首页> 外文OA文献 >COMPARISON BETWEEN HYDRO- AND OSMO-PRIMING TO DETERMINE PERIOD NEEDED FOR PRIMING INDICATOR AND ITS EFFECT ON GERMINATION PERCENTAGE OF AEROBIC RICE CULTIVARS (Oryza sativa L.)
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COMPARISON BETWEEN HYDRO- AND OSMO-PRIMING TO DETERMINE PERIOD NEEDED FOR PRIMING INDICATOR AND ITS EFFECT ON GERMINATION PERCENTAGE OF AEROBIC RICE CULTIVARS (Oryza sativa L.)

机译:水和渗透浓度确定启动指示剂所需时间的比较及其对需氧水稻品种发芽率的影响

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摘要

This study compared hydro and osmo-priming to determine period needed for seed priming indicator to emerge and its effect against water stress on germination percentage of some aerobic rice cultivars (Oryza sativa L.). Experiments were arranged in completely randomized design using three aerobic rice cultivars and PEG with four replications. Rice varieties (Inpago-8, IR64 and Situ Bagendit) were combined with four different PEG concentrations. Drought stress was simulated by different PEG solutions and with distilled water as control. Results indicated differentiations between hydro and on priming indicator time, while varietal difference was not significant. Fastest recorded time was obtained between 30-36 hours under hydro priming, PEG 100 g L-1 (63-69 hours) and 83-93 hours in PEG 200 g L-1 solution. Thus showing increased solution concentration led to prolonged priming indicator time. The highest germination percentage was obtained in Situ Bagendit treated with PEG 200 mg L-1 (90.25%) and the lowest obtained in Inpago-8 (75.75%) under control. It is better to use osmo-priming (PEG 200 g L-1) for teaching aerobic rice seed against drought stress. More research is needed to confirm benefits of seed treatment with PEG to cultivated crops under water stress, drought and salinity conditions.
机译:这项研究比较了水力和渗透启动,以确定种子启动指示物出现所需的时间,以及其对水分胁迫对某些有氧水稻品种(Oryza sativa L.)发芽率的影响。使用三个有氧水稻品种和PEG,重复四次,以完全随机的设计安排实验。水稻品种(Inpago-8,IR64和Situ Bagendit)与四种不同的PEG浓度结合使用。通过不同的PEG溶液并以蒸馏水为对照模拟干旱胁迫。结果表明水力时间和启动指示时间之间存在差异,而品种差异不显着。在加水引发下30-36小时,PEG 100 g L-1(63-69小时)和PEG 200 g L-1溶液中83-93小时之间获得了最快的记录时间。因此显示溶液浓度增加导致启动指示剂时间延长。 PEG 200 mg L-1处理的原位Bagendit发芽率最高(90.25%),而Inpago-8处理的发芽率最低(75.75%)。最好使用渗透灌注(PEG 200 g L-1)来指导好氧水稻种子抗干旱。需要更多的研究来证实在水分胁迫,干旱和盐度条件下,PEG处理种子对栽培作物的益处。

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