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日光温室黄瓜长期连作下自毒物质积累与土壤肥力因子的关系

[Relationship between accumulation of autotoxins and soil fertility factors under long-term continuous cropping of cucumber in solar greenhouse].

作者信息

Wang Shuang, Zheng Shi-Wei, Li Xiao, Zhang Yi-di, Wu Tong, Fu Hong-Dan, Sun Zhou-Ping

机构信息

National & Local Joint Engineering Research Center of Northern Horticultural Facilities Design & Application Technology, Ministry of Education Key Laboratory of Protected Horticulture, Liaoning Key Laboratory of Horticulture, College of Horticulture, Shenyang Agricultural University, Shenyang 110866, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2022 Mar;33(3):784-792. doi: 10.13287/j.1001-9332.202202.030.

Abstract

In this study, we investigated the effects of long-term continuous cucumber cropping on phenolic acids in rhizosphere soil, as well as their link to soil chemical characteristics, enzyme activities, and microbiological activities, using rhizosphere soil from the 2nd, 6th, 10th, 14th, 18th, 20th, 24th, and 26th round of cucumber cultivation in solar greenhouse. The results showed that contents of phenolic acids increased significantly with increasing continuous cropping rounds. The increase amount per round of total phenolic acid was significantly higher in the early stage (0-2 rounds) and late stage (20-26 rounds) than middle stage (10-14 rounds) of continuous cropping. Soil nutrient contents were enriched, while invertase enzyme activity and microbial activities were decreased. Redundancy analysis showed that organic matter, total phosphorus, total nitrogen, available nitrogen, microbial biomass carbon and microbial metabolic entropy were main soil fertility factors correlating with the accumulation of phenolic acids. Results of structural equation model showed that soil phosphorus enrichment directly led to the accumulation of phenolic acids, and that nitrogen enrichment indirectly facilitated the accumulation of phenolic acids by altering the activity of microorganisms. As a result, proper nitrogen and phosphorus fertilizers application would reduce the accumulation of phenolic acids and alleviate the cucumber continuous cropping obstacles.

摘要

在本研究中,我们利用日光温室黄瓜种植第2、6、10、14、18、20、24和26茬的根际土壤,研究了长期连作黄瓜对根际土壤中酚酸的影响,以及它们与土壤化学特性、酶活性和微生物活性的关系。结果表明,酚酸含量随着连作茬数的增加而显著增加。连作前期(0 - 2茬)和后期(20 - 26茬)总酚酸每茬的增加量显著高于中期(10 - 14茬)。土壤养分含量增加,而转化酶活性和微生物活性降低。冗余分析表明,有机质、总磷、总氮、有效氮、微生物生物量碳和微生物代谢熵是与酚酸积累相关的主要土壤肥力因子。结构方程模型结果表明,土壤磷富集直接导致酚酸积累,而氮富集通过改变微生物活性间接促进酚酸积累。因此,合理施用氮磷肥可减少酚酸积累,缓解黄瓜连作障碍。

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