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WetA和VosA是一种真菌昆虫病原体的产孢能力、分生孢子质量和生物防治潜力的不同调节因子。

WetA and VosA are distinct regulators of conidiation capacity, conidial quality, and biological control potential of a fungal insect pathogen.

作者信息

Li Fang, Shi Han-Qiang, Ying Sheng-Hua, Feng Ming-Guang

机构信息

Institute of Microbiology, College of Life Sciences, Zhejiang University, Hangzhou, Zhejiang, 310058, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2015 Dec;99(23):10069-81. doi: 10.1007/s00253-015-6823-7. Epub 2015 Aug 5.

Abstract

Many filamentous fungi produce only conidia for dispersal and survival in vitro or in vivo. Here, we show that the developmental regulator WetA and the velvet protein VosA are not only required for conidial maturation but indispensable for conidiation in Beauveria bassiana, a filamentous entomopathogen. Deletion of wetA or vosA resulted in more than 90 % transcriptional depression of brlA and abaA, two activator genes in the central developmental pathway, during the critical period of conidiophore development and conidiation. Consequently, ΔwetA and ΔvosA strains lost 98 % in and 88 % of their conidiation capacities under optimal culture conditions, respectively. The conidia of ΔwetA showed more defective features than those of ΔvosA, including smaller size, lesser density, lower hydrophobicity, and impaired cell walls although intracellular trehalose content decreased more in the aging culture of ΔvosA than of ΔwetA. As a result, conidial sensitivity to cell wall perturbation was elevated in ΔwetA but unaffected in ΔvosA, which produced conidia more sensitive to the oxidant menadione and the wet-heat stress at 45 °C. Both deletion mutants showed similar defects in conidial tolerance to high osmolarity or UV-B irradiation but no change in conidial sensitivity to the other oxidant H2O2 or the fungicide carbendazim. Moreover, ΔwetA lost more virulence to Galleria mellonella larvae than ΔvosA. All these phenotypical changes were restored by either wetA or vosA complementation. Taken together, WetA and VosA are indispensable for asexual development and contribute differentially to conidial quality and hence the biological control potential of B. bassiana against insect pests.

摘要

许多丝状真菌仅产生分生孢子用于体外或体内的传播与存活。在此,我们表明发育调节因子WetA和天鹅绒蛋白VosA不仅是球孢白僵菌分生孢子成熟所必需的,而且对于该丝状昆虫病原菌的产孢也是不可或缺的。在分生孢子梗发育和产孢的关键时期,缺失wetA或vosA导致中央发育途径中的两个激活基因brlA和abaA转录抑制超过90%。因此,在最佳培养条件下,ΔwetA和ΔvosA菌株的产孢能力分别丧失了98%和88%。与ΔvosA的分生孢子相比,ΔwetA的分生孢子表现出更多的缺陷特征,包括更小的尺寸、更低的密度、更低的疏水性以及受损的细胞壁,尽管在衰老培养中ΔvosA的细胞内海藻糖含量比ΔwetA下降得更多。结果,ΔwetA中分生孢子对细胞壁扰动的敏感性升高,而ΔvosA中则不受影响,后者产生的分生孢子对氧化剂甲萘醌和45℃湿热胁迫更敏感。两个缺失突变体在分生孢子对高渗透压或UV - B辐射的耐受性方面表现出相似的缺陷,但在分生孢子对另一种氧化剂H2O2或杀菌剂多菌灵的敏感性方面没有变化。此外,ΔwetA对大蜡螟幼虫的毒力比ΔvosA丧失得更多。所有这些表型变化通过wetA或vosA互补得以恢复。综上所述,WetA和VosA对于无性发育是不可或缺的,并且对分生孢子质量有不同贡献,从而对球孢白僵菌防治害虫的生物防治潜力产生影响。

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