School of Life Sciences, Sun Yat-sen University, 510275, Guangzhou, China.
Braz J Microbiol. 2024 Sep;55(3):2805-2814. doi: 10.1007/s42770-024-01384-0. Epub 2024 May 28.
Plant-fungus symbioses have functional relevance during plant growth and development. However, it is still unknown whether the endosphere fungi in mature plants originated from soils or seeds. To elucidate the origination of endosphere fungi in mature rice roots, the fungal communities in surface sterilized roots and shoots of mature rice plants germinated in soils, rhizosphere soils and seedlings germinated under sterile conditions were analyzed by Illumina-based sequencing and compared. Total 62 fungal OTUs shared in the seedlings, shoots and roots, 126 OTUs shared in the rhizosphere soils, shoots and roots. Fungal OTUs coexisted in the four types of samples belonged to genera of Rhizophagus, Trichoderma, Fusarium, Atractiella, Myrmecridium, Sporothrix, Microdochium, Massariosphaeria, and Phialemonium. The principle component analysis (PCA) and NMDS plot suggested that the fungal community structure in rhizosphere soils was different from that in seedlings significantly. Rhizosphere soil, shoot and root contained more similar fungal community. The fungal community in seedling was similar to that in shoot and root of mature plants. The results suggested that endophytic fungal communities in mature rice plants originated from both seedlings and rhizosphere soils, and more fungal taxa originated from rhizosphere soils. Mature rice plants contain mycobiome transmitted vertically from seeds, which suggests that inoculation of endophytic fungi isolated from seedlings might be an effective way to introduce beneficial fungal inoculants into rice plants successfully.
植物-真菌共生体在植物生长和发育过程中具有功能相关性。然而,目前尚不清楚成熟植物中的内生真菌是来自土壤还是种子。为了阐明成熟水稻根系内生真菌的起源,本研究通过 Illumina 测序分析并比较了表面消毒的成熟水稻植株根和茎以及在土壤、根际土壤和无菌条件下萌发的幼苗中的真菌群落。在幼苗、茎和根中共有的 62 个真菌 OTUs,在根际土壤、茎和根中共有的 126 个真菌 OTUs。在这四种类型的样品中共存的真菌 OTUs 属于 Rhizophagus、Trichoderma、Fusarium、Atractiella、Myrmecridium、Sporothrix、Microdochium、Massariosphaeria 和 Phialemonium 属。主成分分析(PCA)和 NMDS 图表明,根际土壤中的真菌群落结构与幼苗显著不同。根际土壤、茎和根含有更相似的真菌群落。幼苗中的真菌群落与成熟植株的茎和根中的真菌群落相似。结果表明,成熟水稻植株中的内生真菌群落既来自幼苗,也来自根际土壤,更多的真菌类群来自根际土壤。成熟水稻植株中含有垂直传播自种子的真菌微生物组,这表明从幼苗中分离出的内生真菌接种可能是成功将有益真菌接种剂引入水稻植株的有效方法。