The importance of soil organic carbon (SOC) under forests in the global carbon cycle depends on the stability of the soil carbon and its availability to soil microbial biomass. We investigated the effects of success...The importance of soil organic carbon (SOC) under forests in the global carbon cycle depends on the stability of the soil carbon and its availability to soil microbial biomass. We investigated the effects of successive rotations of Chinese fir (Cunninghamia lanceolata (Lamb.) Hook) plantations on the stability of SOC and its availability to microbes by adopting the two-step hydrolysis with H2SO4 and density fractionation. The results showed that successive rotations of Chinese fir decreased the quantity of total SOC, recalcitrant fraction, and carbohydrates in Labile Pool I (LPI), and microbial properties evidently, especially at 0-10 cm horizon. However, cellulose included in Labile Pool Ⅱ (LP Ⅱ) and the cellulose/total carbohydrates ratio increased in successive rotations of Chinese fir. The noncellulose of carbohydrates included in LPI maybe highly available to soil microbial biomass. Hence the availability of SOC to microbial biomass declined over the successive rotations. Although there was no significant change in recalcitrance of SOC over the successive rotations of Chinese fir, the percentage of heavy fraction to total SOC increased, suggesting that the degree of physical protection for SOC increased and SOC became more stable over the successive rotations. The degradation of SOC quality in successive rotation soils may be attributed to worse environmental conditions resulted from disturbance that related to "slash and burn" site preparation. Being highly correlated with soil microbial properties, the cellulose/total carbohydrates ratio as an effective indicator of changes in availability of SOC to microbial biomass brought by management practices in forest soils.展开更多
为确定患病半滑舌鳎的病原,从其体内分离到3株革兰氏阴性菌,将其分别命名为ST-1、ST-3和ST-6,进行细菌理化特性、药敏试验、16S rDNA测序以及组织病理学观察等方面的研究,并建立了外膜蛋白(OMP)基因的SYBR Green I荧光定量PCR检测方法...为确定患病半滑舌鳎的病原,从其体内分离到3株革兰氏阴性菌,将其分别命名为ST-1、ST-3和ST-6,进行细菌理化特性、药敏试验、16S rDNA测序以及组织病理学观察等方面的研究,并建立了外膜蛋白(OMP)基因的SYBR Green I荧光定量PCR检测方法。结果显示,3株分离菌株的理化特性符合创伤弧菌特征,16S rDNA与创伤弧菌标准菌株ATCC29307序列相似性达99%以上,系统发育树分析显示,3株分离株与创伤弧菌自然聚为一支,最终鉴定为创伤弧菌;药敏试验显示,3株菌对头孢克肟、头孢哌酮、链霉素、亚胺培南和氟苯尼考等药物高度敏感。人工回归感染试验表明,分离株具有致病性,且半滑舌鳎、斑马鱼的临床症状与自然患病鱼症状相似;组织病理学观察显示,鳃丝上皮细胞增生,鳃小片肿胀黏连、颗粒细胞和黏液细胞增多,肝脏中央静脉淤血,肾脏出血、坏死,肠道黏膜固有层萎缩、黏液细胞增多等。进一步建立OMP基因的荧光定量PCR方法,结果显示,标准曲线的相关系数为0.995,检测下限为1.88×10~2 CFU/mL。以上结果可为半滑舌鳎弧菌病的致病机理、分子诊断和防治提供科学参考。展开更多
基金supported by the National Natural Sci-ence Foundation of China (No. 30470303)the Key Project of the Knowledge Innovation Program of the Chinese Academy of Sciences (No. KZCX2-YW-405)
文摘The importance of soil organic carbon (SOC) under forests in the global carbon cycle depends on the stability of the soil carbon and its availability to soil microbial biomass. We investigated the effects of successive rotations of Chinese fir (Cunninghamia lanceolata (Lamb.) Hook) plantations on the stability of SOC and its availability to microbes by adopting the two-step hydrolysis with H2SO4 and density fractionation. The results showed that successive rotations of Chinese fir decreased the quantity of total SOC, recalcitrant fraction, and carbohydrates in Labile Pool I (LPI), and microbial properties evidently, especially at 0-10 cm horizon. However, cellulose included in Labile Pool Ⅱ (LP Ⅱ) and the cellulose/total carbohydrates ratio increased in successive rotations of Chinese fir. The noncellulose of carbohydrates included in LPI maybe highly available to soil microbial biomass. Hence the availability of SOC to microbial biomass declined over the successive rotations. Although there was no significant change in recalcitrance of SOC over the successive rotations of Chinese fir, the percentage of heavy fraction to total SOC increased, suggesting that the degree of physical protection for SOC increased and SOC became more stable over the successive rotations. The degradation of SOC quality in successive rotation soils may be attributed to worse environmental conditions resulted from disturbance that related to "slash and burn" site preparation. Being highly correlated with soil microbial properties, the cellulose/total carbohydrates ratio as an effective indicator of changes in availability of SOC to microbial biomass brought by management practices in forest soils.