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Endophytic Bacillus megaterium BM18-2 mutated for cadmium accumulation and improving plant growth in Hybrid Pennisetum

机译:内生巨大芽孢杆菌BM18-2突变,可积累杂种狼尾草中的镉并改善植物的生长

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Hybrid Pennisetum ( Pennisetum americanum? ×? P. purpureum Schumach L.) is a tall and rapidly growing perennial Csub4/sub bunch grass. It has been considered as a promising plant for phytoremediation of heavy metal-contaminated soil due to its high biomass, high resistance to environmental stress, pests and diseases. Heavy metal bioavailability level is the most important parameter for measurement of the phytoremediation efficiency. Endophytic bacteria were used to further enhance phytoremediation of heavy metals through bioaccumulation or bioabsorption process. In the present study, the endophytic Bacillus megaterium strain ‘BM18’ isolated from hybrid Pennisetum was screened under 10-70?μM cadmium (Cd) stress for Cd-resistant mutant colonies. And one such mutant colony‘BM18-2’ was obtained from the screen. Comparably, ‘BM18-2’ was more Cd-tolerant and had higher Cd removal ability than the original strain‘BM18’. The amount of IAA and ammonia production, and phosphate solubilization were 1.09, 1.23 and 1.24 times in ‘BM18-2’ than those of ‘BM18’, respectively. Full genome sequencing of these two strains revealed 6 different genes: BM18GM000901 , BM18GM005669 and BM18GM005870 encoding heavy metal efflux pumps, BM18GM003487 and BM18GM005818 encoding transcriptional regulators for metal stress biosensor and BM18GM001335 encoding a replication protein. Inoculation with ‘BM18-2’ or ‘BM18’ both significantly reduced the toxic effect of Cd on hybrid Pennisetum , while the effect of ‘BM18-2’ on plant growth promotion in the presence of Cd was significantly better that of ‘BM18’. Therefore, the mutated strain ‘BM18-2’ could be used as a potential agent for Cd bioremediation, improving growth and Cd absorption of hybrid Pennisetum in Cd contaminated soil.
机译:杂交狼尾草(Pensetet americanum?×?P. purpureum Schumach L.)是一种高大且生长迅速的多年生C 4 束草。由于其高生物量,对环境压力,病虫害的高抵抗力,它被认为是对重金属污染土壤进行植物修复的有前途的植物。重金属生物利用度水平是衡量植物修复效率的最重要参数。内生细菌用于通过生物积累或生物吸收过程进一步增强重金属的植物修复作用。在本研究中,在10-70?μM镉(Cd)胁迫下筛选了耐Cd的突变菌落,筛选了从杂交狼尾草分离的内生芽孢杆菌BM18菌株。从屏幕上获得了一个这样的突变菌落“ BM18-2”。相比之下,“ BM18-2”比最初的菌株“ BM18”具有更强的Cd耐受性和更高的Cd去除能力。 “ BM18-2”的IAA和氨生成量以及磷酸盐增溶量分别是“ BM18”的1.09倍,1.23倍和1.24倍。这两个菌株的全基因组测序揭示了6个不同的基因:编码重金属外排泵的BM18GM000901,BM18GM005669和BM18GM005870,编码金属应激生物传感器转录调节子的BM18GM003487和BM18GM005818以及编码复制蛋白的BM18GM001335。接种'BM18-2'或'BM18'均可显着降低Cd对杂交狼尾草的毒害作用,而'BM18-2'在Cd存在下对促进植物生长的作用明显优于'BM18'。因此,突变菌株“ BM18-2”可作为潜在的镉生物修复剂,改善杂种狼尾草在镉污染土壤中的生长和对镉的吸收。

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