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Unique genes carried by abundant species enhance CH_(4) emissions during the growing season at the Tibetan Plateau
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作者 Yue Liang Liyuan He +7 位作者 jieying wang Yanfang Liu Wenying wang Chengjie Ren Jun wang Yaoxin Guo Ninglian wang Fazhu Zhao 《Soil Ecology Letters》 CSCD 2024年第2期83-95,共13页
CH_(4) emission rates followed an increased pattern during the growing season at Tibetan Plateau.•Unique genes carried by abundant species were positively correlated with CH_(4) emission rates.•Climate factors influen... CH_(4) emission rates followed an increased pattern during the growing season at Tibetan Plateau.•Unique genes carried by abundant species were positively correlated with CH_(4) emission rates.•Climate factors influenced CH_(4) emission rates by regulating microbial community and their genes.Microorganisms play pivotal roles in soil methane(CH_(4))emissions and their functional genes are origins of a key mechanism for soil CH4-cycling.However,understanding of the roles of specific genes(e.g.,unique or shared genes carried by species)underlying CH_(4)-cycling remains elusive.Here,we measured CH_(4) emission rates and investigated variations in microbial community and the abundance of genes carried by species during the growing season in alpine meadow on the Tibetan Plateau.We discovered that CH_(4) emission rates increased from 394.4,745.9,and 1092.7µg CH4 m−2 h−1,in April,June,and August,respectively,and had a positive correlation with unique genes carried by abundant species during the growing season.Moreover,we found that unique genes carried by abundant species involved in methanogenesis processes have a higher abundance than methanotrophic processes.Further analysis indicated that climate factors(i.e.,mean monthly temperature(MMT)and mean monthly precipitation(MMP))influenced microbial community and their functional genes,and therefore affected the CH_(4) emission rates.Overall,the present study provides a novel insight into the variation of soil CH4 emissions from a functional gene perspective,highlighting the important roles of unique genes carried by abundant species in CH4 emissions in the Tibetan Plateau under seasonal variation. 展开更多
关键词 soil CH_(4) emissions unique genes abundant species CH_(4)-cycling growing season
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水面舰艇军人家庭弹性评估量表的编制
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作者 汪洁滢 董朝阳 +1 位作者 方钊 王云霞 《中华航海医学与高气压医学杂志》 CAS CSCD 2022年第3期350-355,共6页
目的:编制适用于水面舰艇军人的家庭弹性评估工具。方法:对4654名水面舰艇军人施测,采用探索性因素分析、验证性因素分析、校标效度、信度分析等方法对数据进行分析。结果:探索性因素分析提取7个因子,累计方差解释率为63.923%。验证性... 目的:编制适用于水面舰艇军人的家庭弹性评估工具。方法:对4654名水面舰艇军人施测,采用探索性因素分析、验证性因素分析、校标效度、信度分析等方法对数据进行分析。结果:探索性因素分析提取7个因子,累计方差解释率为63.923%。验证性因素分析显示,因子模型拟合良好(χ^(2)/Df=4.214,RMSEA=0.031,CFI=0.929,NFI=0.909,GFI=0.915,AGFI=0.905),量表总分与各维度达到中等程度相关(r=0.505~0.688,P<0.01),各维度之间为低度相关(r=0.190~0.310,P<0.01),总量表Cronbach’sα系数为0.904,7个分量表Cronbach’sα系数为0.775~0.864。校标关联效度表明,量表总分与家庭亲密度与适应性量表和心理弹性量表呈显著正相关(r1=0.681,r2=0.637,均P<0.01)。结论:本研究编制的水面舰艇军人家庭弹性评估量表具有良好的信效度,可以作为评估水面舰艇军人家庭弹性的有效工具。 展开更多
关键词 水面舰艇 军人 家庭弹性评估量表 信度 效度
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