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Transcriptome sequencing of essential marine brown and red algal species in China and its significance in algal biology and phylogeny
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作者 WU Shuangxiu SUN Jing +7 位作者 CHI Shan WANG Liang WANG Xumin LIU Cui LI Xingang YIN Jinlong LIU Tao YU Jun 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2014年第2期1-12,共12页
Most phaeophytes (brown algae) and rhodophytes (red algae) dwell exclusively in marine habitats and play important roles in marine ecology and biodiversity. Many of these brown and red algae are also important res... Most phaeophytes (brown algae) and rhodophytes (red algae) dwell exclusively in marine habitats and play important roles in marine ecology and biodiversity. Many of these brown and red algae are also important resources for industries such as food, medicine and materials due to their unique metabolisms and me-tabolites. However, many fundamental questions surrounding their origins, early diversification, taxonomy, and special metabolisms remain unsolved because of poor molecular bases in brown and red algal study. As part of the 1 000 Plant Project, the marine macroalgal transcriptomes of 19 Phaeophyceae species and 21 Rhodophyta species from China's coast were sequenced, covering a total of 2 phyla, 3 classes, 11 orders, and 19 families. An average of 2 Gb per sample and a total 87.3 Gb of RNA-seq raw data were generated. Approxi-mately 15 000 to 25 000 unigenes for each brown algal sample and 5 000 to 10 000 unigenes for each red algal sample were annotated and analyzed. The annotation results showed obvious differences in gene expres-sion and genome characteristics between red algae and brown algae;these differences could even be seen between multicellular and unicellular red algae. The results elucidate some fundamental questions about the phylogenetic taxonomy within phaeophytes and rhodophytes, and also reveal many novel metabolic pathways. These pathways include algal CO2 fixation and particular carbohydrate metabolisms, and related gene/gene family characteristics and evolution in brown and red algae. These findings build on known algal genetic information and significantly improve our understanding of algal biology, biodiversity, evolution, and potential utilization of these marine algae. 展开更多
关键词 PHAEOPHYCEAE brown algae RHODOPHYTA red algae marine macroalgae transcriptome sequencing secondary generation sequencing
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4种大型褐藻类菌胞素氨基酸的提取工艺优化及鉴定
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作者 朱文轩 钱亮亮 +4 位作者 程同杰 胡志娟 唐倩 韩秀 孙颖颖 《食品研究与开发》 CAS 北大核心 2023年第4期114-121,共8页
类菌胞素氨基酸(mycosporine-like amino acids,MAAs)是小分子、水溶性代谢产物,广泛存在于大型褐藻中。以羊栖菜、海带、马尾藻和裙带菜4种大型褐藻为原料,采用单因素和正交试验验,分析提取温度、提取时间、提取次数和液料比对MAAs提... 类菌胞素氨基酸(mycosporine-like amino acids,MAAs)是小分子、水溶性代谢产物,广泛存在于大型褐藻中。以羊栖菜、海带、马尾藻和裙带菜4种大型褐藻为原料,采用单因素和正交试验验,分析提取温度、提取时间、提取次数和液料比对MAAs提取率的影响。结果表明,提取温度、提取时间和液料比对4种大型褐藻MAAs得率影响较大。对于羊栖菜、海带、马尾藻和裙带菜MAAs提取而言,适宜提取温度、提取时间和液料比依次为40、45、45℃和40℃;2、2、2 h和3 h;25、20、25 mL/g和20 mL/g,MAAs得率分别可达到31.40%、46.71%、8.29%和21.92%。通过对4种大型褐藻MAAs提取物进行紫外波长扫描、高效液相色谱和质谱测定,并参考研究报道,鉴定它们中MAAs组成,主要包括palythine、palythenic acid、porphyra-334和shinorine。同时,根据palythine等4种类菌胞素氨基酸单体化合物(mycosporine-like amino acid,MAA)摩尔消光系数,可计算出4种大型褐藻MAAs提取物中MAA含量。其中,羊栖菜和马尾藻中palythenic acid含量较高,是此种MAA的理想来源。该文提出了羊栖菜、海带、马尾藻和裙带菜MAAs优化提取工艺,并第一次明确此4种大型褐藻MAAs组成。 展开更多
关键词 大型褐藻 类菌胞素氨基酸 提取 鉴定 palythenic acid
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碳酸酐酶在大型海洋褐藻获取与利用无机碳过程中的作用 被引量:4
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作者 毕燕会 卫宁宁 +3 位作者 李佳莉 王震 许玲 周志刚 《生命科学》 CSCD 北大核心 2019年第3期296-309,共14页
与大型海洋红藻和绿藻相比,褐藻的生产力最大。碳是构成生物质的主要元素,它在海水中的主要存在形式是HCO_3~–;而HCO_3~–如何进入褐藻细胞而被光合同化为生物质,是人们一直在探讨的问题。综述了迄今为止有关褐藻对无机碳利用的研究结... 与大型海洋红藻和绿藻相比,褐藻的生产力最大。碳是构成生物质的主要元素,它在海水中的主要存在形式是HCO_3~–;而HCO_3~–如何进入褐藻细胞而被光合同化为生物质,是人们一直在探讨的问题。综述了迄今为止有关褐藻对无机碳利用的研究结果,指出由碳酸酐酶(carbonic anhydrase, CA)介导的HCO_3~–应是褐藻从海水环境中获取无机碳的主要途径。鉴于微藻细胞内不同细胞器之间存在无机碳转运的事实,褐藻CA在此过程中也起着不可忽视的作用。基于对不同褐藻CA活性的检测结果推测,CA应分布于细胞的不同部位,至少存在于胞内和周质空间中,以应对细胞内外界环境的变化。对不同亚型的CA在褐藻细胞乃至组织中时空分布格局的研究,是探讨褐藻细胞如何获取并高效利用无机碳的关键。 展开更多
关键词 褐藻 CO2 海水 重碳酸盐 碳酸酐酶 CO2浓缩机制 亚细胞定位
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