Wang Jianqing, Tan Yunyan, Shao Yajun, Shi Xiuzhen, Zhang Guoyou
Key Laboratory for Humid Subtropical Eco-geographical Processes of the Ministry of Education, Fujian Normal University, Fuzhou, China.
School of Geographical Sciences, Fujian Normal University, Fuzhou, China.
Front Microbiol. 2022 Jun 9;13:916875. doi: 10.3389/fmicb.2022.916875. eCollection 2022.
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) on the abundance, diversity, and structural complexity of soil nematode communities are elusive under different rice (.) 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 conditions. The results showed that the abundance of soil nematode community was altered by eO, but the responses were dependent on crop cultivars. The eO decreased the total abundance and simplified the network complexity of the soil nematode community for both cultivars. However, eO 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 on the functional group of soil nematodes. Similarly, bacterivores belonging to -strategy (c-p 4) increased under eO in Shanyou 63, suggesting that the soil food web formed a bacteria-dominated channel under eO for the hybrid rice cultivar. This study shed new light on the critical importance of rice cultivars in shaping the impacts of eO 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.
在过去几十年中,地表层的大气臭氧浓度大幅增加,因此对土壤微生物群落及其功能产生了强烈影响。然而,在不同水稻品种下,臭氧浓度升高(eO)对土壤线虫群落的丰度、多样性和结构复杂性的影响尚不清楚。在此,在开顶式气室(OTC)中,于对照和eO条件下,对两个水稻品种(杂交稻汕优63与粳稻武育粳3号)的土壤线虫群落进行了研究。结果表明,eO改变了土壤线虫群落的丰度,但其响应取决于作物品种。eO降低了两个品种土壤线虫群落的总丰度并简化了网络复杂性。然而,eO使汕优63中c-p 4的丰度增加,而武育粳3号则不然,这表明杂交水稻品种能够权衡eO对土壤线虫功能群的不利影响。同样,在汕优63中,属于r-策略(c-p 4)的食细菌线虫在eO条件下增加,这表明在eO条件下,杂交水稻品种的土壤食物网形成了以细菌为主导的通道。本研究为水稻品种在塑造eO对土壤微食物网影响方面的关键重要性提供了新的见解。因此,育种和生物技术方法可能成为未来通过塑造土壤微食物网群落结构以应对气候变化来改善土壤健康的有价值途径。