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Identifying the Biological Characteristics Associated with Oviposition Behavior of Tea Leafhopper Empoasca onukii Matsuda Using the Blue Light Detection Method

机译:用蓝光检测方法鉴定与茶叶蛋白肌肌卵孔甘蓝型松原欧氏菌诺基岛松树相关的生物学特征

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Tea leafhopper ( Empoasca onukii Matsuda) is amongst the key pests in tea plantations around the East Asian region. Stereomicroscopy is a conventional method used for detecting tea leafhopper eggs by dissecting the tender tissues. However, there is a need for a faster and more efficient method to directly observe and investigate intact eggs within tea shoots. The absence of a proven method limits research efforts for determining the oviposition behavior of E. onukii . Herein, we applied the blue light detection method (BLDM), a technique recently developed for other species, in order to detect E. onukii eggs directly and non-destructively within the tender shoot. In addition, we compared BLDM against the traditional stereomicroscope detection method (SMDM) for four tea cultivars. Notably, our results revealed that BLDM was precise and effective in measuring the egg laying quantity of E. onukii on intact tea shoots. Neither tea cultivars nor egg density in the tender shoot significantly affected the accuracy of BLDM. Furthermore, biological characteristics that have rarely been reported previously for E. onukii were investigated using the BLDM, including zygote duration, ovipositional rhythm, egg distribution within the tender shoot, and in different leaf positions, numbers of eggs laid by a single female daily, and laid by the entire generation. Therefore, these findings provide insights into the basic and theoretical evidence for the strategy and mechanism associated with the oviposition behavior of E. onukii .
机译:茶叶植物(Empoasca Onukii Matsuda)是东亚地区茶园的关键害虫之一。立体镜检查是一种用于通过解剖嫩组织来检测茶叶蛋白蛋的常规方法。然而,需要一种更快和更有效的方法来直接观察和调查茶叶中的完整卵。没有经过验证的方法限制了确定E. Onukii的产卵行为的研究努力。在此,我们应用了蓝光检测方法(BLDM),最近为其他物种开发的技术,以便直接检测E. Onukii蛋,并在嫩芽内直接和无损。此外,我们将BLDM与四种茶草品种的传统立体显微镜检测方法(SMDM)进行比较。值得注意的是,我们的结果表明,BLDM精确而有效地测量完整茶叶上的E. Onukii的卵敷量。嫩芽的茶叶和鸡蛋密度都没有显着影响BLDM的准确性。此外,使用BLDM研究了以前已经向E. Onukii报告的生物学特征,包括嫩芽内的子宫持续时间,产卵节奏,卵分布,以及在不同的叶子位置,每天铺设的鸡蛋数量,并由整个一代铺设。因此,这些发现提供了与与E.Nukii的产卵行为相关的战略和机制的基本和理论证据的见解。

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