The prevalence of apple Valsa canker (AVC) poses a significant threat to the vitality of apple trees, jeopardizing the progress of the apple industry. Current strategies have proven inadequate in managing the disease effectively due to challenges such as extended duration and frequent relapses, especially low-adhesion vertical target. Herein, we introduce a pesticide-fertilizer synergistic alginate-based hydrogel (P&F-Gel) to enhance long-term pesticide retention and offer nutrient supplementation without labor-intensive practices. By sequentially spraying a suspension concentrate with sodium alginate (SA) as thickening agent, followed by a cross-linked fertilizer (CCF) dominated by Ca and other nutrient, rapid in-situ gelation is achieved on the low-adhesion vertical xylem surface. P&F-Gel demonstrates strong in-situ adhesion, long-term retention, and flush resistance, with temperature-triggered pesticide release making it suitable for field applications in humid and warm climates where AVC often breaks out. Additionally, P&F-Gel exhibits superior antifungal efficacy in vitro and in orchard, due to its capacity to isolate oxygen and inhibit fungal proliferation. Overall, our P&F-Gel represents the first use of a hydrogel strategy in trunk treatment, which provided a possibility to control AVC without intensive labor and protect apple trees from recurrence for over 6 months, paving the way for modern sustainable agriculture.
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http://dx.doi.org/10.1016/j.ijbiomac.2025.141877 | DOI Listing |
Int J Biol Macromol
March 2025
Department of Applied Chemistry, College of Science, China Agricultural University, Yuanmingyuan West Road 2, Haidian District, Beijing 100193, PR China. Electronic address:
The prevalence of apple Valsa canker (AVC) poses a significant threat to the vitality of apple trees, jeopardizing the progress of the apple industry. Current strategies have proven inadequate in managing the disease effectively due to challenges such as extended duration and frequent relapses, especially low-adhesion vertical target. Herein, we introduce a pesticide-fertilizer synergistic alginate-based hydrogel (P&F-Gel) to enhance long-term pesticide retention and offer nutrient supplementation without labor-intensive practices.
View Article and Find Full Text PDFHabitat and temporal variation can both influence microbial community dynamics, although their relative importance in reservoir buffer zones with complex hydrology regimes and dramatically altered environments remains controversial. To elucidate this, we investigated spatiotemporal variation in soil bacterial diversity and ecological processes from the flooding period to the dry period (April and June, respectively) using high-throughput 16S amplicon sequencing in three habitats (abandoned cropland, grassland, and woodland) within the Chushandian Reservoir's buffer strip, China. The results showed that habitat was more important than temporal variation in shaping soil bacterial diversity and ecological processes in the reservoir buffer zone.
View Article and Find Full Text PDFBull Entomol Res
February 2025
College of Resources and Environment, Henan Engineering Research Center of Biological Pesticide & Fertilizer Development and Synergistic Application, Henan Institute of Science and Technology, Xinxiang, P.R. China.
is an important grain pest, causing severe losses during crop production. As a systemic insecticide, flonicamid can control piercing-sucking pests efficiently. In our study, the lethal effects of flonicamid on the biological traits of were investigated via a life table approach.
View Article and Find Full Text PDFNeotrop Entomol
January 2025
College of Resources and Environment, Henan Engineering Research Center of Biological Pesticide & Fertilizer Development and Synergistic Application, Henan Institute of Science and Technology, Xinxiang, China.
Sitobion miscanthi is a wheat aphid species that can damage seriously agricultural production. The effective management of wheat aphids has depended on chemical insecticides. However, their wide application led to severe resistance of wheat aphids to some insecticides, and cytochrome P450 as a detoxifying enzyme plays a crucial role in the insecticide resistance.
View Article and Find Full Text PDFPestic Biochem Physiol
June 2024
College of Resources and Environment, Henan Engineering Research Center of Biological Pesticide & Fertilizer Development and Synergistic Application, Henan Institute of Science and Technology, Xinxiang 453003, China. Electronic address:
The wheat aphid Sitobion miscanthi is a dominant and destructive pest in agricultural production. Insecticides are the main substances used for effective control of wheat aphids. However, their extensive application has caused severe resistance of wheat aphids to some insecticides; therefore, exploring resistance mechanisms is essential for wheat aphid management.
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