MOE Laboratory of Biosystems Homeostasis & Protection, College of Life Sciences, Zhejiang University, Hangzhou, 310058, Zhejiang, China.
Appl Microbiol Biotechnol. 2021 Jul;105(13):5491-5502. doi: 10.1007/s00253-021-11420-w. Epub 2021 Jun 25.
Adherence of conidia to insect integument is crucial for initiation of fungal infection through cuticular penetration and was previously reported to rely upon the Metarhizium-type adhesin Mad1 rather than Mad2, another adhesin crucial for conidial adherence of Metarhizium anisopliae to plant root surface. Mad1 and Mad2 have since been considered to function in fungal insect pathogenesis and plant root colonization respectively. Here, three adhesins were characterized in Beauveria bassiana, including Adh1/Mad1, Adh2/Mad2, and Adh3 known as filamentous hemagglutinin/adhesin and virulence factor in animal-pathogenic bacteria. Among those, only Adh2 was found to play a substantial role in sustaining the fungal virulence and some phenotypes associated with biological control potential. Disruption of adh2 resulted in decreased conidial adherence to insect wing cuticle, attenuated virulence via normal cuticle infection or cuticle-bypassing infection (injection), reduced blastospore production in an insect hemolymph-mimicking broth, largely reduced conidiation capacity, impaired conidial quality indicative of lowered viability, hydrophobicity, and UV resistance, but no growth defects on rich and scant media under normal or stressful culture conditions. The main phenotypic changes correlated well with repressed expression of developmental activator genes required for aerial conidiation and submerged blastospore production and of key hydrophobin genes essential for hydrophobin synthesis and assembly into rodlet bundles of conidial coat crucial for conidial adherence. In contrast, either adh1 or adh3 disruption caused insignificant changes in all phenotypes examined. These findings offer novel insight into a significance of Adh2, but a dispensability of Adh1 or Adh3, for insect-pathogenic lifecycle of B. bassiana. KEY POINTS: • Three adhesins (Adh1-3) of Beauvera bassiana are functionally characterized. • Adh2 plays a role in sustaining virulence and lifecycle-related cellular events. • Either Adh1 or Adh3 is dispensable for insect-pathogenic lifecycle of B. bassiana.
分生孢子对昆虫表皮的附着对于通过角质层穿透启动真菌感染至关重要,先前的研究报道依赖于 Metarhizium 型黏附素 Mad1,而不是 Mad2,后者对于 Metarhizium anisopliae 分生孢子附着在植物根表面至关重要。Mad1 和 Mad2 此后分别被认为在真菌昆虫发病机制和植物根定殖中起作用。在这里,在球孢白僵菌中鉴定了三种黏附素,包括 Adh1/Mad1、Adh2/Mad2 和 Adh3,后者在动物致病性细菌中被称为丝状血凝素/黏附素和毒力因子。在这些黏附素中,只有 Adh2 被发现对维持真菌毒力和与生物防治潜力相关的一些表型起着重要作用。adh2 的缺失导致分生孢子对昆虫翅表皮的附着减少,通过正常的角质层感染或角质层绕过感染(注射)减弱毒力,减少在类似于昆虫血淋巴的肉汤中的芽生孢子的产生,大大降低了分生孢子的产生能力,降低了分生孢子的质量,表明活力、疏水性和 UV 抗性降低,但在正常或应激培养条件下,在丰富和稀少的培养基上没有生长缺陷。主要表型变化与需要进行气生分生孢子和浸没芽生孢子产生的发育激活剂基因的表达受到抑制以及对于疏水性合成和组装至关重要的关键疏水性基因的表达受到抑制密切相关。杆状束的分生孢子涂层对于分生孢子的附着。相比之下,adh1 或 adh3 的缺失在所有检查的表型中都没有引起明显的变化。这些发现为 Adh2 的重要性提供了新的认识,但是 Adh1 或 Adh3 对于 B. bassiana 的昆虫致病生命周期是可有可无的。要点:• 白僵菌的三种黏附素(Adh1-3)的功能得到了表征。• Adh2 在维持毒力和与生命周期相关的细胞事件中起作用。• 对于 B. bassiana 的昆虫致病生命周期,Adh1 或 Adh3 是可有可无的。