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Endophyte-assisted promotion of biomass production and metal-uptake of energy crop sweet sorghum by plant-growth-promoting endophyte Bacillus sp. SLS18

机译:内生菌通过促进植物生长的内生芽孢杆菌Bacillus sp。促进能量作物甜高粱的生物量生产和金属吸收。 SLS18

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摘要

The effects of Bacillus sp. SLS18, a plant-growth-promoting endophyte, on the biomass production and Mn/Cd uptake of sweet sorghum (Sorghum bicolor L.), Phytolacca acinosa Roxb., and Solanum nigrum L. were investigated. SLS18 displayed multiple heavy metals and antibiotics resistances. The strain also exhibited the capacity of producing indole-3-acetic acid, siderophores, and 1-aminocyclopropane-1-carboxylic acid deaminase. In pot experiments, SLS18 could not only infect plants effectively but also significantly increase the biomass of the three tested plants in the presence of Mn/Cd. The promoting effect order of SLS18 on the biomass of the tested plants was sweet sorghum > P. acinosa > S. nigrum L. In the presence of Mn (2,000 mg kg−1) and Cd (50 mg kg−1) in vermiculite, the total Mn/Cd uptakes in the aerial parts of sweet sorghum, P. acinosa, and S. nigrum L. were increased by 65.2%/40.0%, 55.2%/31.1%, and 18.6%/25.6%, respectively, compared to the uninoculated controls. This demonstrates that the symbiont of SLS18 and sweet sorghum has the potential of improving sweet sorghum biomass production and its total metal uptake on heavy metal-polluted marginal land. It offers the potential that heavy metal-polluted marginal land could be utilized in planting sweet sorghum as biofuel feedstock for ethanol production, which not only gives a promising phytoremediation strategy but also eases the competition for limited fertile farmland between energy crops and food crops.
机译:芽孢杆菌属的影响。研究了促进植物生长的内生植物SLS18对甜高粱(Sorghum bicolor L。),Phytolacca acinosa Roxb。和Solanum nigrum L.的生物量产生和Mn / Cd吸收的影响。 SLS18显示出多种重金属和抗生素抗性。该菌株还表现出产生吲哚-3-乙酸,铁载体和1-氨基环丙烷-1-羧酸脱氨酶的能力。在盆栽实验中,SLS18不仅可以有效地感染植物,而且在存在Mn / Cd的情况下还可以显着增加三种被测植物的生物量。 SLS18对受试植物生物量的促进作用顺序为甜高粱>野果李子>黑曲霉。在Mn(2,000 mg kg -1 )和Cd(50 mg)存在下kg −1 )的,石中,甜高粱,P。acinosa和S. nigrum L.的空中部分的Mn / Cd吸收总量分别增加了65.2%/ 40.0%,55.2%/与未接种的对照组相比,分别为31.1%和18.6%/ 25.6%。这表明SLS18和甜高粱的共生体具有改善甜高粱生物量生产及其在重金属污染边缘土地上的总金属吸收的潜力。它提供了将重金属污染的边缘土地用于种植甜高粱作为乙醇生产的生物燃料的潜力,这不仅提供了有希望的植物修复策略,而且还缓解了能源作物和粮食作物之间有限肥沃农田的竞争。

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