College of Food Science and Engineering, Gansu Agricultural University, Lanzhou, China.
Institute of Postharvest and Food Sciences, The Volcani Center, Agricultural Research Organization, Rishon LeZion, Israel.
J Appl Microbiol. 2022 Oct;133(4):2631-2641. doi: 10.1111/jam.15732. Epub 2022 Aug 8.
Calmodulin (CaM), acts as a kind of multifunctional Ca sensing protein, which is ubiquitous in fungi, is highly conserved across eukaryotes and is involved in the regulation of a range of physiological processes, including morphogenesis, reproduction and secondary metabolites biosynthesis. Our aim was to understand the characteristics and functions of AaCaM in Alternaria alternata, the causal agent of pear black spot.
A 450 bp cDNA sequence of AaCaM gene of A. alternata was cloned by the PCR homology method. Sequence analysis showed that this protein encoded by AaCaM was a stable hydrophilic protein and had a high similarity to Neurospora crassa (CAA50271.1) and other fungi. RT-qPCR analysis determined that AaCaM was differentially upregulated during infection structural differentiation of A. alternata both on hydrophobic and pear wax extract-coated surface, with a 3.37-fold upregulation during the hydrophobic induced appressorium formation period (6 h) and a 1.46-fold upregulation during the infection hyphae formation period (8 h) following pear wax induction. Pharmaceutical analysis showed that the CaM-specific inhibitor, trifluoperazine (TFP), inhibited spore germination and appressorium formation, and affected toxins and melanin biosynthesis in A. alternata.
AaCaM plays an important role in regulating infection structure differentiation and secondary metabolism of A. alternata.
Our study provides a theoretical basis for further in-depth investigation of the specific role of AaCaM in the calcium signalling pathway underlying hydrophobic and pear wax-induced infection structure differentiation and pathogenicity of A. alternata.
钙调蛋白(CaM)作为一种多功能钙感应蛋白,存在于真菌中,在真核生物中高度保守,参与调节多种生理过程,包括形态发生、繁殖和次生代谢物生物合成。我们的目的是了解梨黑斑病菌Alternaria alternata 中 AaCaM 的特征和功能。
通过 PCR 同源性方法克隆了 A. alternata 的 AaCaM 基因的 450bp cDNA 序列。序列分析表明,该蛋白是一种稳定的亲水蛋白,与 Neurospora crassa(CAA50271.1)和其他真菌具有高度相似性。RT-qPCR 分析确定 AaCaM 在 A. alternata 的感染结构分化过程中差异上调,无论是在疏水性表面还是在梨蜡提取物涂层表面,在疏水性诱导的附着胞形成期(6 小时)上调 3.37 倍,在梨蜡诱导后的感染菌丝形成期(8 小时)上调 1.46 倍。药物分析表明,钙调蛋白特异性抑制剂三氟拉嗪(TFP)抑制孢子萌发和附着胞形成,并影响 A. alternata 毒素和黑色素生物合成。
AaCaM 在调节 A. alternata 的感染结构分化和次生代谢中起重要作用。
本研究为进一步深入研究 AaCaM 在钙信号通路中对疏水和梨蜡诱导的感染结构分化和致病性的特定作用提供了理论依据。