State Key Laboratory of Crop Stress Biology for Arid Areas/Shaanxi Key Laboratory of Apple, College of Horticulture, Northwest A&F University, Yangling, China.
J Pineal Res. 2018 Nov;65(4):e12523. doi: 10.1111/jpi.12523. Epub 2018 Oct 12.
Melatonin mediates many physiological processes in plants. The problem of apple replant disease is unsolved. Our study objectives were to evaluate the regulatory effect of melatonin on plant resistance to this challenge and investigate the preliminary mechanism by which melatonin helps alleviate the effects of this disease. Two-year-old trees of "Fuji" apple (Malus domestica), grafted onto rootstock M.26, were grown in "replant" soil for 6 months in the absence or presence of a 200 μmol/L melatonin supplement. The addition of melatonin to the soil significantly increased the rates of plant growth and net photosynthesis and chlorophyll concentrations under replant conditions. This molecule elevated the levels of K in leaves and roots and enhanced the activity of soil enzymes. Such supplementation also changed the composition of the bacterial and fungal communities in the soil. We concluded that the application of melatonin to a replant soil can protect their chloroplasts from oxidative damage and release the apple root from membrane damage, and also lead to increased soil enzyme activity and soil quality while altering the composition of bacterial and fungal communities. These changes can then promote seedling growth, stimulate photosynthesis, and elevate K levels, thereby alleviating the effects of apple replant disease.
褪黑素介导植物的许多生理过程。苹果重茬病的问题尚未解决。本研究旨在评估褪黑素对植物抵抗这种挑战的调节作用,并探讨褪黑素帮助缓解这种疾病影响的初步机制。将“富士”苹果(Malus domestica)嫁接到 M.26 砧木上的两年生树,在“重茬”土壤中生长 6 个月,土壤中有无 200 μmol/L 的褪黑素补充剂。向土壤中添加褪黑素可显著提高重茬条件下植物生长和净光合速率以及叶绿素浓度。该分子提高了叶片和根系中 K 的含量,并增强了土壤酶的活性。这种补充还改变了土壤中细菌和真菌群落的组成。我们得出结论,将褪黑素应用于重茬土壤中可以保护其叶绿体免受氧化损伤,使苹果根系免受膜损伤,并通过改变细菌和真菌群落的组成来提高土壤酶活性和土壤质量。这些变化可以促进幼苗生长、刺激光合作用并提高 K 水平,从而缓解苹果重茬病的影响。