Evaluation of acetolactate synthase (ALS)-inhibiting herbicides for red sorrel (Rumex acetosella L.) management in lowbush blueberry (Vaccinium angustifolium Aiton)

IF 1 4区 农林科学 Q3 AGRONOMY Canadian Journal of Plant Science Pub Date : 2022-12-07 DOI:10.1139/cjps-2022-0136
S. White
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Abstract

Abstract Red sorrel is a common herbaceous perennial weed species in lowbush blueberry fields that may be managed with acetolactate synthase (ALS)-inhibiting herbicides. Greenhouse and field experiments were established to determine the crop tolerance and potential efficacy on red sorrel of tribenuron-methyl, nicosulfuron + rimsulfuron, foramsulfuron, flazasulfuron, pyroxsulam, and halosulfuron-methyl. Ramet density of greenhouse-grown red sorrel plants established from root fragments was reduced by tribenuron-methyl, flazasulfuron, and pyroxsulam, though tribenuron-methyl and flazasulfuron were the most consistently effective herbicides under field conditions. Spring non-bearing year tribenuron-methyl and flazasulfuron applications reduced both non-bearing and bearing year total red sorrel ramet density and reduced non-bearing year red sorrel flowering ramet and seedling density without injuring lowbush blueberry. Fall non-bearing year tribenuron-methyl and flazasulfuron applications reduced bearing year red sorrel total and flowering ramet density, and this application timing should be evaluated further to improve understanding of crop injury risks. Fall bearing year tribenuron-methyl and flazasulfuron applications reduced non-bearing year red sorrel total and flowering ramet density but did not reduce seedling density. Nicosulfuron + rimsulfuron, foramsulfuron, pyroxsulam, and halosulfuron-methyl efficacy on red sorrel were inconsistent or limited, and these herbicides are not recommended for red sorrel management in lowbush blueberry.
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低丛蓝莓(Vaccinium angustifolium Aiton)管理红酢浆草(Rumex acetosella L.)乙酰乳酸合成酶(ALS)抑制除草剂的评价
摘要红酢浆草是低丛蓝莓田常见的多年生草本杂草,可采用抗乙酰乳酸合成酶(acetolactate synthase, ALS)除草剂进行治理。通过温室和田间试验,确定了三苯脲-甲基、nicoseronon + rimseronon、foramseronon、flazasulfuron、pyroxsulam和haloseron甲基对红酢草的作物耐受性和潜在药效。在田间条件下,三苯脲-甲基和嘧磺隆是最一致有效的除草剂,但三苯脲-甲基和嘧磺隆均能降低温室红唇草根段植株的分株密度。春季施用甲基三苯醚和氟唑脲在不伤害矮丛蓝莓的情况下,降低了不结实年和结实年红酢浆草总分株密度,降低了不结实年红酢浆草开花分株和幼苗密度。非结实年秋季施用甲基三苯脲和嘧磺隆降低了结实年红草总数和开花分株密度,应进一步评价其施用时机,以提高对作物伤害风险的认识。秋结实年施用甲基三苯醚和嘧磺隆降低了非结实年红酢浆草总密度和开花分株密度,但未降低幼苗密度。nicoseron + rim磺隆、foram磺隆、pyroxsulam和haloseron -methyl对红酢浆草的药效不一致或有限,这些除草剂不推荐用于低丛蓝莓的红酢浆草管理。
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来源期刊
CiteScore
1.90
自引率
8.30%
发文量
91
审稿时长
1 months
期刊介绍: Published since 1957, the Canadian Journal of Plant Science is a bimonthly journal that contains new research on all aspects of plant science relevant to continental climate agriculture, including plant production and management (grain, forage, industrial, and alternative crops), horticulture (fruit, vegetable, ornamental, greenhouse, and alternative crops), and pest management (entomology, plant pathology, and weed science). Cross-disciplinary research in the application of technology, plant breeding, genetics, physiology, biotechnology, microbiology, soil management, economics, meteorology, post-harvest biology, and plant production systems is also published. Research that makes a significant contribution to the advancement of knowledge of crop, horticulture, and weed sciences (e.g., drought or stress resistance), but not directly applicable to the environmental regions of Canadian agriculture, may also be considered. The Journal also publishes reviews, letters to the editor, the abstracts of technical papers presented at the meetings of the sponsoring societies, and occasionally conference proceedings.
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