0
Article Tier 2 Environmental Sources Sign in to save

Arbuscular mycorrhizal fungi mitigate microplastic-induced shifts in soil nematode communities

No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →

More Papers Like This

Article Tier 2

Microplastic Alters Rhizosphere Microbiome: A Review

AI summary Read the abstract

Researchers review how microplastic accumulation in soil disrupts the rhizosphere microbiome — the community of beneficial microorganisms surrounding plant roots — impairing nutrient uptake and pathogen resistance in ways that could threaten agricultural productivity and soil ecosystem health.

Article Tier 2

Microplastics in agricultural soils: Impacts on soil microbial communities, nutrient cycling, earthworm health, and soil ecosystem functions

AI summary Read the abstract

This review pulls together existing research showing that tiny plastic bits building up in farm soil, from sources like plastic mulch and sewage sludge, are harming the soil itself, disrupting the microbes and earthworms that keep it healthy and fertile. This matters because damaged soil means reduced crop growth and food security over time, and these same microplastics can carry harmful chemicals and heavy metals that may end up in our food, water, and air. The researchers stress that without action to reduce plastic pollution now, the damage to farmland could become permanent.

Article Tier 2

Impact of Microplastic Accumulation on Rhizosphere Activities in Soil

AI summary Read the abstract

Researchers examine how microplastic accumulation in soil alters rhizosphere dynamics, finding that plastic particles disrupt microbial communities and enzyme activities in the root zone, with downstream effects on nutrient cycling and overall soil health.

Article Tier 2

The regulated effects of phosphorus addition on rhizosphere microecology under microplastic pollution: a comparison based on different plant types

AI summary Read the abstract

A pot experiment found that polyethylene microplastics and phosphorus fertilizers interact in crop-specific ways, altering root growth and soil moisture differently in wheat versus maize. Understanding these interactions matters because microplastic contamination in farmland soils could undermine fertilizer strategies and threaten crop productivity.

Article Tier 2

Effects of microplastic types and shapes on the community structure of arbuscular mycorrhizal fungi in different soil types

AI summary Read the abstract

Researchers examined how different types and shapes of microplastics affect arbuscular mycorrhizal fungi communities across various soil types. The study found that microplastics alter soil structure and chemistry in ways that disrupt these beneficial fungi, which play crucial roles in nutrient exchange, soil stability, and water movement.

Research digests by email

When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.

Email me about

Share this paper