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研究了南极罗斯海地区沉积物中可培养微生物多样性,并检测了菌株胞外酶活性,为开发利用南极资源奠定基础。采用Zobell2216E培养基、土豆培养基(PDA)及稀释平板划线法分离并获得纯培养的细菌和真菌,分别通过16SrDNA、18S/ITS序列鉴定分析了可培养微生物的多样性和系统发育。从南极罗斯海沉积物样品中获得78株细菌和54株真菌,细菌、真菌的优势菌株分别为嗜冷杆菌属(Psychrobacter)、枝孢属(Cladosporium);78株细菌菌株中有2株与模式菌株的16SrDNA基因序列相似性小于97%,可能是潜在的细菌新物种。细菌API20NE生理生化和真菌产胞外酶活性结果表明,获得的细菌和真菌大多数可检测到胞外水解酶活性。本研究丰富了南极可培养微生物资源,为南极罗斯海地区可培养微生物的多样性研究以及南极微生物资源的应用研究奠定了基础。 相似文献
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本研究对产虾青素的南极菌株NJ298进行了鉴定,同时对影响虾青素产量的主要环境因子进行了测试。形态特征、生理生化特征及ITS序列的系统发育分析表明,南极菌株NJ298属于红酵母属(Rhodotorula);虾青素积累主要在NJ298生长的对数期和稳定期;乙酸钠、蛋白胨是合成虾青素的最佳碳、氮源;在0-15℃之间,南极酵母NJ298均可以生长,但是低温更有利于虾青素的积累;pH值在6-8范围内NJ298均可生长,最适pH值为7.5;该菌对盐度要求不严格。 相似文献
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南极因其独特的自然环境成为潜在、重要的微生物资源库,是产生新型生物活性物质和先导化合物菌株的潜在种源地,南极微生物正在成为创新药物研究新的重要资源。虽然近年来对南极微生物次级代谢产物的研究逐渐增加,但与温带和热带微生物研究相比仍处于初级阶段。对从南极普里兹湾海洋沉积物中获得的两株枝孢霉属真菌Cladosporium sp. NJF4和NJF6进行次级代谢产物分离及结构鉴定,获得20个化合物。化合物结构类型包括甾醇(1)、倍半萜类(7—8)、生物碱类(9—14)、二酮哌嗪(2—5、15—17)、芳香酸(6、18—19)等,其中倍半萜类(7—8)为首次从枝孢霉属真菌中分离得到,以上研究将为丰富南极微生物次级代谢产物库奠定一定的研究基础。 相似文献
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南极环境对人类生存具有举足轻重的作用。南极环境管理是保护南极环境和保证持续利用南极资源的必要手段 ,信息技术在南极环境管理中的应用必将极大地推动南极环境管理的进步。本文为提高我国南极环境管理的科学性和效率 ,根据南极环境、南极环境管理以及南极站区人类活动的特点 ,尝试研究开发了南极站区环境管理信息系统 ( ASEMIS:Antarctic StationEnvironmental Management Information System)。ASEMIS具有管理、模拟、利用南极站区环境、南极站区人类活动等有关信息的功能 相似文献
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南极磷虾的区域特色、资源保有量优势和广泛的应用价值,使它成为重要的战略资源。南极磷虾商业化开发战略是海洋战略的重要组成部分,其资源特色为战略制定与实施提供了支撑,符合战略性新兴产业发展要求。基于中国海洋开发的战略环境,结合南极磷虾资源特色,评估其战略能力,确立发展目标为形成并完善南极磷虾资源开发的产业体系,确立发展战略重点为跟踪南极磷虾资源养护管理措施变化和开发利用政策、中国南极磷虾产业发展模式及风险评估、中国发展南极磷虾产业关键技术突破与产业化机制、中国发展南极磷虾产业的政策措施与保障机制研究。 相似文献
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Studies on culture condition and extracellular hydrolase of psychrophilic bacteria from Arctic sea ice
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Arctic sea ice in the polar region provides a cold habitat for microbial community.Arctic sea ice microorganisms are revealed to be of considerable impor- tance in basic research and potential in biotechnological application.This paper in- vestigated the culture condition and extracellular hydrolase of 14 strains of different Arctic sea ice bacteria.The results showed that optimal growth temperature of strains is 15℃or 20℃.The optimal pH is about 8.0.They hardly grow at acid condition. 3% NaCl is necessary for better growth.These strains have different abilities in pro- ducing amylase,protcase,cellulase and lipase.Pseudoalteronomas sp.Bsi429 and Pseudoalteronomas sp.Bsi539 produced both cellulose,protease and lipase.These results provide a basis for further developing and exploiting the cold adapted marine enzyme resources. 相似文献
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外源Ca2+对藏药独一味幼苗速冷冻抗性的效应 总被引:1,自引:1,他引:0
利用不同浓度CaCl2喷施独一味两对叶龄幼苗,然后分别迅速置不同低温(4 ℃、0 ℃和-4 ℃)处理48 h,以28 ℃为对照,处理结束测定幼苗叶片叶绿素含量、细胞膜稳态性、抗氧化酶活性和膜质过氧化等指标的变化,旨在揭示外源Ca2+对提高独一味幼苗速冷冻抗性的作用效应,为独一味人工驯化栽培提供理论依据。结果表明,独一味幼苗对0 ℃及以上低温速冷冻表现较强的适应性。喷施15 mmol\5L-1的CaCl2能显著诱导增强独一味幼苗叶中SOD、POD活性,降低膜质过氧化程度,增强细胞膜系统的稳定性,有效改善独一味幼苗的速冷冻抗性,缓解速冷冻胁迫对幼苗的伤害,使叶绿素含量维持在较高水平,为适宜条件下迅速恢复生长奠定了良好基础。 相似文献
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Food security in cold and arid regions in the world is threatened by stressful and unpredictable environments.The sus-tainable and economically viable solution for increasing stability of food productivity in cold and arid regions is genetic improvement of crops towards high resistance to abiotic stresses,mainly cold and drought resistance.It is often empha-sized that crop genetic improvement lies in exploiting the gene pools of the wild relatives of the crop plant.Wild barley,H.spontaneum,the progenitor of cultivated barley,is a selfing annual grass of predominantly Mediterranean and Irano-Turanian distribution that penetrates into desert environments where it maintains stable populations.Wild barley is also found in cold regions,such as in Tibet.The adaptation of wild barley to the arid region in Israel and Jordan,and the cold region in Tibet has accumulated rich genetic diversities for drought,salt,and cold resistances in wild barley,which is the genetic resource for barley and other crop improvement in arid and cold regions.These genetic diversities are revealed by allozymes,DNA-based molecular markers,and morphological and physiological traits of wild barley plants.Quantita-tive trait loci(QTLs) related to drought resistance were identified in wild barley via the QTL mapping approach.Drought resistance genes such as dehydrins,hsdr4,and eibi1 were identified in wild barley based on the candidate gene approach,gene differential expression approach,and molecular genetic approach,respectively.Genetics and genomics of wild bar-ley cold resistance have not been exploited yet,remaining a huge treasure for future crop improvement of cold resistance.Advanced backcross QTL analysis,the introgression libraries based on wild barley as donors,a QTL approach based on wide crosses using wild barley,and positional cloning of natural QTLs will play prevailing roles to help us understand the molecular control of cold and drought tolerance.Integration of QTL information into a breeding pipeline aimed at im-proving tolerance t 相似文献
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DMSP(二甲基巯基丙酸内盐)是地球上最丰富的有机含硫化合物之一,同时也是海洋微生物的重要营养物。浮游植物是其主要的生产者。DMSP还是海洋中DMS(二甲基硫)的重要来源和前体,而DMS的排放与全球气候变化存在密切关联。细菌在DMSP的降解及DMS的生成方面扮演着重要角色。有关DMSP生物合成、代谢及其生态影响的研究已开展了近70年,但涉及高纬度极地低温海域的相关研究却为数甚少。本文在简要介绍DMSP生物合成与代谢,以及DMSP降解途径中的关键酶基因及其产生菌的基础上,结合笔者的工作实践,对近年来在极地低温海域的相关研究进行了介绍并展开了部分讨论。随着国内对微生物驱动水圈地球元素循环的重视,有关极地海域细菌参与DMSP/DMS代谢的研究工作将极大地增进人们对于微生物在极地海洋生态系统中生态地位的认识,也对评估极地海洋微生物群落对全球气候环境变化的响应与反馈具有重要的参考意义。 相似文献
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María Luisa Ávila-Jiménez Stephen J. Coulson Torstein Solhøy & Anna Sjöblom 《Polar research》2010,29(1):127-137
There are over 500 species of arthropods recorded from Svalbard. These animals overwinter either within the soil or on the ground surface, and have to tolerate an environment where the ground is frozen for over 9 months each year. Three cold-tolerance strategies have been described from Svalbard invertebrates: freeze avoidance, freeze tolerance and desiccation. Once in a cold-tolerant state the animals can be extremely cold tolerant in terms of both minimum exposure temperature and period of exposure. How the overwintering capabilities of these animals will be affected by climate changes during the next 100 years, as predicted by climate models, is not yet known. Four principle factors with an impact on overwintering of the terrestrial arthropod fauna are outlined here: (1) warmer winter temperatures, with an increased frequency of extreme events such as freeze–thaw cycles and surface icing; (2) changes in snow fall and snow lie; (3) pollutant load; and (4) dispersal of invertebrates to Svalbard. Finally, areas where further research is required are highlighted: including the development of controlled multi-season field experiments; effect of freeze–thaw cycles; changes in thickness and distribution of snow lie, with the subsequent effects on duration of the summer period; chill susceptibility of soil arthropods; assessing potential colonizing species and the likelihood of these species becoming established; assessing the effect of gene flow from surrounding populations; interactions between pollution and cold tolerance; anoxia stress; and the genetics of cold tolerance. 相似文献
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内蒙古大兴安岭林区极端气温事件变化特征 总被引:2,自引:1,他引:1
利用内蒙古大兴安岭林区11个气象站1971~2014年日平均气温数据,采用线性趋势、Morlet小波分析、克里金插值法对内蒙古大兴安岭林区极端气温的年变化进行分析。研究表明:极端高温天气和生物生长季天数在20世纪80年代中期以后呈显著增多趋势,极端低温天气呈显著减少趋势;在空间分布上,所有站点极端高温天气和生物生长季天数呈上升趋势,极端低温天气呈下降趋势,但空间差异明显。极端低温天气主要受27、18、11、7 a时间尺度周期影响。极端高温天气28 a左右周期振荡最为强烈,视为第一主周期,对极端高温天气影响最为显著,在2018年以后的大约8 a间(2019~2026年)极端高温天气可能会更加频繁。生物生长季受28 a时间尺度周期影响,且在2015~2022年生物生长季天数增长处于偏大期。 相似文献