Effects of Paclobutrazol on Growth, Yield and Water Use Efficiency of Rice (Oryza sativa L.) under Drought Stress Condition

IF 0.4 Q4 MULTIDISCIPLINARY SCIENCES Mindanao Journal of Science and Technology Pub Date : 2022-06-20 DOI:10.61310/mndjstea.0959.22
Ronalyn P. Azarcon, Pacifico T. Vizmonte, Jr., Ace Mugssy L. Agustin
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引用次数: 2

Abstract

Paclobutrazol (PBZ) was reported to increase grain yield of different rice ecotypes via improved tillering ability under rainfed condition. In this study, the effects of PBZ on the shoot and root growth, and water use that might have contributed to higher yield under water-limited conditions were further examined. PSB Rc14 and NSIC Rc222 were grown in pots and subjected to continuously waterlogged (CWL) and drought (DR) treatments with soil moisture content maintained at 20% from 14 days after transplanting (DAT) until maturity. PBZ concentrations (0, 250 and 500 ppm) were sprayed at the onset of water treatments (14 DAT). Results showed that drought treatment significantly altered most of the parameters indicating successful imposition of the stress with the two varieties showing almost similar responses under the two water regimes, especially during maturity. PBZ application in CWL improved tiller number and yield components at a lower concentration and consequently increased grain yield. In drought, PBZ improved tiller number (34-39) starting at 35 DAT which contributed to a higher panicle number at maturity. Additionally, PBZ did not affect the shoot and root growth but reduced water use. Furthermore, the panicle number increased which could be linked to more grain numbers per plant leading to higher grain yields. These higher grain yield and lower water use improved water use efficiency, which required higher PBZ concentration (500 ppm). Overall, PBZ improved the panicle number contributing to a higher grain yield while reducing water use, thereby boosting water use efficiency of rice under drought stress condition.
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干旱胁迫条件下多效唑对水稻生长、产量和水分利用效率的影响
报道了多效唑(PBZ)通过提高不同生态型水稻在雨养条件下的分蘖能力来提高产量。在本研究中,进一步研究了PBZ对地上部和根部生长的影响,以及在水分限制条件下可能有助于提高产量的水分利用。将PSB Rc14和NSIC Rc222在盆中生长,并进行连续积水(CWL)和干旱(DR)处理,从移植后14天(DAT)到成熟,土壤水分含量保持在20%。在水处理开始时(14DAT)喷洒PBZ浓度(0、250和500ppm)。结果表明,干旱处理显著改变了大多数表明成功施加胁迫的参数,两个品种在两种水情下表现出几乎相似的反应,尤其是在成熟期。PBZ在CWL中的施用在较低浓度下改善了分蘖数量和产量组成,从而提高了粮食产量。在干旱条件下,PBZ从35DAT开始提高分蘖数(34-39),这有助于提高成熟时的穗数。此外,PBZ不影响地上部和根部的生长,但减少了水分的使用。此外,穗数增加可能与单株粒数增加有关,从而提高粮食产量。这些较高的粮食产量和较低的水分利用提高了水分利用效率,这需要较高的PBZ浓度(500ppm)。总的来说,PBZ改善了穗数,有助于提高粮食产量,同时减少了水分利用,从而提高了干旱胁迫下水稻的水分利用效率。
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来源期刊
Mindanao Journal of Science and Technology
Mindanao Journal of Science and Technology MULTIDISCIPLINARY SCIENCES-
CiteScore
0.90
自引率
0.00%
发文量
18
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