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Competitive Immunoassay in a Microfluidic Biochip for In-Field Detection of Abscisic Acid in Grapes.

Biosensors · 26 Feb 2024 · 10.3390/bios14030123

Abstract

Viticulture and associated products are an important part of the economy in many countries. However, biotic and abiotic stresses impact negatively the production of grapes and wine. Climate change is in many aspects increasing both these stresses. Routine sample retrievals and analysis tend to be time-consuming and require expensive equipment and skilled personnel to operate. These challenges could be overcome through the development of a miniaturized analytic device for early detection of grapevine stresses in the field. Abscisic acid is involved in several plant processes, including the onset of fruit ripening and tolerance mechanisms against drought stress. This hormone can be detected through a competitive immunoassay and is found in plants in concentrations up to 10 -1 mg/mL. A microfluidic platform is developed in this work which can detect a minimum of 10 -11 mg/mL of abscisic acid in buffer. Grape samples were tested using the microfluidic system alongside benchmark techniques such as high-performance liquid chromatography. The microfluidic system could detect the increase to 10 -5 mg/mL of abscisic acid present in real berry samples at the veraison stage of ripening.

Plant phenotyping relevance

ブドウのストレスや成熟状態に関連するアブシジン酸を現場で測定するマイクロ流体免疫測定プラットフォームの開発・ベンチマークが中心であり、植物の生理状態を推定するフェノタイピング手法に該当する。

abstractGrape samples were tested using the microfluidic system alongside benchmark techniques such as high-performance liquid chromatography.
abstractthe development of a miniaturized analytic device for early detection of grapevine stresses in the field.

Code and data availability

The paper reports a microfluidic competitive immunoassay for abscisic acid in grapes. No public phenotype/trait dataset, plant image collection, author analysis code, or trained model is deposited. The Data Availability Statement states data is contained within the article and Supplementary Materials, which only hold S

No evidence-backed public reproduction asset is currently recorded.

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