The yeast Dothiora sorbi IOJ-3 naturally produced various filamentous sectors with distinct abilities by undergoing DNA demethylation

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Yong Sun , Yijia Zhang , Suwan Pan, Hao Cong, Jihong Jiang
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Abstract

Some fungi have demonstrated the ability to adapt rapidly to changing environments by exhibiting morphological plasticity, a trait influenced by species and environmental factors. Here, an anamorphic yeast strain IOJ-3 exhibited unique sectorization characteristics, naturally producing diverse filamentous sectors when cultivated on potato dextrose agar (PDA) medium or natural culture medium for durations exceeding 13 days. The strain IOJ-3 and its filamentous sectors were identified as Dothiora sorbi. The morphology of the sectors was consistent and heritable. The life cycle of strain IOJ-3 was investigated through microscopic observation, emphasizing the development of conidiogenous cells as a crucial stage, from which filamentous sectors originate. Some physiological characteristics of IOJ-3 and filamentous sectors are compared, and strain IOJ-3 has a higher antibiotic tolerance than two filamentous sectors, IOJ-3a expands faster on the culture medium, and IOJ-3b can penetrate cellophane. A transcriptomic analysis was conducted to investigate the differentially expressed genes between the yeast form IOJ-3 and its two filamentous sectors, revealing a total of 594 genes that exhibited consistent differential expression relative to IOJ-3, including 44 silencing genes in IOJ-3 that were activated. Gene Ontology analysis indicated that these differentially expressed genes were primarily associated with the cellular component category. Furthermore, adding 5-Azacytidine accelerated filamentous sectorization and increased the proportion of filamentous cells of strain IOJ-3 in PD liquid media, suggesting that the filamentous sectorization observed in strain IOJ-3 is linked to processes of DNA demethylation. In conclusion, this study sheds light on the biological characteristics of D. sorbi regarding morphological transitions and provides substantial direction for exploring genes related to fungal filamentous development.

酵母 Dothiora sorbi IOJ-3 通过 DNA 去甲基化自然产生了各种具有不同能力的丝状部门
一些真菌表现出形态可塑性,能够迅速适应不断变化的环境,这种特性受物种和环境因素的影响。在本研究中,一种无形态酵母菌株 IOJ-3 表现出独特的扇形化特征,在马铃薯葡萄糖琼脂(PDA)培养基或天然培养基上培养超过 13 天后,会自然产生多种丝状扇形。经鉴定,菌株 IOJ-3 及其丝状扇形体为 Dothiora sorbi。丝状部分的形态一致且可遗传。通过显微镜观察研究了菌株 IOJ-3 的生命周期,强调分生孢子器细胞的发育是一个关键阶段,丝状菌丝是从这个阶段产生的。比较了 IOJ-3 和丝状部门的一些生理特征,发现菌株 IOJ-3 比两个丝状部门具有更高的抗生素耐受性,IOJ-3a 在培养基上扩展得更快,IOJ-3b 可以穿透玻璃纸。通过转录组分析,研究了酵母菌型 IOJ-3 与其两个丝状区段之间的差异表达基因,结果发现共有 594 个基因相对于 IOJ-3 表现出一致的差异表达,其中包括 44 个在 IOJ-3 中被激活的沉默基因。基因本体分析表明,这些差异表达基因主要与细胞成分类别有关。此外,在 PD 液体培养基中添加 5-Azacytidine 可加速菌株 IOJ-3 的丝状扇形化,并增加其丝状细胞的比例,这表明在菌株 IOJ-3 中观察到的丝状扇形化与 DNA 去甲基化过程有关。总之,本研究揭示了D. sorbi在形态转变方面的生物学特征,并为探索与真菌丝状发育相关的基因提供了重要方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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