A pantropically introduced tree is followed by specific ectomycorrhizal symbionts due to pseudo-vertical transmission

作者:Sene Seynabou; Selosse Marc Andre; Forget Mathieu; Lambourdiere Josie; Cisse Khoudia; Diedhiou Abdala Gamby; Rivera Ocasio Elsie; Kodja Hippolyte; Kameyama Norikazu; Nara Kazuhide; Vincenot Lucie; Mansot Jean Louis; Weber Jean; Roy Melanie; Sylla Samba Ndao; Ba Amadou
来源:The ISME Journal, 2018, 12(7): 1806-1816.
DOI:10.1038/s41396-018-0088-y

摘要

Global trade increases plant introductions, but joint introduction of associated microbes is overlooked. We analyzed the ectomycorrhizal fungi of a Caribbean beach tree, seagrape (Coccoloba uvifera, Polygonacaeae), introduced pantropically to stabilize coastal soils and produce edible fruits. Seagrape displays a limited symbiont diversity in the Caribbean. In five regions of introduction (Brazil, Japan, Malaysia, Reunion and Senegal), molecular barcoding showed that seagrape mostly or exclusively associates with Scleroderma species (Basidiomycota) that were hitherto only known from Caribbean seagrape stands. An unknown Scleroderma species dominates in Brazil, Japan and Malaysia, while Scleroderma bermudense exclusively occurs in Reunion and Senegal. Population genetics analysis of S. bermudense did not detect any demographic bottleneck associated with a possible founder effect, but fungal populations from regions where seagrape is introduced are little differentiated from the Caribbean ones, separated by thousands of kilometers, consistently with relatively recent introduction. Moreover, dry seagrape fruits carry Scleroderma spores, probably because, when drying on beach sand, they aggregate spores from the spore bank accumulated by semi-hypogeous Scleroderma sporocarps. Aggregated spores inoculate seedlings, and their abundance may limit the founder effect after seagrape introduction. This rare pseudo-vertical transmission of mycorrhizal fungi likely contributed to efficient and repeated seagrape/Scleroderma co-introductions.

  • 出版日期2018-7