Better root length distribution in the deep soil profile enhances upland cotton performance

IF 6.4 1区 农林科学 Q1 AGRONOMY Field Crops Research Pub Date : 2025-04-15 Epub Date: 2025-02-19 DOI:10.1016/j.fcr.2025.109805
Om Prakash Ghimire , Vasu Kuraparthy , Michael Jones , B. Todd Campbell , William C. Bridges Jr. , Femi P. Alege , Christopher Delhom , Sruthi Narayanan
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Abstract

Intense selection for lint yield and fiber quality traits can impose an unintended limitation on the attainable yield of modern cotton cultivars, as the root systems fail to support boll growth. Despite the importance, little progress has been made in enhancing cotton root systems. We evaluated a subset of the U.S. cotton diversity panel under field conditions in 2022 and 2023 to identify the root architectural traits that enhance effective water use and aboveground performance. We found that increased water use efficiency (WUE, shoot biomass/soil water depletion) of the cotton genotypes was associated with enhanced shoot biomass (correlation coefficient, r, 0.80 in 2022 and 0.96 in 2023). Potential root phenotypes that enhanced resource capture and shoot biomass production were better root length distribution in deep soil profile (∼40–60 cm) and fine root (0.25–0.5 mm diameter) production. Shoot biomass was correlated with root length in the deep profile (r, 0.69 in 2022 and 0.45 in 2023) but not in the shallower profile (<40 cm). Root length in the deep profile was also correlated with WUE in the dryer year 2022 (r, 0.45). The cotton root system was dominated by fine roots (46–66 % in 2022 and 53–62 % in 2023). Genotypes Station Miller, Paymaster HS26, and PD 2164 possessed beneficial root architecture which was linked to their high shoot biomass, leaf area index, WUE, and seed cotton yield. These genotypes can be used as germplasm sources for improved root traits and to study their genetic regulation.
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深层土壤剖面中较好的根长分布提高了陆地棉的生产性能
由于根系不能支持棉铃生长,对皮棉产量和纤维品质性状的严格选择可能会对现代棉花品种的可达到产量造成意想不到的限制。尽管具有重要意义,但在增强棉花根系方面进展甚微。我们在2022年和2023年的田间条件下评估了美国棉花多样性面板的一个子集,以确定提高有效水分利用和地上性能的根系结构特征。研究发现,棉花基因型水分利用效率(WUE,地上部生物量/土壤水分耗竭)的增加与地上部生物量的增加相关(相关系数r, 2022年为0.80,2023年为0.96)。深层土壤剖面(~ 40-60 cm)较好的根长分布和细根(0.25-0.5 mm直径)产量是提高资源捕获和地上部生物量产量的潜在根系表型。茎部生物量与根长在深层剖面上呈显著相关(r为0.69,2022年为0.45,2023年为0.45),而在浅层剖面上无显著相关(<40 cm)。深层根系长度也与2022年干旱年份的水分利用效率相关(r = 0.45)。棉花根系以细根为主(2022年为46 ~ 66 %,2023年为53 ~ 62 %)。基因型Station Miller、Paymaster HS26和PD 2164具有有益的根构型,这与它们较高的茎部生物量、叶面积指数、水分利用效率和籽棉产量有关。这些基因型可作为改良根系性状的种质资源和研究根系性状的遗传调控。
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来源期刊
Field Crops Research
Field Crops Research 农林科学-农艺学
CiteScore
9.60
自引率
12.10%
发文量
307
审稿时长
46 days
期刊介绍: Field Crops Research is an international journal publishing scientific articles on: √ experimental and modelling research at field, farm and landscape levels on temperate and tropical crops and cropping systems, with a focus on crop ecology and physiology, agronomy, and plant genetics and breeding.
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