Modeling the Overdispersion of Pasteuria penetrans Endospores

I. Vagelas, S. Leontopoulos
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引用次数: 0

Abstract

This paper discusses a process of developing the data analysis and modeling of Pasteuria penetrans spore attachment in vitro and in planta, based on the observation that the number of spores attaching to juveniles within a given time increased by increasing the time of exposure to spores and the spores dose. Based on this, the P. penetrans spore attachment in vitro was modeled using the negative binomial distribution which permits decomposing the observation’s variability into three components: randomness, internal differences between individuals, and the presence of other external factors, e.g., the soil type. Additionally, we developed case-detection methods to explain P. penetrans spores’ attachment variability. The statistical methods developed in this paper show that a nematodes invasion is significant limited when second stage juveniles (J2s) are encumbered with seven P. penetrans spores. This research study concludes that the number of spores attached in J2s, the time of exposure of J2s to P. penetrans spores, and the soil texture are important factors affecting the invasion of root-knot nematodes in tomato plants.
巴氏菌渗透孢子内的过度分散模型
本文讨论了巴斯德菌在体外和植物体内附着孢子的数据分析和建模过程,观察到在给定时间内附着在幼虫身上的孢子数量随着暴露于孢子的时间和孢子剂量的增加而增加。基于此,使用负二项分布对穿透假单胞菌在体外的孢子附着进行建模,该分布允许将观察结果的可变性分解为三个部分:随机性、个体之间的内部差异和其他外部因素的存在,例如土壤类型。此外,我们开发了病例检测方法来解释穿透假单胞菌孢子的附着变异性。本文开发的统计方法表明,当第二阶段幼虫(J2s)被7个穿透P.pentans孢子所阻碍时,线虫的入侵受到显著限制。本研究得出的结论是,附着在J2s中的孢子数量、J2s暴露于穿透假单胞菌孢子的时间以及土壤质地是影响番茄根结线虫入侵的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.70
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