ROOT SYSTEM IN MAIZE PLANTS CULTIVATED UNDER WATER DEFICIT AND APPLICATION OF CHITOSAN

Lorena Gabriela Almeida, E. Silva, P. Magalhães, D. Karam, C. O. D. Reis, C. C. G. Júnior, Daniele Maria Marques
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引用次数: 1

Abstract

Low water availability is characterized as an abiotic stressthat limits the agricultural production. Due to the physical and chemicalcharacteristics of the chitosan (CHT), this substance might stimulatephysiological responses on plants to tolerate the water deficit. In this sense,we submitted corn plants to water deficit and application of chitosan on theleaves (140 mg/L) during pre flowering stage. It were analyzed two cornhybrids genotypes contrasting for water deficit tolerance: DKB 390 (tolerant)and BRS1010 (sensitive). Then, we performed evaluations on the rootsystem and production components. Corn plants submitted to the applicationof chitosan presented a specific behavior: when compared the hybrids,the tolerant one presented a root system that was more developed and anexpressive agronomical yield. These results highlight the fact that the chitosanstimulates plant growth, enhancing their root system and contributing toincrease the availability and absorption of water and nutrients. The chitosanpresents a potential to reduce the negative effects of water deficit on the rootsystems, without compromising the agronomical yield.
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水分亏缺条件下玉米根系及壳聚糖的施用
水资源利用率低是一种限制农业生产的非生物胁迫。由于壳聚糖(CHT)的物理和化学特性,这种物质可能会刺激植物的生理反应,以适应水分不足。在此基础上,对玉米植株进行了花前期水分亏缺和壳聚糖叶施(140 mg/L)试验。对DKB 390(耐水性)和BRS1010(敏感水性)两种玉米杂交品种的耐水亏性进行了对比分析。然后,我们对根系和生产组分进行了评估。施用壳聚糖的玉米植株表现出一种特殊的行为:与杂交种相比,耐受性强的玉米根系更发达,农艺产量也更显著。这些结果强调了这样一个事实:壳聚糖刺激植物生长,增强它们的根系,有助于增加水分和养分的可用性和吸收。壳聚糖有可能在不影响产量的情况下减少根系水分亏缺的负面影响。
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发文量
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审稿时长
40 weeks
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