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Drought Effects on Cotton Yield and Fiber Quality on Different Fruiting Branches

机译:干旱对不同果枝的棉花产量和纤维品质的影响

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Whole-plant-based measurements do not always accurately reflect the effect of drought on cotton because of its indeterminate growth habits. We conducted pot experiments with cotton and imposed three soil water levels (75 ?± 5, 60 ?± 5, and 45 ?± 5% of field capacity [FC]) during boll development to determine influences of drought on yield distribution and fiber quality on different fruiting branches (FB). Drought not only reduced lint yield (decreased by 31 to 35 and 57 to 60% under 60 ?± 5% FC and 45 ?± 5% FC, respectively) but also altered yield distribution on different FB. Drought plants produced fewer and smaller bolls on higher FB than did the well-watered plants. Boll biomass distribution and seed number per boll on upper FB were also altered by drought. Fiber length and strength declined progressively with decreasing water availability, being more pronounced on higher FB. Micronaire value was greater on higher FB under the same water regime, while no consistent influences of drought on micronaire were obtained. Boll weight, seed index, and fiber length and strength declined linearly with decreasing mean midday leaf water potential (LWP) during fruit maturation period (FMP) in the range of about 0.7 g, 1.0 g, 2.4 mm, and 3.4 cN texa€“1 per MPa, respectively. Our findings showed that the bolls at various FB differed in drought response. The LWP was a suitable index for fiber properties under production environment. These data will be valuable for designing better irrigation strategies and improving cotton simulation models.
机译:基于全植物的测量由于其不确定的生长习性,并不总是能准确反映干旱对棉花的影响。我们用棉铃进行盆栽试验,并在棉铃发育期间施加了三种土壤水位(田间持水量[FC]的75?±5、60?±5和45?±5%),以确定干旱对产量分布和纤维品质的影响在不同的结果分支(FB)上。干旱不仅降低了皮棉产量(在60?±5%FC和45?±5%FC下分别降低了31%至35%和57%至60%),而且改变了不同FB上的产量分布。与水分充足的植物相比,干旱植物在较高的FB上产生的铃铃越来越少。干旱区上部铃的铃铃生物量分布和单铃种子数也发生了变化。纤维长度和强度随着可用水量的减少而逐渐降低,在较高的FB上更为明显。在相同的水量条件下,FB较高时马克隆值较高,而干旱对马克隆值没有持续的影响。果实成熟期(FMP)期间,铃重,种子指数,纤维长度和强度随平均午后叶水势(LWP)的降低而线性下降,范围约为0.7 g,1.0 g,2.4 mm和3.4 cN texa。每MPa 1。我们的研究结果表明,各个FB的棉铃在干旱响应方面有所不同。 LWP是生产环境下纤维性能的合适指标。这些数据对于设计更好的灌溉策略和改善棉花模拟模型将是有价值的。

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