Changes in the Abundance and Community Complexity of Soil Nematodes in Two Rice Cultivars Under Elevated Ozone

Jianqing Wang, Yunyan Tan, Yajun Shao, Xiuzhen Shi, Guoyou Zhang

Frontiers in Microbiology · 2022 · 11 citations · 27 references

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Abstract

The atmospheric ozone concentrations have substantially increased in the surface layer over the past decades, and consequently exhibited a strong influence on soil microbial communities and functions. However, the effect of elevated ozone (eO<sub>3</sub>) on the abundance, diversity, and structural complexity of soil nematode communities are elusive under different rice (<i>Oryza sativa L</i>.) cultivars. Here, the soil nematode community was investigated in two rice cultivars (Hybrid, Shanyou 63 vs. Japonica, Wuyujing 3) under open-top chambers (OTC) with control and eO<sub>3</sub> conditions. The results showed that the abundance of soil nematode community was altered by eO<sub>3</sub>, but the responses were dependent on crop cultivars. The eO<sub>3</sub> decreased the total abundance and simplified the network complexity of the soil nematode community for both cultivars. However, eO<sub>3</sub> increased the abundance of c-p 4 in Shanyou 63, rather than Wuyujing 3, indicating that the hybrid rice cultivar could tradeoff the adverse impacts of eO<sub>3</sub> on the functional group of soil nematodes. Similarly, bacterivores belonging to <i>K</i>-strategy (c-p 4) increased under eO<sub>3</sub> in Shanyou 63, suggesting that the soil food web formed a bacteria-dominated channel under eO<sub>3</sub> for the hybrid rice cultivar. This study shed new light on the critical importance of rice cultivars in shaping the impacts of eO<sub>3</sub> on the soil micro-food web. Therefore, breeding and biotechnological approaches may become valuable pathways to improve soil health by shaping the community structures of the soil micro-food web in response to climate change in the future.

References

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