Nuclear Genome Sequence and Gene Expression of an Intracellular Fungal Endophyte Stimulating the Growth of Cranberry Plants

被引:2
|
作者
Thimmappa, Bhagya C. [1 ]
Salhi, Lila Naouelle [1 ]
Forget, Lise [1 ]
Sarrasin, Matt [1 ]
Bustamante Villalobos, Peniel [1 ]
Lang, B. Franz [1 ]
Burger, Gertraud [1 ]
机构
[1] Univ Montreal, Robert Cedergren Ctr Bioinformat & Genom, Dept Biochim, Montreal, PQ H3T 1J4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
28S-rRNA phylogeny; biofertilization; Codinaeella sp; endophyte; ericoid mycorrhizal fungus (ErMF); Vaccinium macrocarpon Aiton (American cranberry); LEVEL PHYLOGENETIC CLASSIFICATION; HIDDEN MARKOV MODEL; POINT MUTATION RIP; AMMONIUM TRANSPORTER; POTASSIUM NUTRITION; ANNOTATION; EFFICIENT; FAMILY; TOOL; ROT;
D O I
10.3390/jof9010126
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Ericaceae thrive in poor soil, which we postulate is facilitated by microbes living inside those plants. Here, we investigate the growth stimulation of the American cranberry (Vaccinium macrocarpon) by one of its fungal endosymbionts, EC4. We show that the symbiont resides inside the epidermal root cells of the host but extends into the rhizosphere via its hyphae. Morphological classification of this fungus is ambiguous, but phylogenetic inference based on 28S rRNA identifies EC4 as a Codinaeella species (Chaetosphaeriaceae, Sordariomycetes, Ascomycetes). We sequenced the genome and transcriptome of EC4, providing the first 'Omics' information of a Chaetosphaeriaceae fungus. The 55.3-Mbp nuclear genome contains 17,582 potential protein-coding genes, of which nearly 500 have the capacity to promote plant growth. For comparing gene sets involved in biofertilization, we annotated the published genome assembly of the plant-growth-promoting Trichoderma hamatum. The number of proteins involved in phosphate transport and solubilization is similar in the two fungi. In contrast, EC4 has similar to 50% more genes associated with ammonium, nitrate/nitrite transport, and phytohormone synthesis. The expression of 36 presumed plant-growth-promoting EC4 genes is stimulated when the fungus is in contact with the plant. Thus, Omics and in-plantae tests make EC4 a promising candidate for cranberry biofertilization on nutrient-poor soils.
引用
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页数:19
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