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Screening of Rice Accessions for Tolerance to Drought and Salt Stress Using Morphological and Physiological Parameters

机译:使用形态学和生理学参数筛选水稻种植耐受性和盐胁迫的耐受性

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Drought and salinity are the most widespread soil problems, posing a big threat to food security in rice growing regions. The present study evaluated the performance of eleven rice genotypes using morphological and physiological parameters, under induced drought and salinity conditions. The seedlings were raised in 5 kg of homogenous soil in plastic bags in the greenhouse. For the drought experiment, each bag was watered with 200 ml of water twice daily until plants reached the five-leaf stage when watering was suspended for 2 weeks for the drought stressed plants but not suspended for the control plants. The experiment was a 2 11 factorial and the set up was arranged using the completely randomized design with three replications. Data were taken on Plant height, Number of tillers, leaf length, Number of green leaves, Number of dead leaves, Leaf rolling score (LRS) and Rate of water loss. The salinity experiment was set up in a similar manner except that the plants were irrigated twice a day for 2 weeks with 200 ml of treatment solution containing either 0 mM NaCl or 75 mM and data were collected on plant height, number of tillers, shoot fresh weight, shoot dry weight, Na~+ and K~+ concentrations, relative water content and chlorophyll content. Data from both experiments were subjected to Analysis of variance test using the GenStat software 10th edition and the means separated using least significant difference test. Individual stress response index (ISRI) was calculated for each parameter and the means used in grouping the varieties. Of the genotypes evaluated, four (FARO 44, NERICA 2, NERICA 8 and NERICA 5) were identified as tolerant, two (NERICA 4 and FARO 57) as moderately tolerant, while the rest were found to be sensitive to drought. Equally, two varieties (FARO 44 and RAM 137) stood out in the salinity screening as tolerant varieties, five were moderately tolerant while four (FARO 64, FARO 52, NERICA 2 and FARO 55) were clearly susceptible. FARO 44 is the only genotype that showed tolerance to both drought and salinity. The identified drought and salinity tolerant rice genotypes from this study can be recommended as genetic sources for future breeding programs for drought and salinity tolerance in rice.
机译:干旱和盐度是最广泛的土壤问题,对水稻生长地区的粮食安全构成了大威胁。本研究评估了在诱导干旱和盐度条件下使用形态学和生理学参数的11种水稻基因型的性能。温室中的塑料袋中的5公斤均匀土壤升高了幼苗。对于干旱实验,每袋均每天两次用200毫升水浇水,直至植物达到五叶阶段,当浇水悬浮2周时,用于干旱胁迫植物,但未悬浮于对照植物。实验是2 11因子,并使用完全随机化设计进行了三种复制的设置。数据采用植物高度,分蘖数,叶子长度,绿叶数量,死叶数,叶片滚动得分(LRS)和水损失率。盐度实验以类似的方式设立,不同之处在于植物每天灌溉两次2周,其中含有0mM NaCl或75 mm的200ml处理溶液,并在植物身高上收集数据,耕击数,射击新鲜重量,芽干重,Na +和K〜+浓度,相对含水量和叶绿素含量。使用Genstat软件第10版和使用最不显着差异测试分离的方式,对来自两个实验的数据进行分析。针对每个参数计算单个应力响应指数(ISRI)和用于分组品种的手段。评价的基因型,四(Faro 44,Nerica 2,NericA 8和NericA 8)被鉴定为适度耐受的耐受性,两个(NERICA 4和FARO 57),而其余部分被发现对干旱敏感。同样地,两个品种(Faro 44和Ram 137)在盐度筛选中脱颖而出,作为耐受品种,五个是适度耐受的,而四个(Faro 64,Faro 52,Nerica 2和Faro 55)显然易感。 Faro 44是唯一对干旱和盐度耐受性的唯一基因型。来自该研究的已鉴定的干旱和盐度耐受水稻基因型可以作为未来育种和盐度耐受性的未来繁殖计划的遗传来源。

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