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石松类和蕨类植物质体基因组结构演化研究进展 被引量:5
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作者 杜新宇 卢金梅 李德铢 《生物多样性》 CAS CSCD 北大核心 2019年第11期1172-1183,共12页
近年来,随着测序技术的发展,石松类和蕨类植物的核基因组、质体基因组以及线粒体基因组研究发展迅速,质体基因组研究工作更是呈爆发式增长。截至2019年3月1日,GenBank公布的石松类和蕨类植物的175个质体基因组中,约3/4为最近两年新增。... 近年来,随着测序技术的发展,石松类和蕨类植物的核基因组、质体基因组以及线粒体基因组研究发展迅速,质体基因组研究工作更是呈爆发式增长。截至2019年3月1日,GenBank公布的石松类和蕨类植物的175个质体基因组中,约3/4为最近两年新增。研究内容从早期对个别质体基因组结构和序列特征的简单报道,逐渐发展到综合性的比较基因组学和系统发育基因组学研究。目前已发表的质体基因组覆盖了石松类和蕨类植物的所有目和大部分科,这两大类群的质体基因组结构变异和系统发育的基本框架已逐渐清晰。这些研究为我们理解维管植物的早期演化提供了重要参考。本文对石松类和蕨类植物的质体基因组结构特征进行了系统梳理,发现其结构变异主要包括大片段倒位、IR区边界变动、基因或内含子丢失等,其中一些结构变异可作为较高分类阶元的共衍征。RNA编辑和长片段非编码序列插入普遍存在于石松类和蕨类植物的质体基因组中,但其起源、演化机制和功能等仍不清楚。我们对质体基因组的应用、系统发育研究中质体和核基因组的优劣性,以及系统发育基因组学的前景进行了评述。 展开更多
关键词 石松类 蕨类 质体基因组 基因组结构变异 RNA编辑 长片段非编码序列插入 系统发育基因组学
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Effect of temperature on the leaching of heavy metals from nickel mine tailings in the arctic area,Norway
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作者 Shuai Fu jinmei lu +1 位作者 Ingar Walder Daishe Wu 《International Journal of Agricultural and Biological Engineering》 SCIE 2023年第2期152-158,共7页
The leaching of heavy metals from tailings deposit due to the oxidation of sulphidic tailings and formation of acidic leachate is considered a high risk to the surrounding environment.Temperature plays an important ro... The leaching of heavy metals from tailings deposit due to the oxidation of sulphidic tailings and formation of acidic leachate is considered a high risk to the surrounding environment.Temperature plays an important role in the leaching of heavy metals from tailings in changing acid-based environment,especially in the Arctic area.To investigate how the temperature variation affected metal release from tailings in the Arctic area,a series of column leaching experiments was conducted under four temperature situations(5°C,10°C,14°C and 18°C).Physicochemical properties,Fe,Zn,Ni and Mn concentrations of leachates at each cycle were measured,and multivariate statistical analysis was applied to research the effect of temperature on heavy metals leaching from tailings in the Arctic area.The results showed that higher temperatures encouraged tailings to oxidation and sulfuration of and promoted heavy metal release from the tailings through precipitation and erosion.Ni,Zn and Mn have similar releasing resources from tailings and positive correlation in the leaching activity.Rising temperature accelerated Fe leaching;Fe leaching promoted leaching of the other metals,especially of Mn.Appropriately increase temperature will accelerate oxidization and sulfidization of the tailings,promote acid generation and increase TDS and,finally,promote the release of heavy metals.Climate change,with rising temperatures increasing the risk of heavy metals leaching from the tailings,should be given greater attention.Keeping tailings away from the appropriate temperature and in a higher alkalinity is a good method to control the leaching of heavy metals from tailings. 展开更多
关键词 TAILINGS heavy metals LEACHING temperature Norway
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