Production of Volatile Moth Sex Pheromones in Transgenic Nicotiana benthamiana Plants.

Q2 Agricultural and Biological Sciences 生物设计研究(英文) Pub Date : 2021-10-12 eCollection Date: 2021-01-01 DOI:10.34133/2021/9891082
Rubén Mateos-Fernández, Elena Moreno-Giménez, Silvia Gianoglio, Alfredo Quijano-Rubio, Jose Gavaldá-García, Lucía Estellés, Alba Rubert, José Luis Rambla, Marta Vazquez-Vilar, Estefanía Huet, Asunción Fernández-Del-Carmen, Ana Espinosa-Ruiz, Mojca Juteršek, Sandra Vacas, Ismael Navarro, Vicente Navarro-Llopis, Jaime Primo, Diego Orzáez
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Abstract

Plant-based bioproduction of insect sex pheromones has been proposed as an innovative strategy to increase the sustainability of pest control in agriculture. Here, we describe the engineering of transgenic plants producing (Z)-11-hexadecenol (Z11-16OH) and (Z)-11-hexadecenyl acetate (Z11-16OAc), two main volatile components in many Lepidoptera sex pheromone blends. We assembled multigene DNA constructs encoding the pheromone biosynthetic pathway and stably transformed them into Nicotiana benthamiana plants. The constructs contained the Amyelois transitella AtrΔ11 desaturase gene, the Helicoverpa armigera fatty acyl reductase HarFAR gene, and the Euonymus alatus diacylglycerol acetyltransferase EaDAct gene in different configurations. All the pheromone-producing plants showed dwarf phenotypes, the severity of which correlated with pheromone levels. All but one of the recovered lines produced high levels of Z11-16OH, but very low levels of Z11-16OAc, probably as a result of recurrent truncations at the level of the EaDAct gene. Only one plant line (SxPv1.2) was recovered that harboured an intact pheromone pathway and which produced moderate levels of Z11-16OAc (11.8 μg g-1 FW) and high levels of Z11-16OH (111.4 μg g-1). Z11-16OAc production was accompanied in SxPv1.2 by a partial recovery of the dwarf phenotype. SxPv1.2 was used to estimate the rates of volatile pheromone release, which resulted in 8.48 ng g-1 FW per day for Z11-16OH and 9.44 ng g-1 FW per day for Z11-16OAc. Our results suggest that pheromone release acts as a limiting factor in pheromone biodispenser strategies and establish a roadmap for biotechnological improvements.

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转基因烟草中挥发性蛾性信息素的产生。
以植物为基础的昆虫性信息素生物生产已被提议作为一种创新策略,以提高农业害虫控制的可持续性。在这里,我们描述了生产(Z)-11十六碳烯醇(Z11-16OH)和(Z)-11-乙酸十六碳烯酯(Z11-16-OAc)的转基因植物的工程,这是许多鳞翅目性信息素混合物中的两种主要挥发性成分。我们组装了编码信息素生物合成途径的多基因DNA构建体,并将其稳定转化为本氏烟草植物。构建体包含不同构型的Amyelois transitella AtrΔ11去饱和酶基因、棉铃虫脂肪酰基还原酶HarFAR基因和卫矛二酰基甘油乙酰转移酶EaDAct基因。所有产生信息素的植物都表现出矮化表型,其严重程度与信息素水平有关。除一个外,所有回收的品系都产生高水平的Z11-16OH,但Z11-16OAc的水平非常低,这可能是EaDAct基因水平反复截短的结果。只有一个植物系(SxPv1.2)被回收,它携带完整的信息素途径,并产生中等水平的Z11-16OAc(11.8 μg g-1 FW)和高水平的Z11-16OH(111.4 μg g-1)。Z11-16OAc的产生伴随着SxPv1.2矮化表型的部分恢复。SxPv1.2用于估算挥发性信息素的释放速率,结果为8.48 ng 对于Z11-16OH和9.44,每天g-1 FW ng 对于Z11-16OAc,每天g-1 FW。我们的研究结果表明,信息素的释放是信息素生物分散策略的限制因素,并为生物技术的改进制定了路线图。
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3.90
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0
审稿时长
12 weeks
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