Zhou Jia-Yu, Yuan Jie, Li Xia, Ning Yi-Fan, Dai Chuan-Chao
Jiangsu Key Laboratory for Microbes and Functional Genomics, Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, College of Life Sciences, Nanjing Normal University, Nanjing, Jiangsu Province, China.
Jiangsu High Quality Rice Research and Development Center, Nanjing Branch of China National Center Rice Improvement, Institute of Food Crops, Jiangsu Academy of Agricultural Sciences, Nanjing, Jiangsu Province, China.
Appl Environ Microbiol. 2015 Dec 28;82(5):1577-1585. doi: 10.1128/AEM.03434-15.
Oxygenous terpenoids are active components of many medicinal plants. However, current studies that have focused on enzymatic oxidation reactions cannot comprehensively clarify the mechanisms of oxygenous terpenoid synthesis and diversity. This study shows that an endophytic bacterium can trigger the generation of reactive oxygen species (ROS) that directly increase oxygenous sesquiterpenoid content and diversity in Atractylodes lancea. A. lancea is a famous but endangered Chinese medicinal plant that contains abundant oxygenous sesquiterpenoids. Geo-authentic A. lancea produces a wider range and a greater abundance of oxygenous sesquiterpenoids than the cultivated herb. Our previous studies have shown the mechanisms behind endophytic promotion of the production of sesquiterpenoid hydrocarbon scaffolds; however, how endophytes promote the formation of oxygenous sesquiterpenoids and their diversity is unclear. After colonization by Pseudomonas fluorescens ALEB7B, oxidative burst and oxygenous sesquiterpenoid accumulation in A. lancea occur synchronously. Treatment with exogenous hydrogen peroxide (H2O2) or singlet oxygen induces oxidative burst and promotes oxygenous sesquiterpenoid accumulation in planta. Conversely, pretreatment of plantlets with the ROS scavenger ascorbic acid significantly inhibits the oxidative burst and oxygenous sesquiterpenoid accumulation induced by P. fluorescens ALEB7B. Further in vitro oxidation experiments show that several oxygenous sesquiterpenoids can be obtained from direct oxidation caused by H2O2 or singlet oxygen. In summary, this study demonstrates that endophytic bacterium-triggered ROS can directly oxidize oxygen-free sesquiterpenoids and increase the oxygenous sesquiterpenoid content and diversity in A. lancea, providing a novel explanation of the mechanisms of oxygenous terpenoid synthesis in planta and an essential complementarity to enzymatic oxidation reactions.
含氧萜类化合物是许多药用植物的活性成分。然而,目前专注于酶促氧化反应的研究无法全面阐明含氧萜类化合物的合成机制和多样性。本研究表明,一种内生细菌可触发活性氧(ROS)的产生,直接增加白术中含氧倍半萜的含量和多样性。白术是一种著名但濒危的中药材,含有丰富的含氧倍半萜。道地产区的白术比人工栽培的白术产生的含氧倍半萜种类更多、含量更丰富。我们之前的研究已经揭示了内生菌促进倍半萜烃骨架合成的机制;然而,内生菌如何促进含氧倍半萜的形成及其多样性尚不清楚。荧光假单胞菌ALEB7B定殖后,白术中氧化爆发和含氧倍半萜积累同步发生。用外源过氧化氢(H2O2)或单线态氧处理可诱导氧化爆发并促进植物体内含氧倍半萜的积累。相反,用活性氧清除剂抗坏血酸预处理幼苗可显著抑制荧光假单胞菌ALEB7B诱导的氧化爆发和含氧倍半萜积累。进一步的体外氧化实验表明,几种含氧倍半萜可通过H2O2或单线态氧的直接氧化获得。总之,本研究表明内生细菌触发的活性氧可直接氧化无氧倍半萜,增加白术中含氧倍半萜的含量和多样性,为植物体内含氧萜类化合物的合成机制提供了新的解释,并对酶促氧化反应起到了重要的补充作用。