Haplotype-resolved门状白蛉基因组揭示了核分化、te介导的变异和腐坏潜能。

IF 6.2 1区 生物学 Q1 MYCOLOGY
Ima Fungus Pub Date : 2025-08-28 eCollection Date: 2025-01-01 DOI:10.3897/imafungus.16.161411
Guoliang Meng, Jiajia Li, Yao Cao, Fan Li, MengQian Liu, Rongchun Li, Caihong Dong
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引用次数: 0

摘要

门状白蛉是一种广泛食用的食用菌,也是目前工业规模栽培的唯一白蛉菌种。尽管其经济意义重大,但其营养策略和基因组适应性仍然难以捉摸。在这里,我们提出了高质量的,染色体水平的基因组组装的两个性别相容的单核体(PP78和PP85)的P. portentosus。比较基因组分析显示,菌株PP85的基因组大小差异为1.17 Mb(30.87和32.04 Mb),主要归因于转座因子(TE)扩增。基因组结构变异主要由te驱动,尤其是LTR反转录转座子。DNA转座子还参与次级代谢物生物合成基因簇的结构重排,影响其组织和转录谱。功能注释鉴定出187个pp78特异性基因和236个pp85特异性基因,后者富含te相关和推定的毒力因子。P. portentosus显示出ECM共生(还原木质纤维素降解酶)和腐殖酸(扩展糖苷水解酶31和糖转运蛋白)的基因组特征,支持兼性ECM生活方式。非核糖体肽合成酶和聚酮合成酶途径的扩张,以及ECM真菌典型的萜类簇的收缩,进一步表明其对腐殖质的适应。这些发现突出了TEs在推动门尾拟南芥基因组可塑性、代谢多样性和核分化中的作用,为门尾拟南芥提供了宝贵的基因组资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Haplotype-resolved genomes of Phlebopus portentosus reveal nuclear differentiation, TE-mediated variation, and saprotrophic potential.

Phlebopus portentosus is a widely consumed edible mushroom and the only Boletales species currently cultivated on an industrial scale. Despite its economic importance, its trophic strategy and genomic adaptations remain elusive. Here, we presented high-quality, chromosome-level genome assemblies for two sexually compatible monokaryons (PP78 and PP85) of P. portentosus. Comparative genomic analysis revealed a genome size difference of 1.17 Mb (30.87 vs. 32.04 Mb), primarily attributed to transposable element (TE) expansion in strain PP85. Genome structural variations were largely driven by TEs, particularly LTR retrotransposons. DNA transposons were also involved in structural rearrangement of secondary metabolite biosynthetic gene clusters, impacting their organization and transcriptional profiles. Functional annotation identified 187 PP78-specific and 236 PP85-specific genes, with the latter enriched in TE-related and putative virulence factors. P. portentosus displays genomic signatures of both ECM symbiosis (reduced lignocellulose-degrading enzymes) and saprotroph (expanded glycoside hydrolase 31 and sugar transporters), supporting a facultative ECM lifestyle. The expansion of non-ribosomal peptide synthetase and polyketide synthase pathways, alongside contraction of terpenoid clusters typical of ECM fungi, further indicated its adaptation to saprotroph. These findings highlight the role of TEs in driving genome plasticity, metabolic diversity, and nuclear divergence in P. portentosus, providing valuable genomic resources for this species.

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来源期刊
Ima Fungus
Ima Fungus Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
11.00
自引率
3.70%
发文量
18
审稿时长
20 weeks
期刊介绍: The flagship journal of the International Mycological Association. IMA Fungus is an international, peer-reviewed, open-access, full colour, fast-track journal. Papers on any aspect of mycology are considered, and published on-line with final pagination after proofs have been corrected; they are then effectively published under the International Code of Nomenclature for algae, fungi, and plants. The journal strongly supports good practice policies, and requires voucher specimens or cultures to be deposited in a public collection with an online database, DNA sequences in GenBank, alignments in TreeBASE, and validating information on new scientific names, including typifications, to be lodged in MycoBank. News, meeting reports, personalia, research news, correspondence, book news, and information on forthcoming international meetings are included in each issue
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