上述结果以Sulfur deposition changed the community structure of soil nematodes by affecting omnivores-predators为题发表在Science of the Total Environment(2021, 771: 144912)上。土壤化学组研究助理张爱林(现中国科学院新疆生态与地理研究所博士研究生)为论文的第一作者,姜勇研究员为通讯作者。该研究得到国家自然科学基金面上项目(31870441、32071563)资助。
![](http://www.iae.cas.cn/gb2019/xwzx_156509/kyjz/202103/W020210325347861061674.jpg)
图1 硫添加对土壤理化性质、微生物生物量、线虫群落组成及丰富度影响的结构方程模型
(The models fit the data well: χ2 = 10.375, p = 0.663, AIC = 40.375, RMSEA < 0.001, CFI = 1.000, GFI = 0.933. Numbers adjacent to arrows are the standardized path coefficients (equivalent to correlation coefficients). Arrow thickness indicate the strength of the relationships. Solid arrows denote significant effects (P < 0.1) or marginally significant (0.05 < P < 0.01) effects, the direction of arrows represents top–down and bottom–up forces; R2 values associated with response variables indicate the variance accounted for by the mode. Non-significant paths are removed in the final model. Microbial biomass: the first principal components (PC1) of MBC, MBN, MBP; BF: Bacterivores (Ba) and Fungivores (Fu);Nematodes community structure: the first principal components (PC1) of SR, H', λ, J'.)