将棉花寄主抗性作为管理路易斯安那州Rotylenchulus reniformis的工具。

IF 1.4 4区 生物学 Q2 ZOOLOGY Journal of nematology Pub Date : 2024-04-22 eCollection Date: 2024-03-01 DOI:10.2478/jofnem-2024-0014
Tristan T Watson
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引用次数: 0

摘要

肾形线虫(Rotylenchulus reniformis)是限制美国陆地棉(Gossypium hirsutum)产量的一种主要害虫,在许多州的发生率一直在稳步上升。抗线虫的棉花栽培品种最近已可在市场上买到,但很少有田间试验对其作为线虫管理工具的功效进行评估。本研究的目的是评估路易斯安那州两块线虫肆虐的棉田中抗线虫棉花品种的线虫数量发展、植株生长和籽棉产量。2022 年和 2023 年生长季节,在洛杉矶圣约瑟夫(NERS 田)和洛杉矶温斯伯勒(MRRS 田)进行了重复的小块田间试验。2022 年评估的栽培品种包括(1) DP 1646 B2XF(易感/耐受);(2) DP 2141NR B3XF(抗性);(3) PHY 332 W3FE(抗性);(4) PHY 411 W3FE(抗性);(5) PHY 443 W3FE(抗性)。2023 年,还增加了一个易感棉花品种 PHY 340 W3FE。与易感棉花栽培品种相比,所有抗线虫棉花栽培品种都能抑制肾形线虫种群的发展,与 DP 1646 B2XF 相比,收获时对线虫土壤种群密度的抑制率在 49 - 81% 之间。抗性栽培品种 PHY 411 W3FE 对肾形线虫种群发展的抑制最为一致,在两个田间地点和两个试验年份,收获时肾形线虫土壤种群密度都有所降低。相比之下,DP 2141NR B3XF 只降低了 2023 年 NERS 田收获时的土壤线虫种群密度。尽管抗性棉花栽培品种对线虫的抑制相对稳定,植株活力等级和冠层覆盖率也有所提高,但只有 2023 年在 NERS 试验田种植的 PHY 332 W3FE 和 PHY 411 W3FE 能实现增产。尽管接受评估的棉花品种对肾形线虫具有很强的抗性,但在种植了抗性棉花品种的地块上,线虫的土壤种群密度在生长季节仍然有所增加,这强调了在使用宿主抗性的同时,还需要采取其他管理策略。这项研究表明,新的抗线虫棉花栽培品种在路易斯安那州的生长季节具有减少线虫种群发展的潜力。
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Cotton host resistance as a tool for managing Rotylenchulus reniformis in Louisiana.

The reniform nematode, Rotylenchulus reniformis, is a major yield-limiting pest of upland cotton (Gossypium hirsutum) in the United States that has been steadily increasing in incidence in many states. Reniform nematode-resistant cotton cultivars have recently become commercially available for cotton producers; however, few field trials have evaluated their efficacy as a nematode management tool. The aim of this study was to evaluate reniform nematode population development, plant growth, and seed cotton yield of reniform nematode-resistant cotton cultivars in two nematode-infested fields in Louisiana. Replicated small-plot field trials were conducted in St. Joseph, LA (NERS field) and Winnsboro, LA (MRRS field) during the 2022 and 2023 growing seasons. In 2022, cultivars evaluated included: (1) DP 1646 B2XF (susceptible/tolerant), (2) DP 2141NR B3XF (resistant), (3) PHY 332 W3FE (resistant), (4) PHY 411 W3FE (resistant), and (5) PHY 443 W3FE (resistant). In 2023, an additional susceptible cotton cultivar, PHY 340 W3FE, was also included. All nematode-resistant cotton cultivars evaluated provided suppression of reniform nematode population development relative to that of the susceptible cotton cultivars, with suppression of nematode soil population densities at harvest ranging from 49 - 81% relative to DP 1646 B2XF. The resistant cultivar PHY 411 W3FE provided the most consistent suppression of reniform nematode population development, reducing reniform nematode soil population densities at harvest in both field locations and both trial years. In contrast, DP 2141NR B3XF only reduced soil population densities at harvest in the NERS field in 2023. Despite relatively consistent nematode suppression and improvements in plant vigor ratings and canopy coverage associated with the resistant cotton cultivars, a yield increase was only observed with PHY 332 W3FE and PHY 411 W3FE planted at the NERS field in 2023. Despite strong resistance to reniform nematode in the evaluated cotton cultivars, nematode soil population densities still increased during the growing season in plots planted with resistant cotton cultivars, emphasizing the need for additional management tactics to use alongside host resistance. This study indicates that new reniform nematode-resistant cotton cultivars show promising potential to reduce nematode population development during the growing season in Louisiana.

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来源期刊
Journal of nematology
Journal of nematology 生物-动物学
CiteScore
2.90
自引率
7.70%
发文量
40
审稿时长
14 weeks
期刊介绍: Journal of Nematology is the official technical and scientific communication publication of the Society of Nematologists since 1969. The journal publishes original papers on all aspects of basic, applied, descriptive, theoretical or experimental nematology and adheres to strict peer-review policy. Other categories of papers include invited reviews, research notes, abstracts of papers presented at annual meetings, and special publications as appropriate.
期刊最新文献
Evaluating Vacuum and Steam Heat to Eliminate Pinewood Nematodes in Naturally Infested Whole Pine Logs. Description of two new Pristionchus species from South Korea. Description and Molecular Characterization of a New Dorylaimid Nematode, Mesodorylaimus pini n. sp. (Nematoda: Dorylaimidae) from Korea. JON 63rd Meeting 2024 Park City ABSTRACTS. Nematode genome announcement: A chromosome-scale genome assembly for the Pristionchus pacificus reference mapping strain PS1843.
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