Qin Jiao, Feng Jing-Qiu, Zhang Wei, Zhang Shi-Bao
Key Laboratory of Economic Plants and Biotechnology, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650201, China.
Yunnan Key Laboratory for Fungal Diversity and Green Development, Kunming 650201, China.
J Fungi (Basel). 2021 Nov 22;7(11):994. doi: 10.3390/jof7110994.
Mycorrhizal mutualisms are vital for orchids through germination to adulthood. Fungal species diversity and community composition vary across seasons and plant development stages and affect plant survival, adaptation, and community maintenance. Knowledge of the temporal turnover of mycorrhizal fungi (OMF) remains poorly understood in the eco-physiologically diverse orchids (especially in epiphytic orchids), although it is important to understand the function and adaptation of mycorrhizae. Some species of are epiphytic plants with annual roots and may recruit different fungal partners during their root lifecycle. Based on continuous samplings of during a whole root lifecycle, we characterized the fungal temporal dynamics using Illumina sequencing of the ITS2 region. Our data showed that the plants of were quickly colonized by OMF at root emergence and had a constant OMF composition throughout one root lifecycle, although the OMF richness declined with root aging after a peak occurrence during root elongation. In contrast, the richness of root-inhabiting fungal endophytes kept increasing with root aging and more drastic turnovers were found in their species compositions. Our findings of OMF temporal turnover contribute to further understanding of mycorrhizal associations and adaptation of Orchidaceae and will benefit orchid resource conservation and utilization.
菌根共生关系对于兰花从萌发到成年的整个过程至关重要。真菌物种多样性和群落组成随季节和植物发育阶段而变化,并影响植物的存活、适应以及群落维持。尽管了解菌根的功能和适应性很重要,但在生态生理多样的兰花(尤其是附生兰花)中,关于菌根真菌(OMF)的时间周转情况仍知之甚少。某些物种是具有一年生根系的附生植物,在其根的生命周期中可能会招募不同的真菌伙伴。基于在整个根生命周期内对[具体物种]的连续采样,我们使用ITS2区域的Illumina测序对真菌的时间动态进行了表征。我们的数据表明,[具体物种]的植物在根出现时迅速被OMF定殖,并且在一个根生命周期内OMF组成保持恒定,尽管在根伸长过程中出现峰值后,OMF丰富度会随着根的老化而下降。相比之下,根内真菌内生菌的丰富度随着根的老化持续增加,并且在其物种组成中发现了更剧烈的周转。我们关于OMF时间周转的研究结果有助于进一步了解兰科植物的菌根关联和适应性,并将有益于兰花资源的保护和利用。