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首页> 外文期刊>Anthropod-plant interactions >The phloem-pd: a distinctive brief sieve element stylet puncture prior to sieve element phase of aphid feeding behavior
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The phloem-pd: a distinctive brief sieve element stylet puncture prior to sieve element phase of aphid feeding behavior

机译:Phloem-PD:在筛头饲养行为的元素相位之前,独特的简短筛素探针穿刺

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A recent electrical penetration graph (EPG) study identified a unique intracellular puncture that is associated with inoculation of the semipersistently transmitted, phloem-limited Beet yellows virus (BYV, Closterovirus) by the aphid Myzus persicae. This new aphid EPG pattern (named phloem-pd) always occurs shortly before phloem sieve element phase (PSEP) and has a similar voltage drop as PSEP, both of which are less than the voltage drop of standard-pds. Structure of pd subphase II-2 differs between phloem-pds and standard-pds. The objective of this study was to determine the type of phloem cell penetrated during phloem-pds. Stylets of M. persicae feeding on sugar beet (Beta vulgaris) were fixed in situ by cryofixation during phloem-pds, standard-pds and PSEP waveform E1. The cell penetrated by the stylet tips was then identified by confocal laser-scanning microscopy and micro-computed tomography. Sieve elements (SEs) or companion cells (CCs) were penetrated during phloem-pds, whereas cells other than SEs or CCs (mesophyll, bundle sheath cells and possibly phloem parenchyma) were penetrated during standard-pds. SEs were penetrated during waveform E1. The implications of these findings for inoculation of other phloem-limited viruses that currently are thought to be inoculated primarily during waveform E1 are discussed.
机译:最近的电气渗透图(EPG)研究鉴定了独特的细胞内穿刺,其与蚜虫肌肌瘤接种有序的韧皮肌斑点百叶菊病毒(BYV,鸡球菌)。这种新的蚜虫EPG模式(命名为Phloem-PD)始终在Phloem筛子元件相位(PSEP)之前不久发生,并且具有与PSEP类似的电压降,两者都小于标准PD的电压降。 PD子相II-2的结构不同于Phloem-PD和标准PDS之间的不同。本研究的目的是确定在Phloem-PD期间穿透的Phloem细胞的类型。在PLOEM-PDS,标准PDS和PSEP波形E1期间,通过Cryofixation原位固定在甜菜(β除去)上喂养的Stylets。然后通过共聚焦激光扫描显微镜和微计算断层扫描识别由探测器提示穿透的细胞。在Phloem-Pds期间渗透筛元素(SES)或伴侣细胞(CCS),而在标准PDS期间,渗透除SES或CCS以外的细胞或CCS(叶片,束状鞘细胞和可能是韧皮植物的细胞)。在波形E1期间渗透了SES。讨论了这些发现对接种目前被认为主要被认为是在波形E1期间接种的韧皮肌限制病毒的影响。

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