Related Experiment Video
Updated: Jun 4, 2026

Repeatable Stair-step Assay to Access the Allelopathic Potential of Weedy Rice (Oryza sativa ssp.)
Published on: January 28, 2020
Herbicide-resistant weeds exploit kinship to reduce allelopathy from crops
Xue-Fang Yang1,2, Le Ding3, Xiao-Tong Ji1,2
1College of Life Science, Hebei University, Baoding 071002, China.
Abstract:
Kin recognition enables plants to optimize growth strategies when competing with heterospecific neighbors, yet its prevalence in herbicide-resistant weeds and how herbicide-resistant weeds exploit kinship to interact with allelopathic crops remain largely unknown. Here, we experimentally demonstrate that kin recognition occurred in 4 out of 10 tested herbicide-resistant weed biotypes from wheat and paddy fields. Root segregation treatments confirmed that kin recognition was mediated by root-secreted chemical signals. When interacting with allelopathic rice and wheat, kin-recognition-enabled weed biotypes exhibited striking plasticity. Kinship-based pairing reduced root allocation but accelerated flowering and increased seed production. Crucially, herbicide-resistant weed biotypes growing with kin lowered exudation of the signaling (-)-loliolide, which reduced allelochemical production in crops and minimized crop-mediated growth inhibition. This cascade allowed weeds to reallocate resources toward reproduction and to reduce defense investment in crops-revealing a novel "signal-mediated mutual de-escalation" strategy. The findings suggest that kin recognition is an adaptive trait in herbicide-resistant weeds, reducing allelopathy from crops through (-)-loliolide-mediated chemical interactions. By modulating crop signaling systems, herbicide-resistant weeds exploit kinship for population expansion in agroecosystems, highlighting the role of kinship strategy in shaping weed adaptation to develop integrated weed management approaches.
Related Concept Videos
Plant Breeding and Biotechnology
Defenses Against Pathogens and Herbivores
Microbe-Plant Interactions
Responses to Drought and Flooding
Treatment Resistant Cancers
Epiphytes, Parasites, and Carnivores

