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Assessment of rice ( Oryza sativa L.) genotypes for drought stress tolerance using morpho-physiological indices as a screening technique

机译:用晶体生理指数作为筛选技术评估水稻(Oryza sativa L.)基因型的基因型

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Drought stress is one of the primary problem for agricultural crops which causes a great decline in crop production in Pakistan and worldwide. Rice is an economically main cereal crop affected by drought stress. In this study, twenty-one rice genotypes (including 19 mutants (M 5 generation) of super basmati and two varieties were subjected to various concentration of PEG-600 (10% and 15%) at seedling stage to explore the mechanism of drought stress tolerance. PEG -6000 induced drought stress caused a substantial decline in growth attributes and relative water contents (RWC), and increase the levels of electrolyte leakage (EL), hydrogen peroxide (H 2 O 2 ) and malondialdehyde (MDA) in all rice genotypes. A significant difference among the tested rice genotypes based on morpho-physiological indiceswas recorded. Based on morpho-physiological indices (RLSI, SLSI, PFWSI, PDWSI, EL, MDA and H 2 O 2 ), genotypes HTT-119, HTT-74, HTT-92, HTT-97, HTT-104, HTT-119, HTT-125 and HTT-132 were categorized as drought tolerant, while HTT-19, HTT-39, Super basmati (Super Bas), HTT-81, and IR-64 performed poorly recognized as sensitive genotypes. In addition, remaining eight mutants were identified as moderate tolerant. According to present study findings, the screened rice genotypes for drought tolerance can also be suggested to farmers for the improved production and yield of crop on drought-affected area.
机译:干旱压力是农业作物的主要问题之一,这导致巴基斯坦和全球作物生产巨大下降。大米是一种受干旱胁迫影响的经济上主要的谷物作物。在本研究中,在幼苗阶段对二十一米基因型(包括19个突变体(包括19个突变体)和两种品种的超级BAG-600(10%和15%),以探讨干旱胁迫的机制耐受性。PEG -6000诱导的干旱胁迫导致生长属性和相对水分(RWC)的显着下降,并增加所有米饭中电解质泄漏(EL),过氧化氢(H 2 O 2)和丙二醛(MDA)的水平基因型。基于杂种生理指标的测试水稻基因型中的显着差异。基于态洛生理指标(RLSI,SLSI,PFWSI,PDWSI,EL,MDA和H 2 O 2),基因型HTT-119,HTT- 74,HTT-92,HTT-97,HTT-104,HTT-119,HTT-125和HTT-132被分类为干旱耐受,而HTT-19,HTT-39,Super Basmati(超级BAS),HTT-81 ,IR-64表现不良被认为是敏感基因型。此外,剩余的八个突变体被鉴定为中度宽容。根据目前的研究发现,还可以向农民提高受干旱影响地区的农作物生产和产量的农民筛选水稻基因型。

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