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首页> 外文期刊>European Journal of Plant Pathology >New subgroup 16SrIII-Y phytoplasmas associated with false-blossom diseased cranberry (Vaccinium macrocarpon) plants and with known and potential insect vectors in New Jersey
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New subgroup 16SrIII-Y phytoplasmas associated with false-blossom diseased cranberry (Vaccinium macrocarpon) plants and with known and potential insect vectors in New Jersey

机译:与假花病蔓越莓(Vaccinium macrocarpon)植物相关的新的16SrIII-Y亚种质原体,并在新泽西州具有已知和潜在的昆虫媒介

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The identity of the presumed phytoplasmal pathogen associated with cranberry false-blossom disease has never been fully clarified. In the present study a molecular-based procedure was employed to determine the identity of the phytoplasma. Tissues of cranberry plants exhibiting cranberry false-blossom symptoms were collected from multiple bogs on each of three randomly selected commercial cranberry farms in New Jersey. Leafhoppers, including the known vector Limotettix vaccinii (Van Duzee) (=Scleroracus vaccinii, Euscellis striatulus) and the sharp-nosed leafhopper Scaphytopius magdalensis (Provancher), a known vector of blueberry stunt disease, were collected from two different farms in New Jersey. Nested PCR assays and RFLP analysis of 16S rRNA gene sequences were employed for the detection and identification of the associated phytoplasmas. All of 20 cranberry plants sampled and five out of 14 batches of leafhoppers tested positive for phytoplasma. Virtual RFLP and sequence analyses revealed that all the associated phytoplasmas were members or variants of a new subgroup, 16SrIII-Y. Phylogenetic analysis of 16S rRNA sequences indicated that cranberry false-blossom phytoplasma strains represented a lineage distinct from other 16SrIII subgroups. This is the first report confirming that a new phytoplasma (designated as a new subgroup 16SrIII-Y) is associated with cranberry false-blossom disease and associated with both leafhopper species in New Jersey.
机译:与蔓越莓假开花疾病有关的推测植物病原体的身份尚未完全阐明。在本研究中,采用了基于分子的程序来确定植物质体的身份。在新泽西州三个随机选择的商业蔓越莓农场中,从多个沼泽收集表现出蔓越莓假花症状的蔓越莓植物组织。从新泽西州的两个不同农场收集叶蝉,包括已知的媒介Limotettix vaccinii(Van Duzee)(= Scleroracus vaccinii,Euscellis striatulus)和尖鼻的叶蝉Scaphytopius magdalensis(Provancher),其是蓝莓特技病的已知媒介。巢式PCR分析和16S rRNA基因序列的RFLP分析被用于检测和鉴定相关的植物质浆。对所有20种蔓越莓植物进行了采样,每14批叶蝉中有5份的植原体呈阳性。虚拟RFLP和序列分析表明,所有相关的质体均为新亚组16SrIII-Y的成员或变异。对16S rRNA序列的系统进化分析表明,蔓越莓假花植物质体菌株代表的谱系不同于其他16SrIII亚组。这是第一份证实新植物质体(指定为新的亚组16SrIII-Y)与蔓越莓假花病相关的疾病,并且与新泽西州的两种叶蝉都有关。

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