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评价棉田拟除虫菊酯类生物除草剂——除虫酸

An evaluation of tenuazonic acid, a potential biobased herbicide in cotton.

机构信息

Weed Research Laboratory, Nanjing Agricultural University, Nanjing, China.

School of Life Science, Jinggangshan University, Jian, China.

出版信息

Pest Manag Sci. 2019 Sep;75(9):2482-2489. doi: 10.1002/ps.5402. Epub 2019 Apr 22.

Abstract

BACKGROUND

Tenuazonic acid (TeA), a putative nonhost-selective mycotoxin isolated from Alternaria alternata, is the main causative agent of brown leaf spot disease of crofton weed (Ageratina adenophora) and some other crops. Previous studies revealed that it is a natural photosystem II inhibitor that binds the D1 protein to block electron transfer. Though the crude metabolite extract of A. alternata containing TeA has been bioassayed, the herbicidal activity of synthesized TeA has not been systematically evaluated yet.

RESULTS

TeA caused leaves of crofton weed to have brown spots that were more pronounced in older leaves than younger ones. It completely killed 92% of the four-leaf seedlings at 600 g ai/ha but only 81% or less of six-leaf seedlings or bigger. The bioassay of phytotoxicity of TeA to 67 plant species including 54 weeds and 13 crops, showed that TeA had a broad weed spectrum but low toxicity to Solanaceae and Malvaceae species. Further potted- plant experiments demonstrated that TeA had EC values that ranged from 119 to 795 μg/mL for 14 important weeds but was 2539 μg/mL for Acalypha australis. Nicotiana tabacum and Gossypium hirsutum had no injury symptoms at 1000 μg/mL. A field trial showed that TeA effectively controlled two important weeds, Digitaria sanguinalis and Amaranthus retroflexus without affecting cotton in the field.

CONCLUSION

TeA has potential as a biobased herbicide for controlling important dicotyledon and monocotyledon weeds in cotton and tobacco fields. © 2019 Society of Chemical Industry.

摘要

背景

来自链格孢菌(Alternaria alternata)的拟无宿主选择性真菌毒素,美洲大蠊酸(TeA)是三裂叶豚草(Ageratina adenophora)和其他一些作物的褐斑病的主要致病因子。先前的研究表明,它是一种天然的光系统 II 抑制剂,可与 D1 蛋白结合以阻止电子传递。尽管已对含有 TeA 的链格孢菌粗代谢产物提取物进行了生物测定,但尚未对合成 TeA 的除草活性进行系统评估。

结果

TeA 导致三裂叶豚草的叶子出现褐色斑点,在较老的叶子中比在较年轻的叶子中更为明显。它在 600 g ai/ha 时完全杀死了 92%的四叶幼苗,但对六叶或更大的幼苗的杀伤率则为 81%或更低。TeA 对包括 54 种杂草和 13 种作物在内的 67 种植物种的生物测定表明,TeA 具有广泛的杂草谱,但对茄科和锦葵科的物种毒性较低。进一步的盆栽植物实验表明,TeA 对 14 种重要杂草的 EC 值范围为 119 至 795μg/mL,但对飞扬草的 EC 值为 2539μg/mL。烟草和棉花在 1000μg/mL 时没有受伤症状。田间试验表明,TeA 有效控制了重要的两种杂草,即马唐和反枝苋,而对田间的棉花没有影响。

结论

TeA 具有作为控制棉花和烟草田重要的双子叶和单子叶杂草的生物基除草剂的潜力。 © 2019 化学工业协会。

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