首页> 外文期刊>Annals of Applied Biology >Vectoring ability of aphid clones of Rhopalosiphum padi (L.) and Sitobion avenae (Fabr.) and their capacity to retain barley yellow dwarf virus.
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Vectoring ability of aphid clones of Rhopalosiphum padi (L.) and Sitobion avenae (Fabr.) and their capacity to retain barley yellow dwarf virus.

机译:大叶红景天(Rholoslosiphum padi)(L.)和燕麦Sitobion avenae(Fabr。)的蚜虫克隆的载体能力及其保留大麦黄矮病毒的能力。

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The vectoring ability of four aphid clones, Rp-M and Rp-R26 of Rhopalosiphum padi and Sa-R1 and Sa-V of Sitobion avenae, to transmit barley yellow dwarf (PAV, MAV and RPV) luteoviruses (BYDV) was compared in controlled conditions. Significant differences between highly efficient vectors (HEV), Rp-M and Sa-R1, and poorly efficient vectors (PEV), Rp-R26 and Sa-V, were found in transmission of their specific viruses with acquisition and inoculation access periods (AAP, IAP) of 5 days. BYD-RPV was occasionally transmitted by both clones of S. avenae. None of 150 tested apterous adults of the Rp-R26 transmitted BYD-MAV, while 10% of transmission was observed from those of the Rp-M in a parallel test. An improved ELISA and immuno-PCR were adapted to test for viruses in aphids. The results obtained by the improved ELISA indicated there was a good correlation between virus detection in single aphids of HEV clones after a 5 day AAP and virus transmission. In contrast, the percentages of virus-carrying aphids of PEV clones were generally higher than those of their transmission rates. BYD-MAV and BYD-RPV were also detected by the improved ELISA in single aphids of their PEV clones, with the exception of BYD-RPV in those of Sa-V. However, after a 2-day IAP,the improved ELISA in most cases failed to detect these viruses in single aphids of PEV clones. Detection by immuno-PCR demonstrated that all three viruses could be acquired and retained by the aphids of both HEV and PEV clones. However, as visualised from electrophoretic bands, after the 2-day IAP the amplified products from aphid extracts of PEV clones were reduced. The detection in a batch of nine aphids by the improved ELISA revealed that virus content in PEV clones decreased more rapidly than thatin HEV clones during transmission. Thus, the difference in transmission efficiency of the aphid clones within species was not caused by an inability to acquire virus, but was determined by variation in vectoring ability between them. This was due to differences in ability to prevent the passage of virions from haemocoel to salivary duct and/or different capacities for the retention of BYDV.
机译:在对照中比较了四个蚜虫克隆,即Rhodolosiphum padi的Rp-M和Rp-R26和Sitobion avenae的Sa-R1和Sa-V的载体传播大麦黄矮(PAV,MAV和RPV)黄体病毒(BYDV)的能力。条件。发现高效载体(HEV),Rp-M和Sa-R1与效率较差的载体(PEV),Rp-R26和Sa-V之间的显着差异是在其特定病毒在获得和接种访问期(AAP)中的传播,IAP)为5天。 BYD-RPV偶尔会由埃文链球菌的两个克隆传播。 Rp-R26的150名受过测试的成年成人中没有一名传播BYD-MAV,而在平行测试中观察到了Rp-M的10%传播。改进的ELISA和免疫PCR技术适用于测试蚜虫中的病毒。通过改进的ELISA获得的结果表明,在5天的AAP之后,HEV克隆的单条蚜虫中的病毒检测与病毒传播之间存在良好的相关性。相比之下,PEV克隆中携带病毒的蚜虫的百分比通常高于其传播速率。还通过改进的ELISA在其PEV克隆的单个蚜虫中检测到BYD-MAV和BYD-RPV,但Sa-V的BYD-RPV除外。但是,经过2天的IAP后,大多数情况下改进的ELISA方法无法在PEV克隆的单个蚜虫中检测到这些病毒。免疫PCR检测表明,所有三种病毒均可被HEV和PEV克隆的蚜虫捕获并保留。然而,如从电泳带所见,IAP 2天后,从PEV克隆的蚜虫提取物中扩增的产物减少了。通过改进的ELISA在一批9个蚜虫中的检测表明,在传播过程中,PEV克隆中的病毒含量下降速度比HEV克隆中的病毒下降速度更快。因此,蚜虫克隆在种内传播效率的差异不是由于无法获得病毒引起的,而是由它们之间的载体能力变化决定的。这是由于防止病毒粒子从血红细胞通过到唾液管的能力不同和/或保留BYDV的能力不同所致。

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