COLLETOTRICHUM FALCATUM CAUSING RED ROT IN SUGARCANE: GENOMIC AND PROTEOMIC APPROACHES TO CHARACTERIZE THE PATHOGENIC VARIATION

P. Malathi, K. Kaverinathan, M. Scindiya, E. Elamathi, A. R. Sundar, R. Viswanathan
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引用次数: 1

Abstract

Red rot caused by Colletotrichum falcatum, is the major constraint in sugarcane production in India and varietal resistance plays an important role in managing the disease. However, breakdown of resistance in sugarcane varieties to new pathogen variants which co-evolve concurrently is a serious concern and warrants a clear understanding on pathogenic variation in response to virulence. Hence, a detailed study has been carried out through genomic and proteomic approaches to characterize representative group of C. falcatum pathotypes and isolates varying phylogenetically based on 5.8S-ITS sequence analysis. At genomic level the isolates were characterized using conserved gene sequences viz., actin, calmodulin and GPDH and molecular markers viz., RAPD and ISSR. Molecular analyses with conserved gene sequences highly implicated the existence of one major group of virulent isolates and a minor group of least virulent isolates which was confirmed by definite nucleotide variation. Further studies with molecular markers viz., RAPD and ISSR also confirmed separate grouping of least virulent isolates and different groups among the virulent isolates. Among the markers, ISSR was more efficient in grouping the isolates based on virulence, since it clearly differentiated the least virulent isolates like conserved sequences and some of its primers were able to differentiate the virulent isolates with specific markers. For proteomic analysis, a protocol has been standardized to develop C. falcatum proteome profiles of phylogenetically differentiated virulent and least virulent isolates and demonstrated unique and differential expression of spots related to pathogen virulence. Some of the unique proteins viz., serine protease, DJ-1/PfpI family protein and glutathione S-transferase identified from C. falcatum were closer to well characterized pathogenicity related genes in Colletotrichum spp and other fungi. Outcome of the study formed a basis for characterizing virulence related genes in C. falcatum.
引起甘蔗红腐病的镰状炭疽杆菌:基因组学和蛋白质组学方法表征致病变异
镰状Colletotrichum falcatum引起的红腐病是印度甘蔗生产的主要制约因素,品种抗性在控制该病方面发挥着重要作用。然而,甘蔗品种对同时共同进化的新病原体变体的抗性崩溃是一个严重的问题,需要对毒力反应中的病原体变异有一个明确的了解。因此,在5.8S-ITS序列分析的基础上,通过基因组和蛋白质组学方法对具有代表性的镰孢镰刀菌病理类型和分离株进行了详细的系统发育研究。在基因组水平上,利用肌动蛋白、钙调蛋白和GPDH等保守基因序列以及RAPD和ISSR等分子标记对分离株进行了鉴定。保守基因序列的分子分析高度提示存在一个主要组的毒力分离株和一个次要组的毒力最低的分离株,这一点已通过明确的核苷酸变异得到证实。进一步的分子标记研究,即RAPD和ISSR也证实了毒力最低的分离株和毒力不同的分离株之间的不同分组。在这些标记中,ISSR在根据毒力对分离株进行分组方面更有效,因为它可以清楚地区分毒力最低的分离株,如保守序列,并且它的一些引物能够用特定的标记区分毒力最强的分离株。对于蛋白质组学分析,已经制定了一项标准化方案,以开发系统发育分化的毒力和最小毒力分离株的镰孢镰刀菌蛋白质组图谱,并证明了与病原体毒力相关的斑点的独特和差异表达。从镰孢霉中鉴定出的一些独特的蛋白质,即丝氨酸蛋白酶、DJ-1/PfpI家族蛋白和谷胱甘肽S-转移酶,更接近炭疽菌和其他真菌的致病性相关基因。研究结果为鉴定镰孢毒力相关基因奠定了基础。
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