Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Irrigation mitigates wheat yield loss by pests and diseases under global change across China

View through CrossRef
Abstract Ensuring future food security represents a significant challenge for humanity. Wheat pests and diseases are emerging threats to global food security. However, the key factors contributing to the uneven distribution of pests and diseases remain largely unknown due to insufficient observational data from major crop-producing regions. Here, on the basis of a unique historical dataset with more than 600 statistical records, we found an increased occurrence of wheat pests and diseases in China during 2000–2018. Various pests and diseases have largely different responses to climate change, crop simplification, agricultural activities and economic development. Rising temperatures expanded the occurrence area of wheat mites while reducing that of underground pests. Increased precipitation decreased the occurrence area of aphids, wheat mites, wheat midge, and underground pests, while promoting the spread of wheat scab. Effective irrigation suppressed wheat mites, underground pests, and wheat rust, whereas fertilizer application reduced aphids, wheat midge, and wheat scab but significantly increased wheat mites and wheat rust. Gross domestic product (GDP) increased percentage of occurrence area of wheat midge; aging population increased percentage of occurrence area of aphids, wheat scab and wheat powdery mildew. Crop simplification increased percentage of occurrence area of underground pests and wheat powdery mildew as well as pesticide use significantly which strongly correlated with the percentage of occurrence area of pests and diseases. Furthermore, rising temperatures and the overall increase in pest and disease occurrence exacerbated wheat yield losses, whereas effective irrigation mitigated these losses by suppressing pests and diseases. These observational findings emphasize the critical role of appropriate irrigation strategies in mitigating the increasing risks of pests and diseases under climate change, thereby supporting global food security.
Title: Irrigation mitigates wheat yield loss by pests and diseases under global change across China
Description:
Abstract Ensuring future food security represents a significant challenge for humanity.
Wheat pests and diseases are emerging threats to global food security.
However, the key factors contributing to the uneven distribution of pests and diseases remain largely unknown due to insufficient observational data from major crop-producing regions.
Here, on the basis of a unique historical dataset with more than 600 statistical records, we found an increased occurrence of wheat pests and diseases in China during 2000–2018.
Various pests and diseases have largely different responses to climate change, crop simplification, agricultural activities and economic development.
Rising temperatures expanded the occurrence area of wheat mites while reducing that of underground pests.
Increased precipitation decreased the occurrence area of aphids, wheat mites, wheat midge, and underground pests, while promoting the spread of wheat scab.
Effective irrigation suppressed wheat mites, underground pests, and wheat rust, whereas fertilizer application reduced aphids, wheat midge, and wheat scab but significantly increased wheat mites and wheat rust.
Gross domestic product (GDP) increased percentage of occurrence area of wheat midge; aging population increased percentage of occurrence area of aphids, wheat scab and wheat powdery mildew.
Crop simplification increased percentage of occurrence area of underground pests and wheat powdery mildew as well as pesticide use significantly which strongly correlated with the percentage of occurrence area of pests and diseases.
Furthermore, rising temperatures and the overall increase in pest and disease occurrence exacerbated wheat yield losses, whereas effective irrigation mitigated these losses by suppressing pests and diseases.
These observational findings emphasize the critical role of appropriate irrigation strategies in mitigating the increasing risks of pests and diseases under climate change, thereby supporting global food security.

Related Results

Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Environmental Effects and Their Impact on Yield in Adjacent Experimental Plots of High-stem and Short-Stem Wheat Varieties
Abstract Xinhuamai 818 was used as the experimental material for high-stem wheat varieties, HHH was used as the control plot for high-stem wheat varieties (one lett...
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Environmental Effects and Their impact on Yield in Adjacent Experimental Plots of High and Short Stem Wheat Varieties
Abstract Using Xinhuamai818 as the experimental material for high stem wheat varieties, HHH as the control plot for high stem wheat varieties(One letter represents ...
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Evaluation of Alternative Break Crops in Rotation with Bread Wheat (triticum aestivum l.) in South-Eastern Ethiopia
Crop rotation could be a possible intervention to resolve multifaceted problems of monoculture. In recent years, there is a concern about soil depletion caused by intensive farming...
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Row Orientation and Planting Pattern of Relay Intercropped Soybean and Wheat
Relay intercropping soybean [Glycine max(L.) Merr.] into winter wheat (Triticum aestivum L.) may increase soybean yields compared with doublecropping. Once the soybean crop is esta...
Irrigation as an Effective Way to Increase Potato Yields in Northern China: A Meta-Analysis
Irrigation as an Effective Way to Increase Potato Yields in Northern China: A Meta-Analysis
A meta-analysis was conducted with the aim of exploring the influence of irrigation on potato yield, evapotranspiration (ET), and water-use efficiency (WUE) in northern China, cons...
Modeling Agricultural Water Use Efficiency in Tibet's Pengbo Irrigation District: An Application of the SWAT Hydrological Model
Modeling Agricultural Water Use Efficiency in Tibet's Pengbo Irrigation District: An Application of the SWAT Hydrological Model
Abstract This study investigated the hydrological cycle dynamics under water management measures in the Pengbo irrigation area of Tibet, analyzing and evaluating the water ...
Crop production under alternate rotations on a Dark Brown Chernozemic soil at Scott, Saskatchewan
Crop production under alternate rotations on a Dark Brown Chernozemic soil at Scott, Saskatchewan
Nine rotations of fallow (F), wheat (W), barley (B), canola (C) and alfalfa hay (H) were evaluated to determine whether alternating crops in rotation on Dark Brown soils increases ...

Back to Top