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首页> 外文期刊>Australian Journal of Crop Science >Morphological changes recorded in different phenophases of sugarcane plants subjected to water stress in tropical field conditions
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Morphological changes recorded in different phenophases of sugarcane plants subjected to water stress in tropical field conditions

机译:热带田间条件下水分胁迫下甘蔗植物不同表相的形态变化

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摘要

Nowadays, water deficit is one of the major environmental stress issues affecting sugarcane crops around the world. It has been causing significant production decrease due to the increased mortality rates generated by water stress in sugarcane plantations. The aim of the current study is to assess sugarcane morphological and yield responses during different phenophases of sugarcane varieties when plants are subjected to drought stress in the fields of a tropical region. Six sugarcane varieties, namely: SP79-1011, RB855113, RB92579, RB867515, RB72454, and RB855536, were subjected to water stress. The herein adopted water regimes were (i) irrigated crop and (ii) crop subjected to natural drought in the field. Plants were cultivated under water stress imposition throughout three phenological stages (i) tillering, three months after planting; (ii) intense growth, seven months after planting; and (iii) ripening, eleven months after planting. The irrigation treatment consisted of supplementing the crop with 50 mm of water per month during the dry season, whereas non-irrigated plants were naturally grown under water stress conditions throughout the experiment. Water stress mostly affected the sugarcane crop during the intense growth phase. Varieties RB72454 and RB855536 presented smaller green-leaf number, as well as narrower leaf width and smaller leaf area under water stress; besides, they showed low productive potential and high stress susceptibility index (SSI). Stalk height maintenance and the larger number of tillers in RB92579 plants subjected to water stress helped balancing yield rates. This variety also showed the best drought tolerance (DTI) and yield/tolerance indices (YTI); moreover, the principal component analysis evidenced that leaf area, plant height and yield were important factors to distinguish the most tolerant varieties. Such results show that RB92579 is more drought tolerant and has better physiological acclimation potential than the other five varieties; therefore, it can be recommended for crops subjected to drought periods.
机译:如今,缺水已成为影响全球甘蔗作物的主要环境压力问题之一。由于甘蔗种植园因水分胁迫而导致死亡率增加,导致产量大幅下降。当前研究的目的是评估当热带地区的田地植物遭受干旱胁迫时,甘蔗品种在不同表相期间的甘蔗形态和产量响应。对六个甘蔗品种,即:SP79-1011,RB855113,RB92579,RB867515,RB72454和RB855536进行了水分胁迫。本文采用的水方案为(i)灌溉作物和(ii)田间遭受自然干旱的作物。在整个物候三个阶段中,在水分胁迫下种植植物(i)分till,种植后三个月; (ii)播种后七个月迅速增长; (iii)播种后十一个月成熟。灌溉处理包括在干旱季节每月向作物补充50毫米水,而在整个实验过程中,非灌溉植物在水分胁迫条件下自然生长。在生长旺季,水分胁迫主要影响甘蔗作物。水分胁迫下,RB72454和RB855536品种的绿叶数较小,叶宽较窄,叶面积较小。此外,它们显示出低的生产潜力和高的应力敏感性指数(SSI)。水分胁迫使RB92579植物的茎高保持较高以及分of数量增加,有助于平衡产量。该品种还表现出最佳的耐旱性(DTI)和产量/耐性指数(YTI)。此外,主成分分析表明,叶面积,株高和产量是区分最耐性品种的重要因素。这些结果表明,RB92579比其他五个品种具有更好的耐旱性和生理适应性。因此,建议将其用于遭受干旱时期的农作物。

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