Genome Wide Analysis of the Potato Soft Rot Pathogen Pectobacterium carotovorum Strain ICMP 5702 to Predict Novel Insights into Its Genetic Features

Tista Mallick, Rukmini Mishra, S. Mohanty, R. Joshi
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Abstract

Pectobacterium carotovorum subsp. carotovorum (Pcc) is a gram-negative, broad host range bacterial pathogen which causes soft rot disease in potatoes as well as other vegetables worldwide. While Pectobacterium infection relies on the production of major cell wall degrading enzymes, other virulence factors and the mechanism of genetic adaptation of this pathogen is not yet clear. In the present study, we have performed an in-depth genome-wide characterization of Pcc strain ICMP5702 isolated from potato and compared it with other pathogenic bacteria from the Pectobacterium genus to identify key virulent determinants. The draft genome of Pcc ICMP5702 contains 4,774,457 bp with a G + C content of 51.90% and 4,520 open reading frames. Genome annotation revealed prominent genes encoding key virulence factors such as plant cell wall degrading enzymes, flagella-based motility, phage proteins, cell membrane structures, and secretion systems. Whereas, a majority of determinants were conserved among the Pectobacterium strains, few notable genes encoding AvrE-family type III secretion system effectors, pectate lyase and metalloprotease in addition to the CRISPR-Cas based adaptive immune system were uniquely represented. Overall, the information generated through this study will contribute to decipher the mechanism of infection and adaptive immunity in Pcc.
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马铃薯软腐病病原菌carotovorum Pectobacterium Strain ICMP 5702的全基因组分析预测其遗传特征的新见解
胡萝卜乳杆菌亚种胡萝卜菌(cartovorum, Pcc)是一种革兰氏阴性、广泛寄主范围的细菌病原体,可引起马铃薯和其他蔬菜的软腐病。虽然乳杆菌感染依赖于主要细胞壁降解酶的产生,但该病原体的其他毒力因素和遗传适应机制尚不清楚。在本研究中,我们对从马铃薯中分离的Pcc菌株ICMP5702进行了深入的全基因组鉴定,并将其与来自Pectobacterium属的其他致病菌进行了比较,以确定关键的毒力决定因素。Pcc ICMP5702基因组草图包含4,774,457 bp, G + C含量为51.90%,开放阅读框4,520个。基因组注释揭示了编码关键毒力因子的突出基因,如植物细胞壁降解酶、鞭毛运动、噬菌体蛋白、细胞膜结构和分泌系统。然而,大多数决定因素在乳杆菌菌株中是保守的,少数值得注意的基因编码avre家族III型分泌系统效应物、果胶裂解酶和金属蛋白酶,以及基于CRISPR-Cas的适应性免疫系统。总的来说,通过本研究产生的信息将有助于破译Pcc感染和适应性免疫的机制。
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