绿球藻的英文
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"绿球藻"怎么读用"绿球藻"造句
英文翻译手机版
- chlorella
- "绿"英文翻译 green
- "球"英文翻译 sphere; globe
- "藻"英文翻译 algae
- "绿球藻科" 英文翻译 : chlorococcaceae
- "绿球藻目" 英文翻译 : chlorococcales
- "绿球藻属" 英文翻译 : chlorococcum; prochlorococcus
- "绿球藻萃取" 英文翻译 : chlorella vulgaris extract
- "微绿球藻" 英文翻译 : nannochloris oculata; nannochloropsis oculata
- "原绿球藻" 英文翻译 : prochlorococcus
- "球藻" 英文翻译 : marimo
- "绿球置点" 英文翻译 : green spot; greenspot
- "海球藻" 英文翻译 : halosphaera
- "空球藻" 英文翻译 : eudonna
- "球藻属" 英文翻译 : eudorina
- "实球藻" 英文翻译 : pandorina
- "小球藻" 英文翻译 : [植物学] chlorella
- "紫球藻" 英文翻译 : p.cruentum; porphyridium
- "柄球藻科" 英文翻译 : mischococaceae
- "柄球藻目" 英文翻译 : mischococcales
- "柄球藻属" 英文翻译 : mischococcus
- "不定腔球藻" 英文翻译 : c. dubium
- "刺球藻属" 英文翻译 : hystrichosphaeridium
- "点形粘球藻" 英文翻译 : g. punctata
- "粉核小球藻" 英文翻译 : chlorella pyrenoidosa; chlorella pyrenoidsa
- "古刺球藻属" 英文翻译 : palaeohystrichophora
例句与用法
- Effects of 6 - ba and 2 , 4 - d on the growth and metabolism of nannochloris oculata
二氯笨氧乙酸对微绿球藻生长与代谢的影响 - Results showed that these algae have different ability in resisting uv - b enhancement : spirulina plalensis > nanochloropsis sp > chaetoceros gracilis > proroceatrum micans > phaeocystis globosa scherffel . uv can destroy ch1a , making ch1a content decrease
结果表明这五种藻类抗uv - b的能力大小的顺序为:钝顶螺旋藻微绿球藻纤细角刺藻海洋原甲藻球形棕囊藻。 - This condition is also true for e2 but inversely for e6 , p2 and p1 station which declined about 10 times compared with data of last autumn . prochlorococcuswas found in p3 , e7 , e6 , p2 during autumn cruise , and in p2 , p1 during spring cruise
在春季,仅在p2 、 p1站的混合层检测到,位置相比秋季外移,可能与长江冲淡水在此季节逐渐强盛有关,原绿球藻较少分布于低盐度水体。 - Cell density of picoeukaryotes also changed much between two seasons . in autumn a high value in yellow sea was observed in el station , 0 . 31 104cells / ml , and increased from e4 to outer station in east china sea , the highest value was found in p2 , 0
原绿球藻并不是分布于所有站位,两航次在黄海的e1 、 e2 、 e3站位均未检测到原绿球藻,秋季在东海的p3 、 e7 、 e6 、 p2四站位检测到了其存在,且密度由里向外逐渐增大,最后在p2站表层密度超过了聚球藻。 - In the first step , quantitative and qualitative characteristic of soils influenced by soil microalgal were studied in this step . in this study , four different algal ( chroococcus , chlorococcum , navicula and chalmydomonas ) and one algal mixture , which were formed by the above four algal species , were cultivated in two different mediums ( soil and double distilled water ) , under regular illumination or dark condition respectively . we estimated the environmental ph , the microorganism biomass ( not including algal ) , and the organic matter content very 20 culture days and estimated the available phosphorus after 60 culture days . we got the results by making graphs and extreme - difference analysis after 0 , 20
实验以土壤(经过高温烧制除去微生物和土壤有机质的影响)和水(重蒸水)为两种不同的基质,在基质中接种五种相同重量的土壤微藻藻液(立方色球藻、土生绿球藻、舟形藻、沙角衣藻以及由四种藻种形成的混合藻液) ,分别进行见光和和黑暗培养,在0天、 20天、 40天和60天时,测定环境ph值、微生物量(不包括藻类) 、有机质含量,进行极差分析和图形比较。 - Carotenoids can make chla return from excited state to ground state by direct or un - direct quenching , in order to prevent algae from photooxidation . on the other hand , it was indicated that polysaccharides have functions in resisting uv . spirulina plalensis can accumulate both cellular and extracellular polysaccharides during uv treatment , it showed highest uv resistant ability ; nanochloropsis sp also can accumulate cellular polysaccharides , while extracellular polysaccharides reduced ; the cellular polysaccharides content of phaeocystis globosa scherffel decreased and extracellular polysaccharides content did not increased markedly , showing lowest uv resistant ability
钝顶螺旋藻和微绿球藻中在较低的uv辐射强度下类胡萝卜素含量升高,而叶绿素a保持相对稳定,说明类胡萝卜素可能对藻类起到一定保护作用,可能通过直接的或间接的方式猝灭激发态的叶绿素,来保障光合作用的进行;本实验发现多糖的累积和分泌与藻体的抗uv能力有相关,钝顶螺旋藻的细胞内和细胞外多糖分泌旺盛,其抗uv能力最强;微绿球藻体内能积累多糖,而胞外多糖分泌减少;球形棕囊藻的胞内多糖含量减少,胞外多糖含量增加也不明显,其抗uv能力最弱。
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