4.7 Article

Comparison of green and albino individuals of the partially mycoheterotrophic orchid Epipactis helleborine on molecular identities of mycorrhizal fungi, nutritional modes and gene expression in mycorrhizal roots

期刊

MOLECULAR ECOLOGY
卷 26, 期 6, 页码 1652-1669

出版社

WILEY
DOI: 10.1111/mec.14021

关键词

Epipactis; mixotrophy; mycoheterotrophy; mycorrhizae; partial mycoheterotrophy; RNA sequencing; stable isotope; transcriptome analysis

资金

  1. NIBB Cooperative Research Programs [13-733, 14-702, 15-805]
  2. Ministry of Education, Culture, Sports, Science and Technology (MEXT) [25128710, 22128001]
  3. Japan Society for the Promotion of Science (JSPS) [15K14550]
  4. Grants-in-Aid for Scientific Research [15K14550, 22128001] Funding Source: KAKEN

向作者/读者索取更多资源

Some green orchids obtain carbon from their mycorrhizal fungi, as well as from photosynthesis. These partially mycoheterotrophic orchids sometimes produce fully achlorophyllous, leaf-bearing (albino) variants. Comparing green and albino individuals of these orchids will help to uncover the molecular mechanisms associated with mycoheterotrophy. We compared green and albino Epipactis helleborine by molecular barcoding of mycorrhizal fungi, nutrient sources based on N-15 and C-13 abundances and gene expression in their mycorrhizae by RNA-seq and cDNA de novo assembly. Molecular identification of mycorrhizal fungi showed that green and albino E. helleborine harboured similar mycobionts, mainly Wilcoxina. Stable isotope analyses indicated that albino E. helleborine plants were fully mycoheterotrophic, whereas green individuals were partially mycoheterotrophic. Gene expression analyses showed that genes involved in antioxidant metabolism were upregulated in the albino variants, which indicates that these plants experience greater oxidative stress than the green variants, possibly due to a more frequent lysis of intracellular pelotons. It was also found that some genes involved in the transport of some metabolites, including carbon sources from plant to fungus, are higher in albino than in green variants. This result may indicate a bidirectional carbon flow even in the mycoheterotrophic symbiosis. The genes related to mycorrhizal symbiosis in autotrophic orchids and arbuscular mycorrhizal plants were also upregulated in the albino variants, indicating the existence of common molecular mechanisms among the different mycorrhizal types.

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