Ren Fei, Dong Wei, Yan Dong-Hui
Experimental Center of Forestry in North China, Chinese Academy of Forestry, Beijing 102300, China.
China Electric Power Research Institute, Beijing 100192, China.
Microorganisms. 2019 Sep 5;7(9):322. doi: 10.3390/microorganisms7090322.
Pinggu peach ( (L.)) has great economic and ecological value in north China. As a plant, the peach is naturally colonized by a variety of endophytic fungi, which are very important for tree growth and health. However, the mycobiota composition and their affecting factors of the peach trees are still unknown. In our study, the fungal communities in flowers, leaves, stems, and roots of the three cultivars (Dajiubao, Qingfeng, and Jingyan) of Pinggu peach trees and in the rhizosphere soils were investigated by both Illumina Miseq sequencing of ITS rDNA and traditional culturing methods. For organs, except for roots, flowers had the highest fungal richness and diversity, while the leaves had the lowest richness and diversity. Ascomycota and Basidiomycota were the most abundant phyla among samples. The fungal assemblage composition of each organ was distinctive. Fungal communities of the three cultivars also differed from each other. The fungal community structure significantly correlated with soil pH, soil K, fruit soluble solid content, and fruit titratable acidity with the redundancy analysis (RDA). Most isolated fungal strains can be found within high-throughput sequencing identified taxa. This study indicates that plant organs, the cultivars, the soil, and fruit properties may have profound effects on the endophytic fungal community structure associated with Pinggu peach trees. With this study, microbiota-mediated pathogen protection and fruit quality promotion associated with peach trees could be further studied.
平谷桃((L.))在中国北方具有重要的经济和生态价值。作为一种植物,桃树自然地被多种内生真菌定殖,这些真菌对树木的生长和健康非常重要。然而,桃树的真菌群落组成及其影响因素仍然未知。在我们的研究中,通过ITS rDNA的Illumina Miseq测序和传统培养方法,对平谷桃树三个品种(大久保、清风和京艳)的花、叶、茎和根以及根际土壤中的真菌群落进行了调查。对于器官,除根外,花的真菌丰富度和多样性最高,而叶的丰富度和多样性最低。子囊菌门和担子菌门是样本中最丰富的门。每个器官的真菌组合组成都很独特。三个品种的真菌群落也彼此不同。通过冗余分析(RDA),真菌群落结构与土壤pH、土壤钾、果实可溶性固形物含量和果实可滴定酸度显著相关。大多数分离的真菌菌株可以在高通量测序鉴定的分类群中找到。这项研究表明,植物器官、品种、土壤和果实特性可能对与平谷桃树相关的内生真菌群落结构产生深远影响。通过这项研究,可以进一步研究微生物群介导的桃树病原体保护和果实品质提升。