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首页> 外文期刊>Plant Physiology and Biochemistry >Multi-stress tolerant PGPR Bacillus xiamenensis PM14 activating sugarcane (Saccharum officinarum L.) red rot disease resistance
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Multi-stress tolerant PGPR Bacillus xiamenensis PM14 activating sugarcane (Saccharum officinarum L.) red rot disease resistance

机译:多应力耐受性PGPR Bacillus Xiamenensis PM14活化甘蔗(Saccharum OfficinArum L.)红腐抗病

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Sustainability in crop production has emerged as one of the most important concerns of present era's agricultural systems. Plant growth promoting bacteria (PGPB) has been characterized as a set of microorganisms used for enhancing plant growth and a tool for biological control of phytopathogens. However, the inconsistent performance of these bacteria from laboratory/greenhouse to field level has emerged due to prevailing abiotic stresses in fields. Sugarcane crop encounters a combination of biotic and abiotic stresses during its long developmental stages. Nevertheless, the selection of antagonistic PGPB with abiotic stress tolerance would be beneficial for end-user by the successful establishment of product with required effects under field conditions. Stress tolerant Bacillus xiamenensis strain (PM14) isolated from the sugarcane rhizosphere grown in the fields was examined for various PGP activities, enzyme assays, and antibiotic resistance. Strain was screened for in vitro tolerance against drought, salinity, heat stress, and heavy metal toxicity. Inhibition co-efficient of B. xiamenensis PM14 was also calculated against six phyto-pathogenic fungi, including Colletotrichum falcatum (53.81), Fusarium oxysporum (68.24), Fusarium moniliforme (69.70), Rhizoctonia solani (71.62), Macrophomina phaseolina (67.50), and Pythium splendens (77.58). B. xiamenensis is reported here for the first time as the rhizospheric bacterium which possesses resistance against 12 antibiotics and positive results for all in vitro PGP traits except HCN production. Role of 1-aminocyclopropane-1-carboxylate deaminase in the amelioration of biotic and abiotic stress was also supported by the amplification of acds gene. Moreover, in vitro and in vivo experiments revealed B. xiamenensis as the potential antagonistic PGPR and bio-control agent. Results of greenhouse experiment against sugarcane red rot indicated that inoculation of B. xiamenensis to sugarcane plants could suppress the disease symptoms and enhance plant growth. Augmented production of antioxidative enzymes and proline content may lead to the induced systemic resistance against red rot disease of sugarcane. Thus, the future application of native multi-stress tolerant bacteria as bio-control agents in combination with current heat, drought, salinity, and heavy metal tolerance strategy could contribute towards the global food security.
机译:作物生产的可持续性已成为现代时代农业系统最重要的关切之一。植物生长促进细菌(PGPB)的特征在于用于增强植物生长的一组微生物,以及植物病变的生物控制工具。然而,由于在田地中普遍的非生物胁迫,这些细菌对实验室/温室与现场水平的不一致性能。甘蔗作物在其长发育阶段期间遇到生物和非生物胁迫的组合。尽管如此,通过在现场条件下成功建立具有所需效应的产品,对无非胁迫耐受性的拮抗PGPB的选择将有利于最终用户。研究了从田间生长的甘蔗根际分离的应激耐受性脑血管瘤患者(PM14)用于各种PGP活性,酶测定和抗生素抗性。筛选菌株的体外耐受抗旱,盐度,热应激和重金属毒性。抑制B. Xiamenensis PM14的抑制作用对抗六种植物病原真菌,包括Collettrichum Falcatum(53.81),镰刀菌(68.24),镰刀菌Moniliforme(69.70),Rhizoctonia solani(71.62),麦芽米纳(67.50),和蟒蛇多升(77.58)。 B. Xiamenensis在这里首次报告为疏散性细菌,其具有除了HCN生产外的所有体外PGP特征的抗生素和阳性结果的障碍细菌。通过扩增ACDS基因,还支持1-氨基环丙烷-1-羧酸盐脱氨酶在生物和非生物胁迫的改善中的作用。此外,体外和体内实验揭示了Xiamenensis作为潜在的拮抗PGPR和生物对照剂。甘蔗红腐温室实验的结果表明,接种B. Xiamenensis对甘蔗植物可以抑制疾病症状和增强植物生长。增强抗氧化酶和脯氨酸含量的产生可能导致诱导甘蔗红腐病的全身性抗性。因此,天然多应力耐耐受细菌的未来应用与目前的热,干旱,盐度和重金属公差策略组合的生物对照剂可能导致全球粮食安全。

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