Effect of Methanotroph Bacteria Isolated from Paddy Rice Plant (Oryza sativa L.) on Growth and Yield Components of Rice

IF 1.5 Q2 AGRONOMY International Journal of Agronomy Pub Date : 2022-08-02 DOI:10.1155/2022/9639326
A. Sahur, A. Yassi, E. Syam'un, F. Ulfa, A. Bahrun, F. Djufry, N. Widiayani
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Abstract

The present study was initiated to determine whether isolates from soil and roots of paddy plants can affect the paddy plant’s growth and productivity. The study was conducted to answer the question, “Can paddy rice be grown when the NPK doze is reduced?” This study aims to apply the methanotroph bacteria on the growth and production of lowland rice. The research field was carried out in the rice fields of Amparita Village, TelluLimpoe District, Sidenreng Rappang Regency, South Sulawesi. This research was conducted from June to September 2020. The plants were arranged in a split plot Randomized Complete Block Design (RCBD), the main plot, namely, the NPK fertilizer dosage treatment (P) with 4 treatments, namely, without NPK fertilizer, 75 g/plot, 150 g/plot, and 360 g/plot. The subplots were methanotroph bacteria application with 4 treatments, namely: without bacteria, 106 CFU per ml of methanotroph, 107 CFU per ml of methanotroph, and 108 CFU per ml of methanotroph. The results showed that there was an interaction between the NPK fertilizer and methanotrophic bacteria. The best results were obtained on the combination of 360 g per plot of NPK fertilizer and methanotrophic bacteria with 106 CFU per ml on the observation of plant height (111.17 cm), and the combination of NPK fertilizer 0 g per plot and methanotrophic bacteria with 0 CFU per ml on the observation of fresh weight of grain was the highest (70.44 g), whereas the combination of NPK fertilizer treatment 360 g/plot and bacteria methanotroph 0 CFU per ml on the observation of dry weight of grain was 43.89 g. NPK fertilizer 360 g/plot and bacteria methanotroph 106 CFU per ml at an observation weight of 100 grains was the highest number (3.53 g).
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水稻脱甲烷菌对水稻生长和产量构成的影响
本研究旨在确定水稻植株土壤和根系分离株是否会影响水稻植株的生长和生产力。这项研究是为了回答“氮磷钾减少后,水稻还能生长吗?”本研究旨在将甲烷氧化菌应用于低地水稻的生长和生产。研究领域是在南苏拉威西岛Sidenreng Rappang县TelluLimpoe区Amparita村的稻田中进行的。该研究于2020年6月至9月进行。试验采用随机完全区组设计(RCBD),主区进行氮磷钾肥料用量处理(P),分为不施氮磷钾、75 g/块、150 g/块和360 g/块4个处理。亚图采用4种处理,分别为无菌处理、106 CFU / ml甲烷化养菌处理、107 CFU / ml甲烷化养菌处理和108 CFU / ml甲烷化养菌处理。结果表明,氮磷钾肥与甲烷营养菌之间存在相互作用。在观察株高(111.17 cm)时,每地块施用360 g氮磷钾与106 CFU / ml的甲烷营养细菌组合效果最好,在观察鲜重(70.44 g)时,每地块施用0 g氮磷钾与0 CFU / ml的甲烷营养细菌组合效果最好。而氮磷钾肥处理360 g/块和产甲烷细菌0 CFU / ml的组合,观察籽粒干重为43.89 g。观察重100粒时,氮磷钾肥料360 g/田,甲烷化细菌106 CFU / ml,数量最多(3.53 g)。
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来源期刊
CiteScore
3.60
自引率
5.30%
发文量
66
审稿时长
16 weeks
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