促生根瘤菌(PGPR)对水稻种子生长和产量的影响

F. Fitriani, Yulida Amri, S. Bahri, Fara Nadilla
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引用次数: 0

摘要

背景:果果水稻是一种可以在旱地上种植的水稻,产量生产力水平为2.57吨/公顷。因此,有必要利用PGPR进行种子生物诱变,以提高gogo水稻的生长和生产力。本研究的目的是确定使用PGPR的beni生物配置技术对gogo水稻生长和生产力的影响。方法:本研究采用由7个处理和5个重复组成的RAK。数据分析使用5%置信水平的方差分析,并继续进行BNT检验。结果:生物改良培养基与PGPR结合使用,可使陆稻茎高分别提高104.2cm、117cm和133.3,在8、10和12MST时分蘖数分别为7、13和15。此外,它还可以增加14、22.6厘米和2.1克的圆锥花序数量、100粒的长度和重量。结论:采用PGPR复合生物条件培养基可以提高gogo水稻的生长和产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Response of Seed Bioinvoguration with Plant Growth Promoting Rhizobacteria (PGPR) on Growth and Productivity of Rice gogo
Background: Gogo rice is a type of rice that can be cultivated on dry land with a yield productivity level of 2.57 tons / Ha. So it is necessary to make efforts to increase the growth and productivity of gogo rice through seed bio-inviguration using PGPR. The purpose of this study was to determine the effect of beni bioinviguration techniques using PGPR on the growth and productivity of gogo rice. Method: This study used a RAK consisting of 7 treatments and 5 replications. Data analysis used ANOVA at the 5% confidence level and continued with the BNT test. Result: The results showed that the use of biomatriconditioning medium integrated with PGPR could increase the stem height of upland rice by 104.2 cm, 117 cm, and 133.3, the number of tillers were 7, 13 and 15 at the age of 8, 10, and 12 MST. In addition, it can also increase the number of panicles, the length and weight of 100 grains of 14, 22.6 cm and 2.1 grams. Conclusion: the use of biomatriconditioning medium integrated with PGPR can increase the growth and productivity of gogo rice.
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