Ye Lin, Zhao Xia, Bao Encai, Cao Kai, Zou Zhirong
College of Horticulture, Northwest A&F University, Xianyang, China.
College of Agriculture, Ningxia University, Yinchuan, China.
Front Plant Sci. 2019 Jul 3;10:863. doi: 10.3389/fpls.2019.00863. eCollection 2019.
Salinity-alkalinity stress has caused severe environment problems that negatively impact the growth and development of watermelon ( L.). In this study, watermelon seedlings were inoculated with the arbuscular mycorrhizal fungi (AMF) to investigate its effect on watermelon growth and development. The main measurements included morphological traits, elemental and water uptake, the level of reactive oxygen species, antioxidant enzyme and photosynthesis activities, and relative expression levels of stress response genes. Under salinity-alkalinity stresses, watermelon morphological traits, elemental and water uptake were all significantly alleviated after incubation with AMF. Antioxidant abilities of watermelon were significantly improved after incubation with AMF in salinity-alkalinity stresses. Under normal conditions, all photosynthesis related parameters were significantly increased after incubation of AMF. In contrast, they were all significantly reduced under salinity-alkalinity stresses and were all significantly alleviated after incubation of AMF. Salinity-alkalinity stresses impacted the chloroplast structure and AMF significantly alleviated these damages. Under salinity-alkalinity stresses, the relative expression level of was significantly reduced and was significantly alleviated after AMF treatment. The relative expression level of was significantly increased and was further significantly reduced after AMF treatment. For the relative expression levels of antioxidant response related genes , their relative expression levels were significantly increased and were further significantly increased after AMF treatment. Our study demonstrated the beneficial effects of AMF under salinity-alkalinity stresses, which could be implicated in the management of watermelon cultivation under salinity-alkalinity regions.
盐碱胁迫已造成严重的环境问题,对西瓜(Citrullus lanatus (Thunb.) Matsum. & Nakai)的生长发育产生负面影响。在本研究中,给西瓜幼苗接种丛枝菌根真菌(AMF),以研究其对西瓜生长发育的影响。主要测定指标包括形态特征、元素吸收和水分吸收、活性氧水平、抗氧化酶和光合作用活性,以及胁迫响应基因的相对表达水平。在盐碱胁迫下,与AMF共培养后,西瓜的形态特征、元素吸收和水分吸收均得到显著缓解。在盐碱胁迫下,与AMF共培养后,西瓜的抗氧化能力显著提高。在正常条件下,接种AMF后,所有光合作用相关参数均显著增加。相比之下,在盐碱胁迫下它们均显著降低,而接种AMF后均显著缓解。盐碱胁迫影响叶绿体结构,而AMF显著减轻了这些损伤。在盐碱胁迫下,[具体基因1]的相对表达水平显著降低,AMF处理后显著缓解。[具体基因2] 的相对表达水平显著增加,AMF处理后进一步显著降低。对于抗氧化反应相关基因[具体基因3 - 具体基因5] 的相对表达水平,它们的相对表达水平显著增加,AMF处理后进一步显著增加。我们的研究证明了AMF在盐碱胁迫下的有益作用,这可能与盐碱地区西瓜栽培管理有关。