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首页> 外文期刊>American Journal of Plant Sciences >Dry Weight Accumulation, Root Plasticity, and Stomatal Conductance in Rice (Oryza sativa L.) Varieties under Drought Stress and Re-Watering Conditions
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Dry Weight Accumulation, Root Plasticity, and Stomatal Conductance in Rice (Oryza sativa L.) Varieties under Drought Stress and Re-Watering Conditions

机译:干旱和复水条件下水稻品种的干重积累,根系可塑性和气孔导度

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摘要

Drought is one of the main factors limiting rice ( style="font-family:Verdana;">Oryza style="font-family:Verdana;">sativa style="font-family:Verdana;"> L.) productivity and has become an increasingly severe problem in many regions worldwide. Establishing breeding programs to develop new drought-tolerant varieties requires an understanding of the effect of drought on rice plants and the mechanisms of drought tolerance in rice. We conducted a pot experiment to explore growth characteristics, root plasticity, and stomatal conductance style="font-family:;" "=""> style="font-family:Verdana;">in six rice varieties (DA8, Malagkit style="font-family:;" "=""> style="font-family:Verdana;">Pirurutong, Thierno style="font-family:;" "=""> style="font-family:Verdana;">Bande, Pate Blanc MN1, Kinandang style="font-family:;" "=""> style="font-family:Verdana;">Patong, and Moroberekan) in response to different drought stress and re-watering conditions. Drought stress significantly depressed plant growth, root size, and stomatal conductance in all experimental varieties. These negative effects depended on both the variety and the severity of the drought stress treatment. Under moderate drought stress (10 days after drought treatment), growth was less influenced in roots than in shoots. In contrast, there was an opposite trend under severe drought stress (15 days after drought treatment), style="font-family:;" "=""> style="font-family:Verdana;">with growth being more severely affected in roots than in shoots. Rice plants recovered from drought stress in terms of dry matter accumulation, root size, and stomatal conductance after re-watering; however, the recovery pattern differed among varieties. DA8 exhibited the highest dry weight accumulation and root size (root length, root surface area, root volume, fine root length, and thick root length) under well-watered, drought stress, and re-watering conditions. Kinandang style="font-family:;" "=""> style="font-family:Verdana;">Patong showed the highest recovery ability in dry matter accumulation, root length, root surface area, and stomatal conductance after re-watering. Malagkit style="font-family:;" "=""> style="font-family:Verdana;">Pirurutong expressed the poorest recovery ability in dry matter accumulation after re-watering. These three varieties might be selected for further experiments focusing on the mechanisms of drought tolerance and recovery ability in rice.
机译:干旱是限制稻米的主要因素之一( style =“ font-family:Verdana;”> Oryza style =“ font-family:Verdana;” > sativa style =“ font-family:Verdana;”> L.)的生产率,并且在全球许多地区已成为日益严重的问题。建立育种计划以开发新的耐旱品种需要了解干旱对水稻植株的影响以及水稻的耐旱机制。我们进行了盆栽试验,以探讨生长特性,根系可塑性和气孔导度 style =“ font-family :;” “ =”“> style =” font-family:Verdana;“>在六个水稻品种中(DA8,马拉格(Malagkit) style =” font-family:;“” =“ =” style =“ font-family:Verdana;”>蒂鲁诺Pirurutong style =“ font-family :;”“ =”“> style =” font -family:Verdana;“>班德(Bande),佩特·布朗(Pate Blanc MN1),基南当(Kandangang) style =” font-family :;“” =“”> style =“ font-family:Verdana;” > Patong和Moroberekan),以应对不同的干旱压力和补水条件。在所有实验品种中,干旱胁迫均显着抑制了植物的生长,根系大小和气孔导度。这些负面影响取决于干旱胁迫处理的种类和严重性。在中等干旱胁迫下(干旱处理后10天),根部的生长受芽的影响较小。相反,在严重干旱胁迫下(干旱处理后15天)则呈现相反的趋势, style =“ font-family :;” “ =”“> style =” font-family:Verdana;“>根部的生长比芽中的生长受到的影响更大。从干旱胁迫中恢复的水稻植株在干物质积累,根系大小,复水后的恢复方式不同,DA8表现出最高的干重积累和根系大小(根系长度,根系表面积,根系体积,细根长和粗根长)。浇水,干旱胁迫和补水条件。Kinandang style =“ font-family :;”“ =”“> style =” font-family:Verdana;“> Patong复水后,在干物质积累,根长,根表面积和气孔导度方面显示出最高的恢复能力。 Malagkit style =“ font-family :;”皮鲁鲁通(Pirurutong)在复水后表现出干物质积累中最差的恢复能力,因此可以选择这三个变种进行进一步实验,重点关注其作用机理。“ => style =“ font-family:Verdana;”>的抗旱性和恢复能力的研究。

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