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Pineapple heart rot isolates from Ecuador reveal a new genotype of Phytophthora nicotianae

机译:来自厄瓜多尔的菠萝心脏腐烂分离株揭示了植物植物植物的新基因型

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> Pineapple heart rot disease, caused by Phytophthora nicotianae (syn. P.?parasitica ), is responsible for significant annual reductions in crop yield due to plant mortality. In Ecuador, new infections arise during the rainy season and increase production costs due to the need for biocontrol and fungicide applications. Studies of P.?nicotianae population structure suggest that certain genetic groups are associated with host genera; however, it is not clear how many host‐specific lineages of the pathogen exist or how they are related. The objectives of this study were to determine the level of genetic variation in the P.?nicotianae population causing heart rot disease of pineapple in Ecuador and compare the genotypes found on pineapple to those previously reported from citrus, tobacco and ornamentals. Thirty P.?nicotianae isolates collected from infected pineapple leaves from four farms were genotyped using nine simple sequence repeat loci. In addition, the DNA sequences of mitochondrial loci cox2?+? spacer and trnG‐rns were analysed. Together, these loci supported a single clonal lineage with two multilocus genotypes differing in a single allele and low mitochondrial diversity. This lineage was distinct but closely related to isolates collected from vegetables and ornamentals in Italy. The results support the hypothesis of host specialization of P.?nicotianae in intensive cropping systems and contribute to the understanding of population structure of this important pathogen.
机译: > 菠萝心脏腐烂疾病,由此引起 Phytophthora nicotianae (syn。 p.?parasitica ),负责由于植物死亡率导致的作物产量的大幅减少。在厄瓜多尔,由于对生物控制和杀菌剂应用需要,在雨季期间出现新的感染,并提高生产成本。研究 p.??? 人口结构表明某些遗传群与主机属相关;但是,目前尚不清楚病原体的特定于宿主特定谱系或它们是如何相关的。本研究的目标是确定遗传变异水平 p.??? 厄瓜多尔菠萝心脏腐烂疾病的人口比较菠萝中发现的基因型,以前从柑橘,烟草和饰板报告的那些。三十 p.??? 使用九个简单序列重复基因座进行从感染的菠萝从感染菠萝叶收集的分离物。除此之外 DNA 线粒体基因座的序列 cox2?+? 垫片和 trng-rns 分析了。这些基因座在一起支持单个克隆血管谱系,其两种多层基因型在单一的等位基因和低线粒体多样性不同。这种谱系是独特的,但与意大利的蔬菜和植物收集的分离物密切相关。结果支持宿主专业化的假设 p.??? 在密集的种植系统中,有助于了解这一重要病原体的人口结构。

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