SCREENING RICE (Oryza sativa L.) GENOTYPES FOR RESISTANCE AGAINST DROUGHT

M. Salleh, Ris Amirah Malek, R. Shahari, M. Nordin
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引用次数: 10

Abstract

Drought is regarded as one of the limiting factors in rice production nationally and globally. The present study was conducted to study morpho-physiological and biochemical responses of rice genotypes to drought stress, to identify potential traits for use as a selection criterion in breeding drought-tolerant rice at seedling stage and finally to identify rice genotype resistant to drought stress for use as parents in future breeding. The experimental design used was a split-plot design with three replications, with drought stress as the main plot and rice genotypes as the sub-plot. The main plots consisted of control (normal irrigation) and drought stress. The sub-plots consisted of twelve rice genotypes namely Apami (V1), Boewani (V2), Basmati 370 (V3), Cica- 4 (V4), Dular (V5), Jarom mas (V6), Kalarata (V7), Biris (V8), Haiboq (V9), Moroberekan (V10), MR 297 (V11) and Aerob 1 (V12). Results showed that drought stress led to a decrease in plant height, leaves size, root length, total dry weight, and number of leaves but an increment in proline content. The genotype Apami and Kalarata were found to accumulate higher proline content indicating potential resistant ability towards drought stress. Dular and Aerob1, along with tolerant control genotype, Moroberekan, on the other hand, recorded a lower SES score. Leave size, root length, and plant height could also be used as a selection criterion in breeding drought-tolerant rice due to high values of broad-sense heritability and genetic advance by percentage of mean (GAM). Nevertheless, further study on the genetics and physiological basis of tolerant ability at reproductive growth stages are necessary in order to assess grain yield potential of the potentially tolerant genotype reported in this study.
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筛选水稻(Oryza sativa L.)抗旱基因型
干旱是制约我国乃至全球水稻生产的重要因素之一。本研究旨在研究水稻基因型对干旱胁迫的形态生理生化反应,为苗期选育抗旱水稻提供潜在的性状选择依据,并为今后选育抗旱水稻提供基因型亲本。试验设计为3个重复的裂区设计,干旱胁迫为主区,水稻基因型为副区。主要样地为对照(正常灌溉)和干旱胁迫。亚区包括12个水稻基因型,分别为Apami (V1)、Boewani (V2)、Basmati 370 (V3)、Cica- 4 (V4)、Dular (V5)、Jarom mas (V6)、Kalarata (V7)、Biris (V8)、Haiboq (V9)、Moroberekan (V10)、mr297 (V11)和Aerob 1 (V12)。结果表明,干旱胁迫导致植株株高、叶片大小、根长、总干重和叶片数减少,脯氨酸含量增加;结果表明,Apami和Kalarata基因型脯氨酸含量较高,具有潜在的抗旱能力。另一方面,dull和Aerob1以及耐药对照基因型Moroberekan的SES得分较低。叶片大小、根长和株高具有较高的广义遗传力和平均遗传百分率(GAM),可作为选育抗旱水稻的选择标准。然而,为了评估本研究中报道的潜在耐受基因型的产量潜力,有必要进一步研究生殖生长阶段耐受能力的遗传和生理基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Water Conservation and Management
Water Conservation and Management Engineering-Ocean Engineering
CiteScore
2.90
自引率
0.00%
发文量
0
审稿时长
12 weeks
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