Liu Miao, Ye Liyun, Zhao Wenting, Li Zhengzhen, Korpelainen Helena, Li Chunyang
College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, China.
College of Agriculture and Biotechnology, Zhejiang University, Hangzhou, China.
Plant Cell Environ. 2025 Jun;48(6):3981-3996. doi: 10.1111/pce.15404. Epub 2025 Jan 27.
Nano-selenium fertilizers can promote plant growth and nitrogen availability. However, little information is available on the effects of nano-selenium on tea leaf quality, soil nutrient availability and associated microbe-driven mechanisms. This study examined the effects of nano-selenium on the tea leaf quality and soil nitrogen cycling in 20-year-old tea plantations when the leaves were sprayed with ammonium or nitrate. Leaf selenium and amino acid contents increased ninefold and 9%, respectively, with nano-selenium in "Zhongcha108" and "Longjing43." Rhizosphere bacterial and fungal community compositions were more sensitive to selenium and nitrogen applications in "Longjing43" than in "Zhongcha108." "Zhongcha108" enriched more taxa related to microbial growth, while more taxa related to cellular maintenance and nutrient acquisition enriched in "Longjing43." Nano-selenium application decreased the copy number of AOA and AOB genes, and nosZ and nirK genes by 59%, 53%, 37% and 46% under ammonium, and by 77%, 43%, 38% and 65%, respectively, under nitrate spraying, in "Longjing43." However, the expression of these genes increased by nano-selenium in "Zhongcha108" with ammonium spraying. It is concluded that a nano-selenium application increases tea leaf quality, and this effect on nitrogen cycling and ecological functioning largely depends on the tea cultivar-specific bacterial and fungal composition and function.
纳米硒肥可以促进植物生长并提高氮的有效性。然而,关于纳米硒对茶叶品质、土壤养分有效性及相关微生物驱动机制的影响,目前所知甚少。本研究考察了在20年生茶园中,当用铵态氮或硝态氮喷施叶片时,纳米硒对茶叶品质和土壤氮循环的影响。在“中茶108”和“龙井43”中,纳米硒使叶片硒含量和氨基酸含量分别提高了9倍和9%。与“中茶108”相比,“龙井43”根际细菌和真菌群落组成对硒和氮施用更为敏感。“中茶108”富集了更多与微生物生长相关的分类群,而“龙井43”中富集了更多与细胞维持和养分获取相关的分类群。在“龙井43”中,纳米硒施用使铵态氮处理下氨氧化古菌(AOA)和氨氧化细菌(AOB)基因以及一氧化二氮还原酶(nosZ)和亚硝酸盐还原酶(nirK)基因的拷贝数分别降低了59%、53%、37%和46%,在硝态氮喷施处理下分别降低了77%、43%、38%和65%。然而,在“中茶108”中,铵态氮喷施时纳米硒使这些基因的表达增加。研究得出结论,施用纳米硒可提高茶叶品质,而这种对氮循环和生态功能的影响很大程度上取决于茶树品种特异性的细菌和真菌组成及功能。