A near-complete telomere-to-telomere genome assembly for Batrachochytrium dendrobatidis GPL JEL423 reveals a larger CBM18 gene family and a smaller M36 metalloprotease gene family than previously recognized.

IF 2.1 3区 生物学 Q3 GENETICS & HEREDITY G3: Genes|Genomes|Genetics Pub Date : 2025-02-05 DOI:10.1093/g3journal/jkae304
Nicolas Helmstetter, Keith Harrison, Jack Gregory, Jamie Harrison, Elizabeth Ballou, Rhys A Farrer
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Abstract

Batrachochytrium dendrobatidis is responsible for mass extinctions and extirpations of amphibians, mainly driven by the Global Panzootic Lineage (BdGPL). BdGPL isolate JEL423 is a commonly used reference strain in studies exploring the evolution, epidemiology, and pathogenicity of chytrid pathogens. These studies have been hampered by the fragmented, erroneous, and incomplete B. dendrobatidis JEL423 genome assembly, which includes long stretches of ambiguous positions and poorly resolved telomeric regions. Here, we present and describe a substantially improved, near telomere-to-telomere genome assembly and gene annotation for B. dendrobatidis JEL423. Our new assembly is 24.5 Mb in length, ∼800 kb longer than the previously published assembly for this organism, comprising 18 nuclear scaffolds and 2 mitochondrial scaffolds and including an extra 839 kb of repetitive sequence. We discovered that the patterns of aneuploidy in B. dendrobatidis JEL423 have remained stable over approximately 5 years. We found that our updated assembly encodes fewer than half the number of M36 metalloprotease genes predicted in the previous assembly. In contrast, members of the crinkling and necrosis gene family were found in similar numbers to the previous assembly. We also identified a more extensive carbohydrate binding module 18 gene family than previously observed. We anticipate our findings, and the updated genome assembly will be a useful tool for further investigation of the genome evolution of the pathogenic chytrids.

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Batrachochytrium dendroatidis GPL JEL423的端粒到端粒基因组组装接近完整,揭示了比先前认识到的更大的CBM18基因家族和更小的M36金属蛋白酶基因家族。
蝙蝠壶菌(Batrachochytrium dendroatidis, Bd)是导致两栖动物大灭绝和灭绝的主要原因,主要是由全球泛动物谱系(Global Panzootic Lineage, BdGPL)驱动的。BdGPL分离株JEL423是探索壶菌病原菌进化、流行病学和致病性研究中常用的参考菌株。这些研究受到碎片化,错误和不完整的B. dendroatidis JEL423基因组组装的阻碍,其中包括长段不明确的位置和不确定的端粒区域。在这里,我们提出并描述了一个实质性的改进,近端粒到端粒基因组组装和基因注释B. dendroatidis JEL423。我们的新组装全长24.5 Mb,比之前发表的该生物的组装长约800 kb,包括18个核支架和2个线粒体支架,包括额外的839 kb重复序列。我们发现,在大约5年的时间里,树突螺旋体JEL423的非整倍体模式保持稳定。我们发现,更新后的组装编码的M36金属蛋白酶基因数量不到之前组装中预测的一半。相比之下,皱纹和坏死基因家族成员的数量与之前的组装相似。我们还发现了一个比以前观察到的更广泛的碳水化合物结合模块18基因家族。我们期待着我们的发现,更新的基因组组装将为进一步研究致病性壶菌的基因组进化提供有用的工具。
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来源期刊
G3: Genes|Genomes|Genetics
G3: Genes|Genomes|Genetics GENETICS & HEREDITY-
CiteScore
5.10
自引率
3.80%
发文量
305
审稿时长
3-8 weeks
期刊介绍: G3: Genes, Genomes, Genetics provides a forum for the publication of high‐quality foundational research, particularly research that generates useful genetic and genomic information such as genome maps, single gene studies, genome‐wide association and QTL studies, as well as genome reports, mutant screens, and advances in methods and technology. The Editorial Board of G3 believes that rapid dissemination of these data is the necessary foundation for analysis that leads to mechanistic insights. G3, published by the Genetics Society of America, meets the critical and growing need of the genetics community for rapid review and publication of important results in all areas of genetics. G3 offers the opportunity to publish the puzzling finding or to present unpublished results that may not have been submitted for review and publication due to a perceived lack of a potential high-impact finding. G3 has earned the DOAJ Seal, which is a mark of certification for open access journals, awarded by DOAJ to journals that achieve a high level of openness, adhere to Best Practice and high publishing standards.
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