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The impact of tillage on pinto bean cultivar response to drought induced by deficit irrigation

机译:耕作对缺陷灌溉诱导干旱植物豆类品种应对的影响

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Drought stress is a major factor limiting yield of dry bean (Phaseolus vulgaris) and drought tolerant cultivars are being developed. Reducing tillage in row crops has advantages of conserving moisture and increasing water infiltration, and may alter the response of dry bean cultivars to drought stress. The goal of this study was to evaluate the response of eight pinto bean cultivars to deficit irrigation when grown under conventional (CT) vs strip tillage (ST). Drought was imposed to one half of the plots approximately 30 days after emergence by reducing irrigation by 48% [deficit irrigation (DI)] compared to full replacement of estimated evapotranspiration (FI = full irrigation). DI reduced bean seed yields 48 and 46% in 2015 and 2016, respectively. Dry bean cultivars varied in their response to drought stress by year. ST improved bean stands both years and moderated the decline in soil water, particularly in the upper 0-15 cm of the soil profile under DI when compared to CT. Mid-season shoot length, top biomass, leaf area index, and canopy cover were generally greater, and light transmittance through the plant canopy lower in ST compared to CT. ST increased bean seed yield 9% in one of two years over CT. ST improvements in crop stand, shoot and canopy development, and seed yield were consistent across irrigation levels and cultivars. Pinto bean growth and yield responses to ST were generally either favorable or neutral when compared to CT suggesting that implementing ST could benefit dry bean performance under both favorable and limited water conditions.
机译:干旱胁迫是一种主要因素,限制了干豆(去药)和正在开发的耐旱品种。减少行作物中的耕作具有保护水分和增加水浸润的优点,并可能改变干豆品种对干旱胁迫的反应。本研究的目标是评估八种豆豆品种在常规(CT)VS带状耕作(ST)下生长时缺陷灌溉的反应。通过减少48%的灌溉[缺陷灌溉(DI)]与估计的蒸散(FI =全灌溉)的完全置换相比,在48%的灌溉后30天内施加干旱的一半梗死。 DI减少豆种子产量分别在2015年和2016年的48%和46%。干豆品种在年份对干旱压力的反应变化。 ST改良的豆立师两年都既达到土壤水中的下降,特别是在与CT相比下的土壤曲线的上部0-15厘米。中季射击长度,顶部生物量,叶面积指数和冠层覆盖通常更大,并且通过ST的植物冠层与CT相比较低的透光率。在CT的两年中,ST增加了豆子产量9%。在作物展台,拍摄和冠层开发中的ST改善,种子产量均在灌溉水平和品种上一致。与CT相比,对ST的PINTO BEAN生长和对ST的产量反应通常是有利的或中性,表明在有利和有限的水条件下实施ST可以使干燥的豆类性能受益。

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