Hasil Sembiring, Erythrina Erythrina, Aris Pramudia, Nuning A. Subekti, Dedi Nugraha, Bhakti Priatmojo, Priatna Sasmita, Asmanur Jannah
{"title":"印尼海水入侵区不同水分管理和微生物施用对水稻产量的影响","authors":"Hasil Sembiring, Erythrina Erythrina, Aris Pramudia, Nuning A. Subekti, Dedi Nugraha, Bhakti Priatmojo, Priatna Sasmita, Asmanur Jannah","doi":"10.4067/s0718-58392023000500510","DOIUrl":null,"url":null,"abstract":"Primary risk to rice (Oryza sativa L.) production is salinity intrusion and water scarcity, leading to a shortage of irrigation water and yield reduction. We examine the impactâs effects of alternate wetting and drying (AWD) vs. continuous flooding (CF) and microbe application on yields of three rice cultivars (Ciherang, Inpari 34 Salin Agritan, Inpari 35 Salin Agritan) grown under slight and moderate soil salinity in the dry season (DS) 2017 and 2018. Under slight soil salinity, AWD and CF had nonsignificant difference in grain yield. Under a moderate soil salinity level, there was a substantial decrease in grain yield (8.2%), number of productive tillers, seeds panicle-1, and weight of 1000 grains with the plants grown under AWD. Increased soil salinity levels resulted in lower yield reduction with microbial than without microbial treatments. âCiherangâ showed superiority over âInpari 34â and âInpari 35â under AWD at slight soil salinity. However, the yield reduction in the moderate salinity level was more remarkable for âCiherangâ (18.1%) than âInpari 34â and âInpari 35â (9.7%) as salinity-tolerant varieties. The AWD used almost one-third less irrigation supplement than CF. This greatly assists small farmers in reducing the additional cost of pumping water. On average, AWD improved total water productivity by 32.7% under slight and 20.4% under moderate soil salinity over CF. Here, we lay out the potential for small farmers in slight salinity lowlands areas of the northern coast of Java to apply AWD during the DS. Farmers could manage water efficiently to prevent further yield loss and improve farm profitably.","PeriodicalId":49091,"journal":{"name":"Chilean Journal of Agricultural Research","volume":"148 1","pages":"0"},"PeriodicalIF":1.5000,"publicationDate":"2023-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Impact of different water management and microbe application on yield of rice cultivars under seawater intrusion areas of Indonesia\",\"authors\":\"Hasil Sembiring, Erythrina Erythrina, Aris Pramudia, Nuning A. Subekti, Dedi Nugraha, Bhakti Priatmojo, Priatna Sasmita, Asmanur Jannah\",\"doi\":\"10.4067/s0718-58392023000500510\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Primary risk to rice (Oryza sativa L.) production is salinity intrusion and water scarcity, leading to a shortage of irrigation water and yield reduction. We examine the impactâs effects of alternate wetting and drying (AWD) vs. continuous flooding (CF) and microbe application on yields of three rice cultivars (Ciherang, Inpari 34 Salin Agritan, Inpari 35 Salin Agritan) grown under slight and moderate soil salinity in the dry season (DS) 2017 and 2018. Under slight soil salinity, AWD and CF had nonsignificant difference in grain yield. Under a moderate soil salinity level, there was a substantial decrease in grain yield (8.2%), number of productive tillers, seeds panicle-1, and weight of 1000 grains with the plants grown under AWD. Increased soil salinity levels resulted in lower yield reduction with microbial than without microbial treatments. âCiherangâ showed superiority over âInpari 34â and âInpari 35â under AWD at slight soil salinity. However, the yield reduction in the moderate salinity level was more remarkable for âCiherangâ (18.1%) than âInpari 34â and âInpari 35â (9.7%) as salinity-tolerant varieties. The AWD used almost one-third less irrigation supplement than CF. This greatly assists small farmers in reducing the additional cost of pumping water. On average, AWD improved total water productivity by 32.7% under slight and 20.4% under moderate soil salinity over CF. Here, we lay out the potential for small farmers in slight salinity lowlands areas of the northern coast of Java to apply AWD during the DS. 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Impact of different water management and microbe application on yield of rice cultivars under seawater intrusion areas of Indonesia
Primary risk to rice (Oryza sativa L.) production is salinity intrusion and water scarcity, leading to a shortage of irrigation water and yield reduction. We examine the impactâs effects of alternate wetting and drying (AWD) vs. continuous flooding (CF) and microbe application on yields of three rice cultivars (Ciherang, Inpari 34 Salin Agritan, Inpari 35 Salin Agritan) grown under slight and moderate soil salinity in the dry season (DS) 2017 and 2018. Under slight soil salinity, AWD and CF had nonsignificant difference in grain yield. Under a moderate soil salinity level, there was a substantial decrease in grain yield (8.2%), number of productive tillers, seeds panicle-1, and weight of 1000 grains with the plants grown under AWD. Increased soil salinity levels resulted in lower yield reduction with microbial than without microbial treatments. âCiherangâ showed superiority over âInpari 34â and âInpari 35â under AWD at slight soil salinity. However, the yield reduction in the moderate salinity level was more remarkable for âCiherangâ (18.1%) than âInpari 34â and âInpari 35â (9.7%) as salinity-tolerant varieties. The AWD used almost one-third less irrigation supplement than CF. This greatly assists small farmers in reducing the additional cost of pumping water. On average, AWD improved total water productivity by 32.7% under slight and 20.4% under moderate soil salinity over CF. Here, we lay out the potential for small farmers in slight salinity lowlands areas of the northern coast of Java to apply AWD during the DS. Farmers could manage water efficiently to prevent further yield loss and improve farm profitably.
期刊介绍:
ChileanJAR publishes original Research Articles, Scientific Notes and Reviews of agriculture, multidisciplinary and agronomy: plant production, plant protection, genetic resources and biotechnology, water management, soil sciences, environment, agricultural economics, and animal production (focused in ruminant feeding). The editorial process is a double-blind peer reviewing, Editorial Office checks format, composition, and completeness, which is a requirement to continue the editorial process. Editorial Committee and Reviewers evaluate relevance and scientific merit of manuscript.