSE.2015.27.1.198 |
[26] |
KANG P J, NAM K W, 2018. New record of three economic Hypnea species (Gigartinales) in Korea[J]. Fisheries and Aquatic Sciences, 21(1):31.
doi: 10.1186/s41240-018-0108-x |
[27] | KNUTSEN S H, MURANO E, D'AMATO M, et al, 1995. Modified procedures for extraction and analysis of carrageenan applied to the red alga Hypnea musciformis[J]. Journal of Applied Phycology, 7(6):565-576. |
[28] | KÜTZING F T, 1843. Phycologia generalis oder Anatomie, Physiologie und Systemkunde der Tange. Mit 80 farbig gedruckten Tafeln, gezeichnet und gravirt vom Verfasser[M]. Leipzig: F. A. Brockhaus: 143-458. |
[29] | KÜTZING F T, 1847. Diagnosen einiger neuen ausländischen Algenspecies, welche sich in der Sammlung des Herrn Kammerdirectors Klenze in Laubach befinden[J]. Flora, 30:773-776. |
[30] | KÜTZING F T, 1868. Tabulae phycologicae; oder, Abbildungen der Tange[M]. Nordhausen: Gedruckt auf kosten des Verfassers: 1-35. |
[31] | KYLIN H, 1930. Über die Entwicklungsgeschichte der Florideen[J]. Acta Universitatis Lundensis, 26(6):1-104. |
[32] | KYLIN H, 1932. Die Florideenordnung Gigartinales[J]. Lunds University Arsskr, 28(8):1-88. |
[33] | LAMOUROUX J V F, 1813. Essai sur les genres de la famille des Thalassiophytes non articulées[M]. Paris: Annales du Muséum d'Histoire Naturelle: 21-47, 115-139, 267-293. |
[34] | LEWMANOMONT K, 1997. Species of Hypnea from Thailand[M]// Taxonomy of Economic Seaweeds, Vol. 6. California: University of California: 179-191. |
[35] | MASUDA M, YAMAGISHI Y, CHIANG Y M, et al, 1997. Overview of Hypnea (Rhodophyta, Hypneaceae)[M]// Taxonomy of Economic Seaweeds, Vol. 6. California: University of California: 127-133. |
[36] |
MIGUEL T B A R, SCHMIDT E C, BOUZON Z L, et al, 2014. Morphology, ultrastructure and immunocytochemistry of Hypnea cervicornis and Hypnea musciformis-(Hypneaceae, Rhodophyta) from the coastal waters of Ceará, Brazil[J]. Journal of Microscopy and Ultrastructure, 2(2):104-116.
doi: 10.1016/j.jmau.2014.03.004 |
[37] |
MILLAR A J K, PRUD'HOMME VAN REINE W F, 2005. Marine benthic macroalgae collected by Vieillard from New Caledonia and described as new species by Kützing[J]. Phycologia, 44(5):536-549.
doi: 10.2216/0031-8884(2005)44[536:MBMCBV]2.0.CO;2 |
[38] | MOHAMMAD M, SULTANA N, NASER M N, et al, 2018. Growth performances of Nile tilapia (Oreochromis niloticus) fed with seaweed (Hypnea sp.)[J]. Bangladesh Journal of Fisheries, 30(1):19-25. |
[39] | MSHIGENI K E, 1976. Studies on the reproduction of selected species of Hypnea (Rhodophyta, Gigartinales) from Hawaii[J]. Botanica Marina, 19(6):341-346. |
[40] | MSHIGENI K E, 1978. The biology and ecology of benthic marine algae with special reference to Hypnea (Rhodophyta, Gigartinales): a review of the literature[J]. Bibliotheca Phycologica, 37:1-168. |
[41] | MSHIGENI K E, CHAPMAN D J, 1994. Hypnea (Gigartinales, Rhodophyta)[M]// Biology of Economic Algae. The Hague: SPB Academic Publishing: 245-281. |
[42] | NAJAM R, AHMED S P, AZHAR I, 2010. Pharmacological activities of Hypnea musciformis[J]. African Journal of Biomedical Research, 13(1):69-74. |
[43] |
NAUER F, GUIMARÃES N R, CASSANO V, et al, 2014. Hypnea species (Gigartinales, Rhodophyta) from the southeastern coast of Brazil based on molecular studies complemented with morphological analyses, including descriptions of Hypnea edeniana sp. nov. and H. flava sp. nov.[J]. European Journal of Phycology, 49(4):550-575.
doi: 10.1080/09670262.2014.981589 |
[44] |
NAUER F, CASSANO V, OLIVEIRA M C, 2015. Description of Hypnea pseudomusciformis sp. nov., a new species based on molecular and morphological analyses, in the context of the H. musciformis complex (Gigartinales, Rhodophyta)[J]. Journal of Applied Phycology, 27(6):2405-2417.
doi: 10.1007/s10811-014-0488-y |
[45] | PAYRI C E, 2007. Revised checklist of marine algae (Chlorophyta, Rhodophyta and Ochrophyta) and seagrasses (Marine Angiosperma) of New Caledonia[J]. Documents Scientifiques et Techniques, 2:95-112. |
[46] |
REIS R P, LEAL M C R, YONESHIGUE-VALENTIN Y, et al, 2003. Efeito de fatores bióticos no crescimento de Hypnea musciformis (Rhodophyta-Gigartinales)[J]. Acta Botanica Brasilica, 17(2):279-286.
doi: 10.1590/S0102-33062003000200010 |
[47] |
RIBEIRO A L N L, CHIOZZINI V G, BRAGA E S, et al, 2017. Physiological responses and biofilter potential of Hypnea aspera (Rhodophyta, Gigartinales) cultivated in different availabilities of nitrate, ammonium, and phosphate[J]. Journal of Applied Phycology, 29(2):683-694.
doi: 10.1007/s10811-016-0970-9 |
[48] | SARGAZI F, RIAHI H, 2018. Intra-specific diversity in Hypnea species (Rhodophyta, Gigartinales)[J]. Iranian Journal of Botany, 24(1):72-83. |
[49] | SAUNDERS G W, CHIOVITTI A, KRAFT G T, 2004. Small-subunit rDNA sequences from representatives of selected families of the Gigartinales and Rhodymeniales (Rhodophyta). 3. Delineating the Gigartinales sensu stricto[J]. Canadian Journal of Botany, 82(1):43-74. |
[50] | SHIN W G, BOO S M, 1994. A systematic study on the genus Hypnea (Gigartinales, Rhodophyta) in Korea[J]. Korean Journal of Phycology, 9(1):7-20. |
[51] | SILVA P C, BASSON P W, MOE R L, 1996. Catalogue of the benthic marine algae of the Indian Ocean[M]. Berkeley: University of California Press: 294-295. |
[52] |
SOUZA C Á P B, DE OLIVEIRA B A SANTOS S A A R, , et al, 2019. Orofacial antinociceptive effect of sulphated polysaccharide from the marine algae Hypnea pseudomusciformis in rodents[J]. Inflammopharmacology, 27(2):261-269.
doi: 10.1007/s10787-018-0454-4 pmid: 29460077 |
[53] | TANAKA T, 1941. The genus Hypnea from Japan[J]. Hokkaido University Collection of Scholarly and Academic Papers, 2(2):227-250. |
[54] | TANAKA Y, TAKASE T, KOMAZAWA I, 2011. Seasonal growth and maturation of Hypnea japonica (Gigartinales, Rhodophyta) along the Coast of Sokodo in Hachijo-jima Island, Central Japan[J]. Aquaculture Science, 59(4):593-598. |
[55] | TANI M, YAMAGISHI Y, MASUDA M, et al, 2003. Taxonomic notes on marine algae from Malaysia. IX. Four species of Rhodophyceae, with the description of Chondria decidua sp. nov.[J]. Botanica Marina, 46(1):24-35. |
[56] | TUASTUMBAN D J, KINAMOT V, 2017. Marine red algae (Rhodophyta) in the intertidal areas of Siquijor, Philippines[J]. Prism, 22(1):1-12. |
[57] |
VÁZQUEZ-DELFÍN E, BOO G H, RODRÍGUEZ D, et al, 2016. Hypnea musciformis (Cystocloniaceae) from the Yucatan Peninsula: morphological variability in relation to life-cycle phase[J]. Phycologia, 55(2):230-242.
doi: 10.2216/15-118.1 |
[58] | WAI M K, NYUNT T, KYAW S P P, et al, 2009. Marine Algae of Mazin Coastal Areas, Thandwe Township, Rakhine State[J]. Journal of the Myanmar Academy of Arts and Sciences, 7(5):1-38. |
[59] |
WOLF M A, SFRISO A, ANDREOLI C, et al, 2011. The presence of exotic Hypnea flexicaulis (Rhodophyta) in the Mediterranean Sea as indicated by morphology, rbcL and cox1 analyses[J]. Aquatic Botany, 95(1):55-58.
doi: 10.1016/j.aquabot.2011.02.009 |
[60] | WOMERSLEY H B S, 1994. The marine benthic flora of southern Australia, Part IIIA, Bangiophyceae and Florideophyceae (Acrochaetiales, Nemaliales, Gelidiales, Hildenbrandiales and Gigartinales sensu lato)[M]. Canberra: Australian Biological Resources Study: 1-508. |
[61] |
WON B Y, JEONG S Y, CHO T O, 2016. Morphology and phylogeny of Craspedocarpus jindoensis sp. nov. (Cystocloniaceae, Gigartinales) from Korea[J]. Phycologia, 55(6):611-618.
doi: 10.2216/16-27.1 |
[62] | XIA BANGMEI, WANG YONGQIANG, 1997. Some species of the genus Hypnea (Gigartinales, Rhodophyta) from China[M]// Taxonomy of Economic Seaweeds, Vol. 6. California: University of California: 193-206. |
[63] |
YAMAGISHI Y, MASUDA M, 2000. A taxonomic revision of a Hypnea charoides-valentiae complex (Rhodophyta, Gigartinales) in Japan, with a description of Hypnea flexicaulis sp. nov.[J]. Phycological Research, 48(1):27-35.
doi: 10.1111/pre.2000.48.issue-1 |
[64] | YANG M Y, MACAYA E C, KIM M S, 2015. Molecular evidence for verifying the distribution of Chondracanthus chamissoi and C. teedei (Gigartinaceae, Rhodophyta)[J]. Botanica Marina, 58(2):103-113. |
[65] |
YANG M Y, KIM M S, 2016. Molecular phylogeny of the genus Chondracanthus (Rhodophyta), focusing on the resurrection of C. okamurae and the description of C. cincinnus sp. nov.[J]. Ocean Science Journal, 51(3):517-529.
doi: 10.1007/s12601-016-0046-4 |
[66] | YOSHIDA T, 1998. Marine algae of Japan[M]. Tokyo: Uchida Rokakuho: 737-740. |
[1] | 张彤, 凌娟, 岳维忠, 王友绍, 程皓, 孙红岩, 黄小芳, 梁童茵, 周卫国, 董俊德. 基于CiteSpace的广东省典型蓝碳生态系统碳汇研究进展的可视化分析[J]. 热带海洋学报, 2024, 43(5): 58-68. |
[2] | 霍嘉欣, 李颖心, 宋严, 朱晴, 周伟华, 袁翔城, 黄晖, 刘胜. 木珊瑚科Cladopsammia gracilis和Rhizopsammia wettsteini 线粒体全基因组比较与系统进化分析*[J]. 热带海洋学报, 2024, 43(3): 22-30. |
[3] | 周治刚, 岳文, 李辉权, 林阳阳. 树种类型和潮滩高程对广东湛江高桥红树林碳储量的影响[J]. 热带海洋学报, 2024, 43(2): 108-120. |
[4] | 李能辉, 黄庆, 李航, 曾俊, 吴科锋, 谭华强. 基于形态和分子数据对湛江海域4个江蓠物种(红藻门)的分类学研究[J]. 热带海洋学报, 2024, 43(2): 34-47. |
[5] | 申键, 简焯锴, 欧阳雪敏, 艾彬. 结合潮位校正的雷州半岛红树林湿地动态变迁遥感监测[J]. 热带海洋学报, 2024, 43(1): 137-153. |
[6] | 张程飞, 任广波, 吴培强, 胡亚斌, 马毅, 阎宇, 张菁锐. 基于高分光学与全极化SAR的海南八门湾红树林种间分类方法[J]. 热带海洋学报, 2023, 42(2): 153-168. |
[7] | 周月月, 王友绍. 广东沿海红树林区水质变化特征与富营养状态评估[J]. 热带海洋学报, 2022, 41(6): 1-11. |
[8] | 韩通, 李晶晶, 刘正一, 刘凯, 张金浩, 秦松, 钟志海. 红纤维虾形草(Phyllospadix iwatensis)种子形态及内部特征[J]. 热带海洋学报, 2022, 41(6): 105-113. |
[9] | 尹健强, 李开枝, 谭烨辉. 南海南部海域浮游介形类新种——南沙深海浮萤*[J]. 热带海洋学报, 2022, 41(2): 193-197. |
[10] | 刘金梅, 黄冰心, 丁兰平, 王雪聪, 闫璟, 闫盼竹, 张瑶. 我国海南省东南部台湾那屿藻的形态观察及系统发育分析[J]. 热带海洋学报, 2021, 40(6): 76-82. |
[11] | 牛彪彪, 翟梦怡, 李扬. 塞舌尔角毛藻的形态学再描述和分子系统学分析[J]. 热带海洋学报, 2021, 40(4): 44-49. |
[12] | 龙超, 罗肇河, 韦章良, 杨芳芳, 李茹, 龙丽娟. 海南三亚鹿回头虫黄藻(Effrenium voratum)的形态学和系统发育学研究*[J]. 热带海洋学报, 2021, 40(4): 35-43. |
[13] | 郑应刚, 张洪生, 李晓恋, 张周昊. 基于遥感影像边界特性对南海海洋内波检测算法研究 *[J]. 热带海洋学报, 2020, 39(6): 41-56. |
[14] | 孟天, 陈佐, 朱军, 邹潇潇, 符青艳, 鲍时翔. 海南岛海洋绿藻新记录种未氏仙掌藻(Halimeda velasquezii)的形态学与分子系统学分析[J]. 热带海洋学报, 2020, 39(6): 114-121. |
[15] | 董娟, 任广波, 胡亚斌, 逄今朝, 马毅. 基于高分辨率遥感的珊瑚礁地貌单元体系构建和分类方法—以8波段Worldview-2影像为例[J]. 热带海洋学报, 2020, 39(4): 116-129. |
|