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Morphological and molecular discrimination of green macroalgae Chaetomorpha aerea and C. linum 被引量:1
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作者 HUANG Bingxin TENG Linhong DING Lanping 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2016年第4期118-123,共6页
Green macroalgae Chaetomorpha aerea and C. linum are taxonomically confused. In this paper, we tried morphological and molecular analyses to separate these two species. C. aerea and C. linum can be distinguished from ... Green macroalgae Chaetomorpha aerea and C. linum are taxonomically confused. In this paper, we tried morphological and molecular analyses to separate these two species. C. aerea and C. linum can be distinguished from morphological characteritics, such as frond dimension, cells size and shape, their mean length/width ratios(LWR), and cell walls constriction. Thalli of C. aerea attenuate basipetally, with diameter 270–500 μm at upper portion, 160–360 μm at middle portion, 100–160 μm at basal portion. For the upper part, the length of cells is less than their diameter. Cell walls usually constrict at the dissepiments, which are pellucid or colorless and give the filament beaded appearance. In contrast, thalli of C. linum often have a constant diameter of 90–300 μm within the same individual, cell walls usually do not constrict and cells are cylindrical or barrel shaped. The LWR is larger than that of C. aerea. Results show that the pairwise distance between two species is 3.6%–3.7% for 18 S r RNA gene and 53.5%–54.3% for ITS region. In phylogeny, they distribute at distant clades, which confirms a genetic divergence at molecular level. In addition, morphological data indicates that filament diameter of C. linum samples is highly variable, ranging from 90 μm to 300 μm. Then these two species can be considered as separate species. 展开更多
关键词 chaetomorpha aerea chaetomorpha linum molecular identification morphology comparison 18S rRNA ITS
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盐度和营养盐胁迫对线形硬毛藻生长的影响
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作者 孙远远 史德杰 +2 位作者 王磊 丰爱秀 马克波 《河北渔业》 2021年第9期9-13,共5页
测定了在水温20和25℃条件下不同盐度(41.9‰、31.8‰、24.8‰、15.9‰、11.5‰和9.7‰)和极端营养盐(富含氮、磷和去除氮、磷)分别胁迫12 d后线形硬毛藻(Chaetomorpha linum)的生长情况。结果表明,在水温20和25℃时,盐度对线形硬毛藻... 测定了在水温20和25℃条件下不同盐度(41.9‰、31.8‰、24.8‰、15.9‰、11.5‰和9.7‰)和极端营养盐(富含氮、磷和去除氮、磷)分别胁迫12 d后线形硬毛藻(Chaetomorpha linum)的生长情况。结果表明,在水温20和25℃时,盐度对线形硬毛藻特定生长率(SGR)均有显著影响,且该影响在两个温度组间没有显著差异(P<0.05)。在盐度为31.8‰时,SGR达到最大值24.93%/d~25.14%/d。当盐度升高至41.9‰,SGR下降不显著。随着盐度降低,SGR下降。当盐度降至11.5‰时,SGR下降显著。当盐度≤15.9‰时,藻体在培养至第9天发生质壁分离。在水温20℃时极端营养盐对SGR具有显著影响,而在水温25℃时影响不显著。相对于氮、磷浓度,盐度可能是线形硬毛藻生长的限制因子。 展开更多
关键词 盐度 营养盐 线形硬毛藻(chaetomorpha linum) 生长
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环境条件对线形硬毛藻营养盐吸收影响的季节变化 被引量:4
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作者 张宇 宫庆礼 李景玉 《海洋湖沼通报》 CSCD 北大核心 2015年第1期50-62,共13页
研究了线形硬毛藻在不同温度、盐度和营养盐浓度条件下对NH4^+-N、NO3^--N和PO4^3--P的吸收速率的季节性变化。实验结果显示,在5~30℃范围内,线形硬毛藻对NH4^+-N、NO3^--N和PO4^3--P的吸收速率受温度和季节影响显著,最适温度范围基... 研究了线形硬毛藻在不同温度、盐度和营养盐浓度条件下对NH4^+-N、NO3^--N和PO4^3--P的吸收速率的季节性变化。实验结果显示,在5~30℃范围内,线形硬毛藻对NH4^+-N、NO3^--N和PO4^3--P的吸收速率受温度和季节影响显著,最适温度范围基本维持在15~25℃,且春季和秋季的吸收速率高于夏季和冬季。低盐度(0~10)对NH4^+-N的吸收没有显著影响,对NO-3-N的吸收有促进作用,而对PO4^3-P的吸收有抑制作用。除了个别低盐度条件外,NH4^+-N、NO3^--N和PO4^3--P的最大吸收速率大多出现在春季,而最小吸收速率大多出现在冬季。线形硬毛藻在不同浓度的营养盐条件下大多呈现出开放型的吸收模式,在高浓度下各个季节均能吸收营养盐。本研究结果为阐明线形硬毛藻作为"绿潮"灾害藻类的爆发机制提供了理论基础,同时为线形硬毛藻作为新型工具藻在富营养化水域生境修复和陆基工厂化养殖废水处理中的应用提供了科学依据。 展开更多
关键词 温度 盐度 营养盐浓度 线形硬毛藻 氮吸收速率 磷吸收速率
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