TaqMan qPCR assays improve Pseudomonas syringae pv. actinidiae biovar 3 and P. viridiflava (PG07) detection within the Pseudomonas sp. community of kiwifruit

IF 1.9 3区 农林科学 Q2 AGRONOMY Phytopathologia Mediterranea Pub Date : 2023-05-08 DOI:10.36253/phyto-14400
Sara CAMPIGLI, Simone LUTI, Tommaso MARTELLINI, Domenico RIZZO, Linda BARTOLINI, Claudio CARRAI, Jeyaseelan BASKARATHEVAN, Luisa GHELARDINI, Francesca PEDUTO HAND, Guido MARCHI
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Abstract

Kiwifruit is inhabited by a heterogeneous community of bacteria belonging to the Pseudomonas syringae species complex (Pssc). Only a few of its members, such as the specialist Pseudomonas syringae pv. actinidiae biovar 3 (Psa3), are known as pathogens, but for most of the species, such as P. viridiflava (Pv), a generalist with high intraspecific variation, the nature of their relationship with kiwifruit is unclear. Currently, no culture independent molecular diagnostic assay is available for Pv. In this study we validated two TaqMan qPCR diagnostic assays adopting a strategy that for the first time widely focuses on the Pseudomonas sp. community associated to kiwifruit in Tuscany (Italy). Primers and probes were designed based on the sequence of the lscγ gene of Psa3 (qPCRPsa3) and the rpoD gene of Pv phylogroup 7 (qPCRPv7). Both qPCR assays have a LOD of 60 fg of DNA. By using reference strains along with 240 strains isolated from kiwifruit and characterized ad hoc as Pseudomonas sp., specificity was proven for members of six of the 13 Pssc phylogroups. Moreover, to evaluate the possible effects of seasonal variations in the Pseudomonas sp. community composition on assay specificity, the assays were tested on naturally infected leaves and canes sampled from different orchards throughout a growing season. At last, by proving qPCR’s capacity to detect latent infections in artificially inoculated leaves, their potential usefulness in surveillance programs and for epidemiological studies was verified.
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TaqMan qPCR法检测丁香假单胞菌。猕猴桃假单胞菌群落中actinidiae biovar 3和P. viridiflava (PG07)的检测
猕猴桃是属于丁香假单胞菌物种复合体(Pssc)的异质细菌群落。只有少数成员,如专业的丁香假单胞菌pv。actinidiae biovar 3 (Psa3)是已知的病原体,但对于大多数物种,如P. viridiflava (Pv),一种具有高种内变异的通才,它们与猕猴桃的关系尚不清楚。目前,没有独立于培养的分子诊断方法可用于Pv。在这项研究中,我们验证了两种TaqMan qPCR诊断方法,采用了一种首次广泛关注托斯卡纳(意大利)猕猴桃假单胞菌群落的策略。根据Psa3的lscγ基因(qPCRPsa3)和Pv系统群7的rpoD基因(qPCRPv7)序列设计引物和探针。两种qPCR检测的LOD均为60 fg的DNA。通过对照菌株和从猕猴桃中分离的240株假单胞菌,对13个Pssc系统群中的6个成员进行了特异性鉴定。此外,为了评估假单胞菌群落组成的季节变化对检测特异性的可能影响,在整个生长季节对不同果园的自然感染叶片和甘蔗进行了检测。最后,通过验证qPCR在人工接种叶片中检测潜伏感染的能力,验证了其在监测计划和流行病学研究中的潜在用途。
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来源期刊
Phytopathologia Mediterranea
Phytopathologia Mediterranea 生物-植物科学
CiteScore
4.40
自引率
8.30%
发文量
28
审稿时长
6-12 weeks
期刊介绍: Phytopathologia Mediterranea is an international journal edited by the Mediterranean Phytopathological Union. The journal’s mission is the promotion of plant health for Mediterranean crops, climate and regions, safe food production, and the transfer of new knowledge on plant diseases and their sustainable management. The journal deals with all areas of plant pathology, including etiology, epidemiology, disease control, biochemical and physiological aspects, and utilization of molecular technologies. All types of plant pathogens are covered, including fungi, oomycetes, nematodes, protozoa, bacteria, phytoplasmas, viruses, and viroids. The journal also gives a special attention to research on mycotoxins, biological and integrated management of plant diseases, and the use of natural substances in disease and weed control. The journal focuses on pathology of Mediterranean crops grown throughout the world. The Editorial Board of Phytopathologia Mediterranea has recently been reorganised, under two Editors-in-Chief and with an increased number of editors.
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