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Selection of type A and type B strains for improving symbiotic effectiveness on non-Rj and Rj(4) genotype soybean varieties

机译:A A型和B型菌株的选择,用于改善非RJ和RJ(4)基因型大豆品种的共生效果

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The selection of effective rhizobia for higher efficiency nitrogen fixation is one of the most important steps for inoculant production. Therefore, this experiment was conducted to select the most effective type A and type B strains for specific Rj-gene harboring soybean varieties and to test the symbiotic effectiveness of selected strains on different Rj-gene harboring soybean varieties. Screening experiments using the specific soybean varieties were done with a completely randomized design and three replications in this study. Evaluation of the effective Myanmar Bradyrhizobium strains for plant growth, nodulation and N-2 fixation were studied in pot experiments using sterilized vermiculite in the Phytotron (controlled-environmental condition). Then, a pot experiment was conducted using Futsukaichi soil in the screen house (natural environmental condition). The N-2 fixation ability of soybean was evaluated by acetylene reduction activity (ARA) and the relative ureide index method. In the first screening experiment, type A and type B strains with higher nitrogen fixation and proper nodulation on their respective soybean cultivars were selected for the next screening. In the second screening, Bradyrhizobium elkanii AHY3-1 (type A), Bradyrhizobium japonicum SAY3-7 (type A), B. elkanii BLY3-8 (type B) and B. japonicum SAY3-10 (type B) isolates, which showed higher nitrogen fixation and nodulation in Yezin-3 (Rj(4)) and Yezin-6 (non-Rj), were selected for the next experiment. In the third screening experiment, SAY3-7 and BLY3-8, which had higher nitrogen fixing potential and proper nodulation, were selected as effective isolates. These two isolates were compatible with non-Rj and Rj(4) soybean varieties for nodulation and nitrogen fixation. Based on the results of the screening experiment, these two strains were tested for their symbiotic efficacy in Futsukaichi soil. This study shows that inoculation treatment of SAY3-7 and BLY3-8 significantly increased plant growth, nodulation, and N-2 fixation at the V6, R3.5 and R8 stages in Yezin-3 (Rj(4)) and/or Yezin-6 (non-Rj), and the seed yield at R8 stage, in Yezin-3 (Rj(4)) and Yezin-6 (non-Rj) soybean varieties compared with the control treatment. It can be concluded that SAY3-7 and BLY3-8 are suitable for inoculant production because of their higher nitrogen fixation ability, proper nodulation and better productivity of Myanmar soybean cultivars.
机译:为更高效率的氮固定选择有效的根瘤菌是陶瓷植物产生的最重要的步骤之一。因此,进行该实验以选择含大豆品种的特异性RJ-基因的最有效的A和B型B株,并在不同RJ-基因携带大豆品种的不同RJ-基因上测试所选菌株的共生效果。使用特定大豆品种的筛选实验用全部随机设计和本研究的三种复制进行。在植物植物(控制 - 环境条件下)使用灭菌的蛭石对植物生长,染色和N-2固定进行植物生长,染色和N-2固定的有效缅甸溴喹啉菌株。然后,在屏幕房屋(自然环境条件)中使用Futsukaichi土壤进行罐实验。通过乙炔还原活性(ARA)和相对硫化物指数法评估大豆的N-2固定能力。在第一筛选实验中,选择A型和型B型具有较高的氮固定和适当染色的它们各自的大豆品种的培训,用于下一个筛选。在第二筛选中,Bradyrhizobium Elkanii Ahy3-1(A型),Bradyrhizobium japonicum say3-7(A型),B.Elkanii Bly3-8(B)和B.Paponicum Say3-10(B)分离株,显示出来选择yezin-3(RJ(4))和yezin-6(非RJ)中较高的氮固定和结节,用于下一个实验。在第三筛选实验中,选择具有较高的氮固定电位和适当染色的BLY3-8的STAY3-7和BLY3-8作为有效的分离物。这两种分离株与非RJ和RJ(4)大豆品种相容,用于瘤瘤和氮固定。基于筛选实验的结果,对Futsukaichi土壤中的它们进行了共生效果来测试这两种菌株。本研究表明,在yezin-3(RJ(4))和/或yezin的V6,R3.5和R8阶段的植物生长,旋转和N-2固定的接种治疗显着增加了植物生长,旋转和N-2固定-6(非RJ)和R8阶段的种子产量,与对照处理相比,Yezin-3(RJ(4))和Yezin-6(非RJ)大豆品种。可以得出结论,Say3-7和Bly3-8适用于孕育能力较高,适当的染色能力,缅甸大豆品种的优质促进剂。

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