Zhang Jin-Guan, Zhang Ke, Xu Si-Yuan, Ying Sheng-Hua, Feng Ming-Guang
MOE Laboratory of Biosystems Homeostasis & Protection, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, China.
Microbiol Spectr. 2023 Mar 14;11(2):e0007023. doi: 10.1128/spectrum.00070-23.
Conidial maturation, which is crucial for conidial quality, is controlled by the asexual development activator WetA and the downstream, velvety protein VosA in Aspergillus. Their orthologs have proved functional in conidial quality control of Beauveria bassiana, as seen in Aspergillus, but are functionally unexplored, in Metarhizium , another hypocrealean insect pathogen. Here, WetA and VosA prove essential and nonessential for 's life cycle, respectively. Disruption of increased hyphal sensitivity to oxidative stress and Congo red-induced cell wall stress, but had little impact on radial growth. The Δ mutant was severely compromised in conidiation capacity and conidial quality, which was featured by slower germination, decreased UV resistance, reduced hydrophobicity, and deformed hydrophobin rodlet bundles that were assembled onto conidial coat. The mutant's virulence was greatly attenuated via normal infection due to a blockage of infection-required cellular processes. All examined phenotypes were unaffected for the Δ mutant. Intriguingly, mannitol was much less accumulated in the 7- and 15-day-old cultures of Δ and Δ than of control strains, while accumulated trehalose was not detectable at all, revealing little a link of intracellular polyol accumulation to conidial maturation. Transcriptomic analysis revealed differential regulation of 160 genes (up/down ratio: 72:88) in Δ These genes were mostly involved in cellular component, biological process, and molecular function but rarely associated with asexual development. Conclusively, WetA plays a relatively conserved role in 's spore surface structure, and also a differentiated role in some other cellular processes associated with conidial maturation. VosA is functionally redundant in unlike its ortholog in bassiana. WetA and VosA regulate conidiation and conidial maturation required for the life cycle of Beauveria bassiana, like they do in Aspergillus, but remain functionally unexplored in Metarhizium , another hypocrealean pathogen considered to have evolved insect pathogenicity ~130 million years later than bassiana. This study reveals a similar role of WetA ortholog in asexual development, conidial maturation, and insect pathogenicity, and also its distinctive role in mediating some other conidial maturation-related cellular events, but has functional redundancy of VosA in . The maturation process vital for conidial quality proves dependent on a role of WetA in spore wall assembly but is independent of its role in intracellular polyol accumulation. Transcriptomic analysis reveals a link of WetA to 160 genes involved in cellular component, biological process, and molecular function. Our study unveils that WetA or VosA is functionally differential or different from those learned in bassiana and other ascomycetes.
分生孢子成熟对于分生孢子质量至关重要,在曲霉属中由无性发育激活因子WetA和下游的天鹅绒蛋白VosA控制。正如在曲霉属中所见,它们的直系同源物已被证明在球孢白僵菌的分生孢子质量控制中发挥作用,但在另一种肉座菌目昆虫病原菌绿僵菌中,其功能尚未得到探索。在这里,WetA和VosA分别被证明对绿僵菌的生命周期是必需的和非必需的。绿僵菌WetA基因的破坏增加了菌丝对氧化应激和刚果红诱导的细胞壁应激的敏感性,但对径向生长影响不大。ΔWetA突变体的产孢能力和分生孢子质量严重受损,其特征是萌发较慢、紫外线抗性降低、疏水性降低以及组装在分生孢子表面的疏水蛋白小杆束变形。由于感染所需的细胞过程受阻,该突变体通过正常感染的毒力大大减弱。所有检测的表型对ΔVosA突变体均无影响。有趣的是,在ΔWetA和ΔVosA的7天和15天龄培养物中,甘露醇的积累比对照菌株少得多,而根本检测不到海藻糖的积累,这表明细胞内多元醇积累与分生孢子成熟几乎没有联系。转录组分析揭示了ΔWetA中160个基因的差异调节(上调/下调比例:72:88)。这些基因大多参与细胞成分、生物学过程和分子功能,但很少与无性发育相关。总之,WetA在绿僵菌的孢子表面结构中发挥相对保守的作用,并且在与分生孢子成熟相关的一些其他细胞过程中也发挥不同的作用。与球孢白僵菌中的直系同源物不同,VosA在绿僵菌中功能冗余。WetA和VosA像在曲霉属中一样调节球孢白僵菌生命周期所需的产孢和分生孢子成熟,但在绿僵菌中其功能尚未得到探索,绿僵菌是另一种肉座菌目病原菌,被认为比球孢白僵菌晚约1.3亿年进化出昆虫致病性。本研究揭示了WetA直系同源物在无性发育、分生孢子成熟和昆虫致病性中的类似作用,以及它在介导一些其他与分生孢子成熟相关的细胞事件中的独特作用,但VosA在绿僵菌中具有功能冗余。对分生孢子质量至关重要的成熟过程被证明依赖于WetA在孢子壁组装中的作用,但与其在细胞内多元醇积累中的作用无关。转录组分析揭示了WetA与160个参与细胞成分、生物学过程和分子功能的基因之间的联系。我们的研究揭示,绿僵菌中的WetA或VosA在功能上与在球孢白僵菌和其他子囊菌中所了解的不同。