The nematode Caenorhabditis elegans enhances tolerance to landfill leachate stress by increasing trehalose synthesis

Author:

Chen Yuru1,Jin Binsong1,Yu Jie1,Wu Liangwei1,Wang Yingying2,Tang Bin1,Chen Huili1

Affiliation:

1. College of Life and Environmental Sciences, Hangzhou Normal University, Hangzhou, Zhejiang, China

2. National Wetland Museum of China, Hangzhou, Zhejiang, China

Abstract

The burgeoning issue of landfill leachate, exacerbated by urbanization, necessitates evaluating its biological impact, traditionally overshadowed by physical and chemical assessments. This study harnesses Caenorhabditis elegans, a model organism, to elucidate the physiological toxicity of landfill leachate subjected to different treatment processes: nanofiltration reverse osmosis tail water (NFRO), membrane bioreactor (MBR), and raw leachate (RAW). Our investigation focuses on the modulation of sugar metabolism, particularly trehalose—a disaccharide serving dual functions as an energy source and an anti-adversity molecule in invertebrates. Upon exposure, C. elegans showcased a 60–70% reduction in glucose and glycogen levels alongside a significant trehalose increase, highlighting an adaptive response to environmental stress by augmenting trehalose synthesis. Notably, trehalose-related genes in the NFRO group were up-regulated, contrasting with the MBR and RAW groups, where trehalose synthesis genes outpaced decomposition genes by 20–30 times. These findings suggest that C. elegans predominantly counters landfill leachate-induced stress through trehalose accumulation. This research not only provides insights into the differential impact of leachate treatment methods on C. elegans but also proposes a molecular framework for assessing the environmental repercussions of landfill leachate, contributing to the development of novel strategies for pollution mitigation and environmental preservation.

Funder

Basic and Commonweal Programme of Zhejiang Province

Students’ Innovation and Entrepreneurship Training Project of China

Program of Potential Talents in Zhejiang Province

Publisher

PeerJ

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