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嗜温木腐菌肺形侧耳促进植物生长的潜力。

The plant growth-promoting potential of the mesophilic wood-rot mushroom Pleurotus pulmonarius.

机构信息

Department of Biomedical Sciences & Engineering, National Central University, Taoyuan City, Taiwan.

School of Forestry and Resource Conservation, National Taiwan University, Taipei, Taiwan.

出版信息

J Appl Microbiol. 2019 Oct;127(4):1157-1171. doi: 10.1111/jam.14375. Epub 2019 Jul 25.

Abstract

AIMS

To demonstrate the plant growth-promoting potential of a wood-decay mushroom.

METHODS AND RESULTS

A wild strain of a white rot fungus (Pleurotus pulmonarius) was found to convert 10 mmol l L-tryptophan (TRP) to approximately 15 μg ml indole-3-acetic acid (IAA) under the optimal growth conditions of 30°C and pH 5 for 15 days. Results of gas chromatography-mass spectrometry indicated IAA synthesis through the indole-3-pyruvic acid pathway when using cellulose as a sole carbon source. The mycelium as well as the culture filtrate promoted the growth and chlorophyll content of seedlings. In a monocotyledonous plant (rice), the number of lateral roots was increased experimentally, whereas in a dicotyledonous plant (tomato), the fungus led to an increased length of shoots and roots.

CONCLUSIONS

TRP-dependent IAA production was demonstrated for the first time for P. pulmonarius and may be responsible for enhancing plant growth in vitro.

SIGNIFICANCE AND IMPACT OF THE STUDY

Synthesis of IAA as the most prevalent phytohormone in plants has been demonstrated for soil microfungi. Pleurotus pulmonarius is reported as an IAA-producing wood-decay macrofungus. The higher temperature optimum of P. pulmonarius isolated from subtropical environment compared to other Pleurotus species from temperate regions makes it more suitable for application in subtropical/tropical regions.

摘要

目的

展示一种木腐真菌的促植物生长潜力。

方法和结果

发现一种野生白腐菌(肺形侧耳)在 30°C 和 pH5 的最佳生长条件下,将 10mmolL-色氨酸(TRP)转化为约 15μgml 吲哚-3-乙酸(IAA),持续 15 天。气相色谱-质谱联用结果表明,当以纤维素为唯一碳源时,通过吲哚-3-丙酮酸途径合成 IAA。菌丝体和培养液都能促进幼苗的生长和叶绿素含量。在单子叶植物(水稻)中,实验中增加了侧根的数量,而在双子叶植物(番茄)中,真菌导致茎和根的长度增加。

结论

首次证明了肺形侧耳依赖 TRP 产生 IAA,这可能是其在体外促进植物生长的原因。

研究的意义和影响

已证明土壤微生物能够合成植物中最普遍的植物激素 IAA。肺形侧耳被报道为一种产生 IAA 的木腐大型真菌。与来自温带地区的其他 Pleurotus 物种相比,来自亚热带环境的肺形侧耳的最佳温度更高,使其更适合在亚热带/热带地区应用。

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