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将基因与整株植物联系起来,研究藨草(Cyperaceae)对靶标位点 ALS 抑制剂抗性的稀释效应。

Connecting genes to whole plants in dilution effect of target-site ALS inhibitor resistance of Schoenoplectiella juncoides (Roxb.) Lye (Cyperaceae).

机构信息

Health and Crop Sciences Research Laboratory, Sumitomo Chemical Co., Ltd., Hyogo, Japan; Graduate School of Agriculture, Kyoto University, Kyoto, Japan.

Health and Crop Sciences Research Laboratory, Sumitomo Chemical Co., Ltd., Hyogo, Japan.

出版信息

Pestic Biochem Physiol. 2024 Aug;203:105984. doi: 10.1016/j.pestbp.2024.105984. Epub 2024 Jun 13.

DOI:10.1016/j.pestbp.2024.105984
PMID:39084788
Abstract

This study focuses on dilution effect of target-site resistance (TSR) to acetolactate synthase (ALS) inhibitors in Schoenoplectiella juncoides, which harbors two ALS genes, ALS1 and ALS2. We assessed gene expression, enzyme activity, and whole-plant resistance profiles across four S. juncoides lines: the susceptible line, the parental resistant lines with a homozygous mutation in either ALS1 or ALS2, and the bred progeny line with homozygous mutations in both ALS1 and ALS2. Gene expression and enzyme function showed a proportional relationship that the expression ratios of ALS1 to ALS2, approximately 70:30, were consistent with the functional ratio predicted by the double-sigmoidal plateau positions observed in enzyme assays. However, at the whole-plant level, resistance did not correlate to the putative abundance of susceptible enzyme, but the parental lines showed similar resistance to each other despite different enzyme-level resistances. This suggests a non-proportional mechanism in the reflection of physiological enzymatic profiles to whole-plant resistance profiles. These findings highlight the complexity of herbicide resistance and the need for further research to understand the mechanisms that influence resistance outcomes. Understanding these relationships is essential for developing strategies to manage herbicide resistance effectively.

摘要

本研究集中于节节麦中靶标位点抗性(TSR)对乙酰乳酸合成酶(ALS)抑制剂的稀释效应,该植物含有两个 ALS 基因,ALS1 和 ALS2。我们评估了四个节节麦品系的基因表达、酶活性和整株抗性特征:敏感系、ALS1 或 ALS2 中任一基因纯合突变的亲本抗性系,以及 ALS1 和 ALS2 均发生纯合突变的杂交后代系。基因表达和酶功能呈比例关系,ALS1 与 ALS2 的表达比例约为 70:30,与酶测定中观察到的双 S 形平台位置所预测的功能比例一致。然而,在整株水平上,抗性与假定的敏感酶丰度无关,尽管酶水平抗性不同,但亲本系彼此表现出相似的抗性。这表明在反映生理酶谱与整株抗性谱方面存在非比例机制。这些发现强调了除草剂抗性的复杂性,需要进一步研究以了解影响抗性结果的机制。理解这些关系对于制定有效管理除草剂抗性的策略至关重要。

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