首页> 外文期刊>Journal of Agronomy and Crop Science/Zeitschrift fur acker-und pflanzenbau >Effects of soil salinity and plant density on yield and leaf senescence of field-grown cotton.
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Effects of soil salinity and plant density on yield and leaf senescence of field-grown cotton.

机译:土壤盐分和植物密度对田间种植棉花的产量和叶片衰老的影响。

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摘要

The response of cotton to constant salinity has been well documented under controlled conditions, but its response to changing salinity under field conditions is poorly understood. Using a split-plot design, we conducted a 2-year field experiment to determine the effects of soil salinity and plant density on plant biomass, boll load, harvest index and leaf senescence in relation to cotton yield in three fields with similar fertility but varying salinity. The main plots were assigned to weak (electrical conductivity of soil saturated paste extract, ECe=5.5 dS m-1), moderate (ECe=10.1 dS m-1) and strong (ECe=15.0 dS m-1) soil salinity levels, while plant density (3.0, 4.5 and 7.5 plants m-2) was assigned to the subplots. Soil salinity had a negative effect on seedcotton yield, but the negative effect was compensated for by increased plant density under strong-salinity conditions. Seedcotton yield under weak salinity changed little with varying plant density, but the medium plant density yielded better than the low or high plant density under moderate salinity. Plants accumulated 49 and 112% more Na+ in leaves under moderate and strong salinity than under weak salinity. Strong salinity also led to higher boll load and early leaf senescence. Plant density had no effect on Na+ accumulation in leaves, but greatly reduced boll load and delayed leaf senescence. Plant biomass, maximum leaf area index and harvest index were greatly affected by salinity, plant density and their interaction. Accelerated leaf senescence under strong salinity was attributed to the high boll load and increased accumulation of toxic ions like Na+ in leaves, while delayed leaf senescence with increased plant density was attributed to the reduced boll load. Optimal yield can only be obtained with proper coordination of total biomass and harvest index by modification of plant density based on salinity levels.
机译:棉花对恒定盐度的响应在受控条件下已得到很好的证明,但对田间条件下盐度变化的响应知之甚少。使用分块设计,我们进行了为期两年的田间试验,以确定三个肥力相似但变化的田地的土壤盐分和植物密度对植物生物量,棉铃载量,收获指数和叶片衰老与棉花产量的影响盐度。主要地块分配为弱(土壤饱和糊状提取物的电导率,ECe = 5.5 dS m -1 ),中度(ECe = 10.1 dS m -1 )和土壤盐度水平较高(ECe = 15.0 dS m -1 ),而亚密实地分配了植物密度(3.0、4.5和7.5植物m -2 )。土壤盐分对棉籽产量有负面影响,但在高盐度条件下增加的植物密度可以弥补这一负面影响。弱盐度下的棉籽产量随植物密度的变化而变化不大,但中等盐度下中等植物密度的产量要好于低密度或高植物密度。在中度和强盐度条件下,植物在叶片中积累的Na + 比弱盐度高49%和112%。强盐度还导致更高的铃铃负荷和早期叶片衰老。植株密度对叶片中Na + 的积累没有影响,但显着降低了铃铃负荷并延迟了叶片的衰老。盐度,植物密度及其相互作用极大地影响了植物的生物量,最大叶面积指数和收获指数。高盐度下叶片衰老加速归因于较高的铃铃负荷和叶片中Na + 等有毒离子的积累增加,而延迟的叶片衰老随植物密度的增加归因于铃铃负荷的降低。只有根据盐度水平修改植物密度,才能在总生物量和收获指数得到适当协调的情况下获得最佳产量。

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