食草动物
非生物成分
砷
砷毒性
非生物胁迫
生物
毒性
昆虫
生物技术
化学
生态学
基因
生物化学
有机化学
作者
Zhenggao Xiao,Chunjie Zhao,Ningke Fan,Feiran Chen,Xiaona Li,Zhenyu Wang,Sergio Rasmann
标识
DOI:10.1021/acs.est.4c10733
摘要
larval weight gain by 34.5 and 12.3% without and with As stress, respectively. Importantly, BNS enhanced antioxidant enzyme activity under As stress, herbivore attack, and combined pressures, surpassing the effects of traditional silicate fertilizers. BNS ultimately increased rice shoot biomass by 8.2-23.4% under the respective stress conditions compared to the control treatment. Moreover, while As stress alone diminished the plant's resistance to herbivores, BNS application countered this effect by increasing detoxifying compound (e.g., glutathione) production and antioxidant enzyme activity. This study highlights the impact of biotic and abiotic stress interactions on BNS-enhanced plant resilience mechanisms in rice plants, reallocating resources to counter heavy metal toxicity and herbivore damage in agroecosystems.
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