首页> 外文期刊>Brazilian Archives of Biology and Technology >Photosynthetic capacity and water use efficiency in sugarcane genotypes subject to water deficit during early growth phase.
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Photosynthetic capacity and water use efficiency in sugarcane genotypes subject to water deficit during early growth phase.

机译:甘蔗基因型在生长初期受水分亏缺的光合能力和水分利用效率。

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摘要

The objective of this study was to compare the gas exchange, photosynthetic capacity and water potential of sugarcane genotypes cultivated under water deficit conditions imposed during the initial growth phase. Experiments were performed in a greenhouse using two sugarcane genotypes namely: HoCP93-776 (drought susceptible) and TCP02-4587 (drought tolerant). Sixty days after planting, two different water treatments were applied (i.e., with or without water deficit). At 0,30 and 60 days after the treatment, gas exchange variables were evaluated for their relationship with water use, intrinsic instantaneous water use efficiency and instantaneous carboxylation efficiency. The SPAD index, photosynthetic pigments, water potential and relative water content in the leaves were also analyzed. The genotype HoCP93-776 was more sensitive to drought treatment as indicated by the significantly lower values of SPAD index, photosynthetic pigments, water potential ( Psi w) and relative water content (RWC) variables. The genotype TCP02-4587 had higher water potential, stomatal control efficiency, water use efficiency (WUE), intrinsic instantaneous water use efficiency (WUEintr), instantaneous carboxylation efficiency and photosynthetic capacity. The highest air vapor pressure deficit during the drought conditions could be due to the stomatal closing in the HoCP93-776, which contributed to its lower photosynthetic capacity.
机译:这项研究的目的是比较在初始生长期施加的缺水条件下种植的甘蔗基因型的气体交换,光合能力和水势。在温室中使用两种甘蔗基因型进行实验:HoCP93-776(易受干旱影响)和TCP02-4587(耐干旱)。播种后六十天,进行了两种不同的水处理(即有或没有缺水)。在处理后的0,30和60天,评估了气体交换变量与用水,固有瞬时用水效率和瞬时羧化效率之间的关系。还分析了叶片的SPAD指数,光合色素,水势和相对含水量。 HoCP93-776基因型对干旱处理更敏感,这表明SPAD指数,光合色素,水势(Psi w )和相对水含量(RWC)变量明显较低。基因型TCP02-4587具有较高的水势,气孔控制效率,水分利用效率(WUE),固有瞬时水分利用效率(WUE intr ),瞬时羧化效率和光合能力。干旱条件下最高的空气蒸气压亏缺可能归因于HoCP93-776中的气孔关闭,这导致其光合能力降低。

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