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

Changes in vegetation complexity during the development of rice ecosystems affect orb‐weaving spider‐prey trophic networks

View through CrossRef
Abstract Temporal change in vegetation complexity and field management may interactively affect the structure of predator–prey networks in agroecosystems and consequently alter the biocontrol potential of predators. There is a limited number of studies that have addressed these questions for generalist predator–prey networks. We investigated how vegetation complexity during crop development and management type (conventional vs. organic) affect the trophic networks of orb‐weaving spiders and their prey in rainfed lowland rice ecosystems in southern Thailand. Specifically, we investigated orb‐weaving spiders and prey composition, prey selectivity and network structure. Overall, orb‐weaving spiders captured mostly detritus‐associated Diptera, aquatic‐associated Ephemeroptera and Hemiptera pests. The increasing vegetation complexity during rice development significantly restructured the network of orb‐weaving spiders and prey, while field management had only a marginal effect. The increased vegetation complexity during rice development led to an increased number of weak trophic interactions in comparison to few but strong interactions in simple vegetation. Our results indicate that increasing the number of spider species per prey taxon (prey vulnerability) in late rice season may enhance their top‐down control of prey including rice pests. This study also highlights that the network complexity and the stability of rice ecosystems increased during the rice growing season as the vegetation became more complex. Future practices could look for a way to support the densities of detritus and aquatic insects and to artificially increase habitat complexity during the early stage of rice development to improve the biocontrol services provided by the orb‐weaving spiders.
Title: Changes in vegetation complexity during the development of rice ecosystems affect orb‐weaving spider‐prey trophic networks
Description:
Abstract Temporal change in vegetation complexity and field management may interactively affect the structure of predator–prey networks in agroecosystems and consequently alter the biocontrol potential of predators.
There is a limited number of studies that have addressed these questions for generalist predator–prey networks.
We investigated how vegetation complexity during crop development and management type (conventional vs.
organic) affect the trophic networks of orb‐weaving spiders and their prey in rainfed lowland rice ecosystems in southern Thailand.
Specifically, we investigated orb‐weaving spiders and prey composition, prey selectivity and network structure.
Overall, orb‐weaving spiders captured mostly detritus‐associated Diptera, aquatic‐associated Ephemeroptera and Hemiptera pests.
The increasing vegetation complexity during rice development significantly restructured the network of orb‐weaving spiders and prey, while field management had only a marginal effect.
The increased vegetation complexity during rice development led to an increased number of weak trophic interactions in comparison to few but strong interactions in simple vegetation.
Our results indicate that increasing the number of spider species per prey taxon (prey vulnerability) in late rice season may enhance their top‐down control of prey including rice pests.
This study also highlights that the network complexity and the stability of rice ecosystems increased during the rice growing season as the vegetation became more complex.
Future practices could look for a way to support the densities of detritus and aquatic insects and to artificially increase habitat complexity during the early stage of rice development to improve the biocontrol services provided by the orb‐weaving spiders.

Related Results

Refining the trophic diversity, network structure, and bottom‐up importance of prey groups for temperate reef fishes
Refining the trophic diversity, network structure, and bottom‐up importance of prey groups for temperate reef fishes
AbstractMarine fish communities are highly diverse and contribute significantly to ecosystem processes. However, understanding their specific functional roles and the importance of...
Refining prey selection for cheetahs and lions: The influence of prey demography and season
Refining prey selection for cheetahs and lions: The influence of prey demography and season
Abstract Traditional prey preference models use a coarse species-specific prey body mass of three-quarters of adult female body mass, assumed to reflect the average mass ac...
Refining the trophic diversity, ecological network structure, and bottom-up importance of prey groups for temperate reef fishes
Refining the trophic diversity, ecological network structure, and bottom-up importance of prey groups for temperate reef fishes
Marine fish communities are highly diverse, including all trophic levels of consumers and contributing to many ecosystem processes. Understanding the specific functional roles of m...
Changes in Tetragnatha Spider Abundance and Web Characteristics Throughout Rice Field Development
Changes in Tetragnatha Spider Abundance and Web Characteristics Throughout Rice Field Development
Vegetation change is one of the major drivers affecting web-building spider species, causing them to vary in abundance and to adapt their web traits accordingly. Rice ecosystems ar...
Trophic structure and a temporal shift in trophic diversity of mobile consumers in a subarctic estuary
Trophic structure and a temporal shift in trophic diversity of mobile consumers in a subarctic estuary
Abstract Quantifying trophic relationships within and between species in terms of trophic position, ontogeny, and trophic diversity provides information on community-level ...

Back to Top