Near-complete de novo assembly of Tricholoma bakamatsutake chromosomes revealed the structural divergence and differentiation of Tricholoma genomes

Author:

Ichida Hiroyuki1,Murata Hitoshi2,Hatakeyama Shin3,Yamada Akiyoshi4,Ohta Akira5

Affiliation:

1. Ion Beam Breeding Group, RIKEN Nishina Center for Accelerator-Based Science , Wako, Saitama 351-0198 , Japan

2. Forestry and Forest Products Research Institute (FFPRI), Forest Research and Management Organization , Tsukuba, Ibaraki 305-8687 , Japan

3. Department of Regulatory Biology, Faculty of Science, Saitama University , Saitama, Saitama 338-8570 , Japan

4. Faculty of Agriculture, Shinshu University , Minami-minowa, Nagano 399-4598 , Japan

5. Kansai Research Center, FFPRI , Kyoto, Kyoto 612-0855 , Japan

Abstract

Abstract Tricholoma bakamatsutake, which is an edible ectomycorrhizal fungus associated with Fagaceae trees, may have diverged before the other species in Tricholoma section Caligata. We generated a highly contiguous whole-genome sequence for T. bakamatsutake SF-Tf05 isolated in an Oak (Quercus salicina) forest in Japan. The assembly of high-fidelity long reads, with a median read length of 12.3 kb, resulted in 13 chromosome-sized contigs comprising 142,068,211 bases with an average guanine and cytosine (GC) content of 43.94%. The 13 chromosomes were predicted to encode 11,060 genes. A contig (122,566 bases) presumably containing the whole circular mitochondrial genome was also recovered. The chromosome-wide comparison of T. bakamatsutake and Tricholoma matsutake (TMA_r1.0) indicated that the basic number of chromosomes (13) was conserved, but the structures of the corresponding chromosomes diverged, with multiple inversions and translocations. Gene conservation and cluster analyses revealed at least 3 phylogenetic clades in Tricholoma section Caligata. Specifically, all T. bakamatsutake strains belonged to the “bakamatsutake” clade, which is most proximal to the “caligatum” clade consisting of Tricholoma caligatum and Tricholoma fulvocastaneum. The constructed highly contiguous nearly telomere-to-telomere genome sequence of a T. bakamatsutake isolate will serve as a fundamental resource for future research on the evolution and differentiation of Tricholoma species.

Funder

JSPS KAKENHI

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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