Growth and Yield Comparison of Rice Plants Treated with Encapsulated Trichoderma asperellum (UPM 40) in Response to Drought Stress

IF 0.6 Q3 AGRICULTURE, MULTIDISCIPLINARY Pertanika Journal of Tropical Agricultural Science Pub Date : 2023-07-18 DOI:10.47836/pjtas.46.3.09
Iffatul Arifah Yusup, Martini Mohammad Yusoff, M. Ismail, Z. Berahim, Fariz Adzmi
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Abstract

During low rainfall periods, rice plants often face drought stress, which would significantly affect rice yield. One of the methods to mitigate the problem is incorporating rice plants with fungi such as Trichoderma. This study evaluated the effects of encapsulated Trichoderma asperellum (UPM 40) on the growth and yield of rice plants planted in saturated and flooded soil conditions in response to drought stress. A randomized complete block factorial design was implemented with four replications and two factors. The first factor was encapsulated T. asperellum (UPM 40) concentration of 0 and 5 g. The second factor was the soil condition: saturated and flooded soil. The drought stress was imposed by halting watering during early anthesis for 14 days and resumed afterward. One of the significant interaction effects detected was on the relative water content of rice plants planted in flooded soil conditions and treated with T. asperellum (UPM 40), where the value was 78.51%, higher than the control of 72.09%, which showed the ability of the fungus to help rice plants alleviate detrimental effects of drought stress and delay the onset of adverse effects of drought stress. Thus, it contributed to the crop’s simultaneous improvement in rice yield compared to untreated plants in saturated soil. Applying 5 g encapsulated T. asperellum (UPM 40) to the rice plants would perform best in flooded soil conditions during drought stress.
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微孢子木霉(UPM40)处理水稻对干旱胁迫的生长和产量比较
在低降雨量时期,水稻植株经常面临干旱胁迫,这将严重影响水稻产量。缓解这一问题的方法之一是将水稻植物与木霉等真菌结合。本研究评估了在干旱胁迫下,在饱和和淹水土壤条件下种植的封装木霉(UPM40)对水稻生长和产量的影响。采用四个重复和两个因素进行随机完全区组析因设计。第一个因素是0和5g的封装T.asperellum(UPM40)浓度。第二个因素是土壤条件:饱和和淹水土壤。干旱胁迫是在开花初期停止浇水14天,然后再恢复。检测到的显著交互作用之一是对种植在淹水土壤条件下并用T.asperellum(UPM40)处理的水稻植株的相对含水量的影响,其值为78.51%,高于对照的72.09%,这表明真菌有能力帮助水稻植物减轻干旱胁迫的不利影响,并延缓干旱胁迫不利影响的发生。因此,与饱和土壤中未经处理的植物相比,它有助于该作物同时提高水稻产量。在干旱胁迫期间,将5g封装的T.asperellum(UPM40)施用于水稻植株将在淹水土壤条件下表现最佳。
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来源期刊
Pertanika Journal of Tropical Agricultural Science
Pertanika Journal of Tropical Agricultural Science Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.10
自引率
16.70%
发文量
64
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