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酶解发酵大豆的应用有效调节了茶园土壤中的相关微生物群落,并对茶树新梢中的脂质代谢产物产生了积极影响。

The application of enzymatic fermented soybean effectively regulates associated microbial communities in tea soil and positively affects lipid metabolites in tea new shoots.

作者信息

Zhang Shuning, Sun Litao, Shi Yujie, Song Yujie, Wang Yu, Fan Kai, Zong Rui, Li Yusheng, Wang Linjun, Bi Caihong, Ding Zhaotang

机构信息

Tea Research Institute, Qingdao Agricultural University, Qingdao, China.

Tea Research Institute, Shandong Academy of Agricultural Sciences, Jinan, China.

出版信息

Front Microbiol. 2022 Aug 23;13:992823. doi: 10.3389/fmicb.2022.992823. eCollection 2022.

Abstract

Compared with traditional organic fertilizer, fermented soybean is a better fertilizer resource in tea plantations. The application of organic fertilizer is a feasible practice to mitigate the soil degradation caused by the overuse of chemical fertilizers, which can effectively regulate soil microbial communities in tea plantations. However, the effects of fermented soybean on soil microbial communities, soil metabolites and metabolites in tea new shoots have not been systematically demonstrated, and their interactions have never been studied. Here, we investigated the responses of the soil microbial community, soil metabolites and metabolites of tea new shoots to urea fertilization (UF), naturally fermented soybean fertilization (NFS) and enzymatic fermented soybean fertilization (EFS), and analyzed the relationships between soil microbes, soil metabolites and metabolites in tea new shoots. The results showed that soil bacterial communities were dominated by and , and soil fungal communities were dominated by and at the genus level. In EFS, bacterial genera ( and ) and fungal genera ( and ) presented high abundances, which were correlated with soil carbohydrate and lipid including D-Mannitol, D-Sorbitol, 9,12-Octadecadienoic acid and (Z)-13-Docosenoic acid. Enzymatic fermented soybean fertilization also affected the lipid metabolites in tea new shoots. Glycerolipids and glycerophospholipids significantly increased in EFS, which positively correlated with some soil microbial communities. Besides, the application of fermented soybean fertilizer could increase the contents of TP, AP and AK, which were also important environmental factors affecting the structure of soil microbial community in tea plantation. It was concluded that fermented soybean fertilization could improve soil nutrition, regulate associated microbial communities, and positively affect lipid metabolites in tea new shoots. This study not only explores the relationships between soil microbes and metabolites in tea plants, but also provides feasible technical guidance to cultivate high-quality tea using soybean as high-grade fertilizer.

摘要

与传统有机肥相比,发酵大豆是茶园中更优质的肥料资源。施用有机肥是缓解因过度使用化肥导致土壤退化的一种可行措施,它能有效调节茶园土壤微生物群落。然而,发酵大豆对土壤微生物群落、土壤代谢产物以及茶新梢中代谢产物的影响尚未得到系统论证,它们之间的相互作用也从未被研究过。在此,我们研究了土壤微生物群落、土壤代谢产物以及茶新梢代谢产物对尿素施肥(UF)、自然发酵大豆施肥(NFS)和酶解发酵大豆施肥(EFS)的响应,并分析了土壤微生物、土壤代谢产物与茶新梢代谢产物之间的关系。结果表明,在属水平上,土壤细菌群落以 和 为主,土壤真菌群落以 和 为主。在EFS处理中,细菌属( 和 )和真菌属( 和 )呈现出高丰度,它们与包括D - 甘露醇、D - 山梨醇、9,12 - 十八碳二烯酸和(Z)- 13 - 二十二碳烯酸在内的土壤碳水化合物和脂质相关。酶解发酵大豆施肥还影响了茶新梢中的脂质代谢产物。甘油脂和甘油磷脂在EFS处理中显著增加,这与一些土壤微生物群落呈正相关。此外,施用发酵大豆肥料可增加TP、AP和AK的含量,这些也是影响茶园土壤微生物群落结构的重要环境因素。研究得出结论,发酵大豆施肥可改善土壤养分,调节相关微生物群落,并对茶新梢中的脂质代谢产物产生积极影响。本研究不仅探索了茶树土壤微生物与代谢产物之间的关系,还为利用大豆作为优质肥料培育高品质茶叶提供了可行的技术指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5572/9445587/4e8db3b11962/fmicb-13-992823-g001.jpg

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