[Effects of Continuous Cropping on the Physiochemical Properties, Pesticide Residues, and Microbial Community in the Root Zone Soil of Lycium barbarum].

Q2 Environmental Science
Meng-Yuan He, Cong Shen, Jun-Hua Zhang, Yuan-Duo Wang
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引用次数: 0

Abstract

Continuous cropping is a common obstacle limiting the high quality and yield of Lycium barbarum (wolfberry). To clarify the response of soil characteristics of the wolfberry root zone to continuous cropping years, we systematically determined the physicochemical properties and pesticide residues of soils in the wolfberry root zone with different continuous cropping years. In addition, soil bacterial and fungal communities were characterized using high-throughput sequencing technology. The results were as follows: The content of total salt and imidacloprid in the root zone of wolfberry increased with increasing years of continuous cropping. Compared to that with 2 and 9 years, the total salt content in the root zone of wolfberry with 15 years of continuous cropping increased by 51.97% and 54.33%, respectively, and the imidacloprid content increased by 39.58% and 36.61%, respectively. Alkaline nitrogen and available potassium showed an increasing and then decreasing trend. Compared to that with 2 and 15 years, alkaline nitrogen and available potassium in the root-soil of wolfberry with 9 years of continuous cropping increased by 16.94%-28.09% and 18.31%-18.34%, respectively. The diversity and abundance of bacterial communities and the abundance of fungal communities were higher in the root-soil of wolfberry with 9 years of continuous cropping compared to that with 15 years of continuous cropping. In addition, the increase in continuous cropping years also increased the accumulation of harmful plant pathogens such as Pseudomonas, Arthrobacter, Actinomucor, and Trichoderma in the root zone of L. barbarum. Soil total salinity, organic matter, alkaline hydrolyzable nitrogen, and available potassium were the main factors influencing the distribution of bacterial communities. Soil alkaline hydrolyzable nitrogen, available potassium, and ammonium nitrogen were the main factors influencing the distribution of fungal communities. In addition, the soil bacteria in the root zone of L. barbarum were dominated by metabolic functions; in particular, amino acid metabolism, energy metabolism, and nucleotide metabolism were most abundant in the root soil of wolfberry with 9 years of continuous cropping, whereas the highest abundance of functional genes related to membrane translocation was found in the root-soil of wolfberry with 15 years of continuous cropping. The soil fungi were all dominated by saprophytic trophic types, followed by pathogenic cross-nutrients in the root zone of L. barbarum. In conclusion, long-term continuous cropping induced changes in the soil microenvironment in the root zone of L. barbarum, increased soil residues of harmful pesticides and the enrichment of plant pathogens, and reduced the diversity of soil bacterial and fungal communities. Therefore, it is necessary to control the rate of application of soil nutrients and pesticides in the management of L. barbarum and to carry out deep ploughing and deep tilling in good time, and the turnover of old plants in the cultivation of L. barbarum.

[连作对枸杞根区土壤理化性质、农药残留和微生物群落的影响]。
连作是限制枸杞优质高产的常见障碍。为明确枸杞根区土壤特性对连作年限的响应,我们系统测定了不同连作年限枸杞根区土壤的理化性质和农药残留。此外,还利用高通量测序技术对土壤细菌和真菌群落进行了表征。结果如下:随着连作年限的增加,枸杞根区土壤中全盐和吡虫啉的含量增加。与连作 2 年和 9 年相比,连作 15 年的枸杞根区总盐含量分别增加了 51.97%和 54.33%,吡虫啉含量分别增加了 39.58%和 36.61%。碱解氮和可利用钾呈先增加后减少的趋势。与连续种植 2 年和 15 年相比,连续种植 9 年的枸杞根系土壤中的碱解氮和可利用钾分别增加了 16.94%-28.09% 和 18.31%-18.34%。与连作 15 年相比,连作 9 年的枸杞根系土壤中细菌群落的多样性和丰度以及真菌群落的丰度都更高。此外,连作年限的增加也增加了枸杞根区有害植物病原菌的积累,如假单胞菌、节杆菌、放线菌和毛霉。土壤总盐度、有机质、碱性水解氮和可利用钾是影响细菌群落分布的主要因素。土壤碱性水解氮、可利用钾和铵态氮是影响真菌群落分布的主要因素。此外,枸杞根区土壤细菌以代谢功能为主,其中氨基酸代谢、能量代谢和核苷酸代谢在连作 9 年的枸杞根区土壤中含量最高,而与膜转运相关的功能基因在连作 15 年的枸杞根区土壤中含量最高。在枸杞根区,土壤真菌均以营养营养型为主,其次是病原交叉营养型。总之,长期连作会引起芒果根区土壤微环境的变化,增加土壤中有害农药的残留和植物病原体的富集,降低土壤细菌和真菌群落的多样性。因此,在 L. barbarum 的管理中必须控制土壤养分和农药的施用量,适时进行深耕和深翻,并在 L. barbarum 的栽培中进行老株轮换。
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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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