Feng Guoyi, Wu Yajie, Yang Chuanzhen, Zhang Qian, Wang Shulin, Dong Ming, Wang Yan, Qi Hong, Guo Lixue
Hebei Branch of National Cotton Improvement Center/Key Laboratory of Cotton Biology and Genetic Breeding in Huanghuaihai Semiarid Area, Ministry of Agriculture and Rural Affairs, Cotton Research Institute Hebei Academy of Agricultural and Forestry Sciences, Shijiazhuang, China.
State Key Laboratory of Cotton Bio-breeding and Integrated Utilization, Institute of Cotton Research of CAAS, Anyang, China.
Front Microbiol. 2024 Apr 19;15:1359698. doi: 10.3389/fmicb.2024.1359698. eCollection 2024.
Soil salinization is a global constraint that significantly hampers agricultural production, with cotton being an important cash crop that is not immune to its detrimental effects. The rhizosphere microbiome plays a critical role in plant health and growth, which assists plants in resisting adverse abiotic stresses including soil salinization. This study explores the impact of soil salinization on cotton, including its effects on growth, yield, soil physical and chemical properties, as well as soil bacterial community structures. The results of β-diversity analysis showed that there were significant differences in bacterial communities in saline-alkali soil at different growth stages of cotton. Besides, the more severity of soil salinization, the more abundance of , enriched in rhizosphere bacterial composition where the abundance of exhibited the opposite trend. And the co-occurrence network analysis showed that soil salinization affected the complexity of soil bacterial co-occurrence network. These findings provide valuable insights into the mechanisms by which soil salinization affects soil microorganisms in cotton rhizosphere soil and offer guidance for improving soil salinization using beneficial microorganisms.
土壤盐渍化是一个全球性的限制因素,严重阻碍了农业生产,棉花作为一种重要的经济作物,也不能免受其不利影响。根际微生物群在植物健康和生长中起着关键作用,它帮助植物抵抗包括土壤盐渍化在内的不利非生物胁迫。本研究探讨了土壤盐渍化对棉花的影响,包括对其生长、产量、土壤理化性质以及土壤细菌群落结构的影响。β多样性分析结果表明,棉花不同生长阶段盐碱土中的细菌群落存在显著差异。此外,土壤盐渍化程度越高,根际细菌组成中 富集越多,而 的丰度则呈现相反趋势。共现网络分析表明,土壤盐渍化影响了土壤细菌共现网络的复杂性。这些发现为土壤盐渍化影响棉花根际土壤微生物的机制提供了有价值的见解,并为利用有益微生物改善土壤盐渍化提供了指导。