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[未提及植物名称]对菌根真菌、蚜虫和赤霉素响应的植物激素谱

Phytohormone Profile of in Response to Mycorrhizal Fungi, Aphids, and Gibberellic Acid.

作者信息

Olson Drew, Berry Hannah M, Riggs Jamie D, Argueso Cristiana T, Gomez Susana Karen

机构信息

School of Biological Sciences, University of Northern Colorado, Greeley, CO 80639, USA.

Toxicology & Mycotoxin Research Unit, United States Department of Agriculture, Agricultural Research Service, United States National Poultry Research Center, Athens, GA 30605, USA.

出版信息

Plants (Basel). 2022 Mar 8;11(6):720. doi: 10.3390/plants11060720.

Abstract

Although gibberellic acid (GA) is widely used in agriculture, it is unclear whether exogenous GA makes aphid-infested, mycorrhizal plants more susceptible to herbivory. This study investigates the role of GA in modulating defenses in barrel medic plants () that are infested with pea aphids () and colonized by the beneficial symbiont . Mock- and -inoculated potted plants were grown in a topsoil: sand mix for 42 days and were treated with GA or solvent. Subsequently, plants were exposed to herbivory or no aphid herbivory for 36 h and 7 days. Afterwards, plant growth parameters, aphid fitness, and foliar phytohormone concentrations were measured. The results revealed that GA regulates plant defenses during arbuscular mycorrhizal (AM) fungus-plant-aphid interactions as aphids that fed for 7 days on mycorrhizal, GA-untreated plants weighed more than those that fed on mycorrhizal, GA-treated plants. No major differences were detected in phytohormone levels at 36 h. Overall, mycorrhizal plants showed more shoot biomass compared to non-mycorrhizal controls. The arbuscule density and fungal biomass of were not altered by exogenous GA and aphid herbivory based on molecular markers. This study indicates that exogenous GA may help reduce aphid fitness when feeding on mycorrhizal plants.

摘要

尽管赤霉素(GA)在农业中被广泛使用,但尚不清楚外源GA是否会使遭受蚜虫侵害的菌根植物更易受到食草动物的影响。本研究调查了GA在调节柱花草()防御中的作用,该植物受到豌豆蚜()侵害并被有益共生菌定殖。将模拟接种和接种的盆栽植物在表土:沙子混合物中种植42天,并用GA或溶剂处理。随后,使植物遭受食草动物侵害或不遭受蚜虫侵害36小时和7天。之后,测量植物生长参数、蚜虫适合度和叶片植物激素浓度。结果表明,在丛枝菌根(AM)真菌-植物-蚜虫相互作用过程中,GA调节植物防御,因为在未用GA处理的菌根植物上取食7天的蚜虫比在经GA处理的菌根植物上取食的蚜虫体重更重。在36小时时未检测到植物激素水平有重大差异。总体而言,与非菌根对照相比,菌根植物的地上生物量更多。基于分子标记,外源GA和蚜虫食草作用未改变的丛枝密度和真菌生物量。本研究表明,外源GA可能有助于降低蚜虫在取食菌根植物时的适合度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a484/8951282/40023c573da1/plants-11-00720-g001.jpg

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