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Isolation characterization and selection of indigenous Bradyrhizobium strains with outstanding symbiotic performance to increase soybean yields in Mozambique

机译:具有出色共生性能以提高莫桑比克大豆产量的本地缓生根瘤菌菌株的分离表征和选择

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摘要

Soybean inoculation with effective rhizobial strains makes unnecessary the use of N-fertilizers in the tropics. A frequently reported problem is the failure of the inoculant strains to overcome the competition imposed by indigenous rhizobial populations. The screening of indigenous rhizobia, already adapted to local conditions, searching for highly effective strains for use as inoculants represents a promising strategy in overcoming inoculation failure. The objective of this study was to isolate and characterize indigenous rhizobia and to identify strains that hold potential to be included in inoculant formulations for soybean production, with both promiscuous and non-promiscuous soybean cultivars, in Mozambican agro-climatic conditions. A total of 105 isolates obtained from nodules of promiscuous soybean grown at 15 sites were screened for N2-fixation effectiveness in the greenhouse along with five commercial strains. Eighty-seven isolates confirmed the ability to form effective nodules on soybean and were used for genetic characterization by rep-PCR (BOX) and sequencing of the 16S rRNA gene, and also for symbiotic effectiveness. BOX-PCR fingerprinting revealed remarkable genetic diversity, with 41 clusters formed, considering a similarity level of 65%. The 16S rRNA analysis assigned the isolates to the genera Bradyrhizobium (75%) and Agrobacterium/Rhizobium (25%). Great variability in symbiotic effectiveness was detected among the indigenous rhizobia from Mozambique, with ten isolates performing better than the commercial strain B. diazoefficiens USDA 110, the best reference strain, and 51 isolates with lower performance than all reference strains. Thirteen of the best isolates from the first greenhouse trial were evaluated, along with the five commercial strains, in two promiscuous (TGx 1963-3F and TGx 1835-10E) and one non-promiscuous (BRS 284) soybean cultivars in a second greenhouse trial. In general the promiscous soybeans responded better to inoculation. The 13 isolates were also characterized for tolerance to acidity and alkalinity (pH 3.5 and 9.0, respectively), salinity (0.1, 0.3 and 0.5 mol L−1 of NaCl) and high temperatures (35, 40 and 45 °C) in vitro. Five isolates, three (Moz 4, Moz 19 and Moz 22) belonging to the superclade B. elkanii and two (Moz 27 and Moz 61) assigned to the superclade B. japonicum, consistently showed high symbiotic effectiveness, suggesting that the inoculation with indigenous rhizobia adapted to local conditions represents a possible strategy for increasing soybean yields in Mozambique. Phylogenetic position of the five elite isolates was confirmed by the MLSA with four protein-coding housekeeping genes, dnaK, glnII, gyrB and recA.
机译:在有效的根瘤菌菌株中接种大豆,使得在热带地区不必要使用氮肥。一个经常报告的问题是,接种菌株无法克服土著根瘤菌种群带来的竞争。筛选已经适应当地条件的本土根瘤菌,寻找用作接种剂的高效菌株,是克服接种失败的一种有前途的策略。这项研究的目的是分离和鉴定本地根瘤菌,并鉴定在莫桑比克农业气候条件下,无论杂种和非杂种大豆品种,都有可能被包括在大豆生产孕育剂中的菌株。筛选了从15个位点生长的杂豆结节中获得的105个分离株与5个商业菌株在温室中的N2固定效果。八十七株分离物证实了在大豆上形成有效结节的能力,并通过rep-PCR(BOX)和16S rRNA基因测序进行了遗传表征,还用于共生有效性。 BOX-PCR指纹图谱显示了显着的遗传多样性,考虑到65%的相似性水平,形成了41个簇。通过16S rRNA分析,将分离株归为Bradyrhizobium(75%)和农杆菌/ Rhizobium(25%)。在来自莫桑比克的本地根瘤菌中共生功效的差异很大,其中十种菌株的表现优于商品菌株B. diazoefficiens USDA 110(最佳参考菌株),而51种菌株的性能低于所有参考菌株。在第二个温室试验中,对两个杂种(TGx 1963-3F和TGx 1835-10E)和一个非杂种(BRS 284)大豆品种中,评估了第一次温室试验中的13种最佳分离株以及5种商品菌株。 。通常,杂豆对接种反应更好。 13个分离株还具有耐酸碱度(分别为pH 3.5和9.0),盐度(0.1、0.3和0.5mol L -1 NaCl)和高温(35、40和45°C)。五个分离株,其中三个(Moz 4,Moz 19和Moz 22)属于超级包涵体B. elkanii,两个分离物(Moz 27和Moz 61)属于超级包涵体B. japonicum,始终表现出很高的共生效果,这表明接种土著适应当地条件的根瘤菌是提高莫桑比克大豆单产的可能策略。通过具有四个蛋白质编码管家基因dnaK,glnII,gyrB和recA的MLSA确认了这五个优良分离株的系统发生位置。

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