College of Horticulture, Hebei Agricultural University, Baoding, China.
College of Horticulture, Qingdao Agricultural University, Qingdao, China.
Plant Cell Environ. 2024 Jul;47(7):2614-2630. doi: 10.1111/pce.14903. Epub 2024 May 7.
The dynamics of the physiological adaptability of plants and the rhizosphere soil environment after waterlogging remain unclear. Here we investigated the mechanisms regulating plant condition and shaping of the rhizosphere microbiome in a pot experiment. In the experiment, we added melatonin to waterlogged plants, which promoted waterlogging relief. The treatment significantly enhanced photosynthesis and the antioxidant capacity of apple plants, and significantly promoted nitrogen (N) utilization efficiency by upregulating genes related to N transport and metabolism. Multiperiod soil microbiome analysis showed the dynamic effects of melatonin on the diversity of the microbial community during waterlogging recovery. Random forest and linear regression analyses were used to screen for potential beneficial bacteria (e.g., Azoarcus, Pseudomonas and Nocardioides) specifically regulated by melatonin and revealed a positive correlation with soil nutrient levels and plant growth. Furthermore, metagenomic analyses revealed the regulatory effects of melatonin on genes involved in N cycling in soil. Melatonin positively contributed to the accumulation of plant dry weight by upregulating the expression of nifD and nifK (N fixation). In summary, melatonin positively regulates physiological functions in plants and the structure and function of the microbial community; it promoted the recovery of apple plants after waterlogging stress.
植物生理适应性和根际土壤环境在水淹后的动态变化仍不清楚。在这里,我们通过盆栽实验研究了调节植物状况和塑造根际微生物组的机制。在实验中,我们向水淹植物中添加褪黑素,以促进水淹缓解。该处理显著增强了苹果植物的光合作用和抗氧化能力,并通过上调与氮运输和代谢相关的基因,显著促进了氮(N)利用效率。多期土壤微生物组分析表明,褪黑素对水淹恢复过程中微生物群落多样性具有动态影响。随机森林和线性回归分析用于筛选褪黑素特异性调节的潜在有益细菌(如 Azoarcus、Pseudomonas 和 Nocardioides),并与土壤养分水平和植物生长呈正相关。此外,宏基因组分析揭示了褪黑素对土壤中氮循环相关基因的调控作用。褪黑素通过上调 nifD 和 nifK(固氮)的表达,促进植物干重的积累,从而对植物生长产生积极影响。总之,褪黑素积极调节植物的生理功能以及微生物群落的结构和功能;它促进了水淹胁迫后苹果植物的恢复。