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Chemical Evolution During the Formation of Molecular Clouds
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作者 jingfei sun Fujun Du 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2022年第6期269-290,共22页
To study the chemical evolution during the formation of molecular clouds,we model three types of clouds with different density structures:collapsing spherical,collapsing ellipsoidal,and static spherical profiles.The c... To study the chemical evolution during the formation of molecular clouds,we model three types of clouds with different density structures:collapsing spherical,collapsing ellipsoidal,and static spherical profiles.The collapsing models are better than the static models in matching the observational characteristics in typical molecular clouds.This is mainly because the gravity can speed up the formation of some important molecules(e.g.,H_(2),CO,OH)by increasing the number density during collapse.The different morphologies of prolate,oblate,and spherical clouds lead to differences in chemical evolution,which are mainly due to their different evolution of number density.We also study the effect of initial chemical compositions on chemical evolution,and find that H atoms can accelerate OH formation by two major reactions:O+H→OH in gas phase and on dust grain surfaces,leading to the models in which hydrogen is mainly atomic initially better match observations than the models in which hydrogen is mainly molecular initially.Namely,to match observations,initially hydrogen must be mostly atomic.The CO molecules are able to form even without the pre-existence of H_(2).We also study the influence of gas temperature,dust temperature,intensity of interstellar radiation field and cosmic-ray ionization rate on chemical evolution in static clouds.The static CO clouds with high dust temperature,strong radiation field,and intensive cosmic rays are transient due to rapid CO destruction. 展开更多
关键词 ISM abundances-(ISM:)evolution-ISM MOLECULES
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外源有机酸对铝胁迫下菊芋生理响应系统的调控效应
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作者 毛轩雯 王志超 +10 位作者 阮心依 孙靖菲 张雅婷 陆锦灏 邵甜甜 王娴 肖佳敏 肖莉 叶梦瑶 吴玉环 刘鹏 《植物学报》 CAS CSCD 北大核心 2023年第4期573-589,共17页
铝(Al)是酸性土壤常见的金属污染物之一。为探明外源有机酸对铝胁迫下菊芋(Helianthus tuberosus)生理特征及根系DNA损伤的影响,以耐铝品种徐州菊芋和铝敏感品种资阳菊芋为材料,设置0、350和700μmol·L^(-1)铝处理,同时分别施加0... 铝(Al)是酸性土壤常见的金属污染物之一。为探明外源有机酸对铝胁迫下菊芋(Helianthus tuberosus)生理特征及根系DNA损伤的影响,以耐铝品种徐州菊芋和铝敏感品种资阳菊芋为材料,设置0、350和700μmol·L^(-1)铝处理,同时分别施加0、30、60和90μmol·L^(-1)复合有机酸,探究外源有机酸对铝胁迫下各时期(7、14和21天)菊芋生理响应和DNA损伤的影响。结果表明,铝胁迫抑制菊芋根伸长与根系活力,严重损害菊芋的光合机构与抗氧化系统,随着铝浓度的增加,DNA拖尾程度升高,DNA受损加剧。而施加复合有机酸能有效缓解铝胁迫造成的损伤。施加60μmol·L^(-1)有机酸可增强抗氧化酶活性,提高最大光化学效率并促进根尖有机酸分泌,其中柠檬酸分泌量分别比对照高2倍(徐州菊芋)及0.75倍(资阳菊芋),根尖铝含量降低,根系活力增强,徐州菊芋和资阳菊芋DNA尾距较单独铝处理组下降51.53%和35.10%,显著缓解DNA拖尾现象,较大程度修复了DNA断裂。综上,铝胁迫对菊芋造成的损害严重且较难缓解,60μmol·L^(-1)有机酸能增强低铝胁迫下菊芋生理响应,降低DNA受损程度,提高菊芋的抗逆性,且在铝敏感品种资阳菊芋中缓解效果更好。该研究揭示了外源复合有机酸对铝胁迫下菊芋生理响应系统的调控作用,可为菊芋等经济作物在南方酸铝地区的种植与生产提供理论依据。 展开更多
关键词 铝胁迫 复合有机酸 菊芋 生理响应 DNA损伤
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