Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.
Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China; State Key Laboratory for Biology of Plant Disease and Insect Pests, Beijing, China.
Sci Total Environ. 2017 Nov 15;598:1027-1036. doi: 10.1016/j.scitotenv.2017.02.058. Epub 2017 May 1.
Metam-sodium (MS) is widely used as a soil pre-plant fumigant as methyl bromide is phased out of agriculture. However, the information about how fumigation with MS affects the soil microbial community is still limited. In this study, a 66-day-long experiment was conducted to ascertain the effects of MS on soil substrate-induced respiration (SIR), microbial biomass nitrogen (MBN), NH-N and NO-N concentrations, as well as the abundance of the total bacteria and fungi and the expression of genes involved in nitrogen cycling. In addition, 16S rRNA amplicon sequencing was used to investigate the effect of MS on the soil bacterial community. The half-lives of high and low doses of methyl isothiocyanate (MITC) are 10.51h and 9.93h, respectively. MS caused a short-term inhibition of SIR, MBN; had an accumulation effect on NH4-N concentration in the short term; reduced the abundance of the total bacteria and fungi; and suppressed the expression of the nifH, AOA-amoA, anammox bacteria, nosZ, nirS, and narG. In addition, under the influence of MS, soil bacterial diversity decreased significantly in the long term, bacterial community structure was affected, and there was a shift in the predominant population; for example, some genera, such as Paenibacillus and Luteimonas, significantly increased in number. These changes in bacterial flora may be closely related to the growth of crops. Our study provides useful information for environmental safety assessments of MS in China.
甲磺隆(MS)作为甲基溴在农业领域逐步淘汰后的土壤预植熏蒸剂被广泛使用。然而,关于 MS 熏蒸如何影响土壤微生物群落的信息仍然有限。本研究进行了为期 66 天的实验,以确定 MS 对土壤基质诱导呼吸(SIR)、微生物生物量氮(MBN)、NH4-N 和 NO3-N 浓度以及总细菌和真菌丰度以及参与氮循环的基因表达的影响。此外,还使用 16S rRNA 扩增子测序来研究 MS 对土壤细菌群落的影响。高、低剂量的异硫氰酸甲酯(MITC)的半衰期分别为 10.51h 和 9.93h。MS 对 SIR、MBN 产生短期抑制作用;短期内对 NH4-N 浓度有积累作用;降低总细菌和真菌丰度;抑制 nifH、AOA-amoA、厌氧氨氧化菌、nosZ、nirS 和 narG 的表达。此外,在 MS 的影响下,土壤细菌多样性在长期内显著降低,细菌群落结构受到影响,优势种群发生变化;例如,某些属,如 Paenibacillus 和 Luteimonas,数量显著增加。这些细菌菌群的变化可能与作物的生长密切相关。我们的研究为中国 MS 的环境安全评估提供了有用的信息。