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首页> 外文期刊>Indian Journal of Experimental Biology >Exogenous expression of ACC deaminase gene in psychrotolerant bacteria alleviates chilling stress and promotes plant growth in millets under chilling conditions
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Exogenous expression of ACC deaminase gene in psychrotolerant bacteria alleviates chilling stress and promotes plant growth in millets under chilling conditions

机译:Acc Deaminase基因在心理胶质细菌中的外源表达减轻了寒冷的胁迫,促进了寒冷条件下的植物生长

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摘要

Endogeneous ethylene evolved during cold stress is a major limiting factor for plant growth which can be controlled by bacterial enzyme 1-aminocyclopropane-1-carboxylate (ACC) deaminase (ACCD), by breaking down ACC, the precursor of ethylene. In the present study, we introduced ACCD expressing plasmid in ACCD negative psychrotolerant bacteria to study its effect on growth of finger and foxtail millet seedlings. ACCD negative Sphingomonas faeni ISO were selected and transformed with plasmid pRKACC containing the acdS gene. Inoculation of the millet seeds and studying physiological parameters when a cold stress of 4 and 10?C was imposed showed that inoculation with ACCD expressing strains improved root and shoot length, biomass content of foxtail and finger millets seeds. Further, we also observed increased antioxidant activity in the plants by high levels of SOD, CAT, GPX, POD, APX and GR enzyme activity, and decreased proline content on inoculation with ACCD positive mutants. The enzyme ACC deaminase is thus be proved to be a potential strategy to alleviate cold stress in foxtail and finger millet by regulating endogenous ethylene evolved during stress conditions.
机译:在冷应激期间进化的内成型乙烯是植物生长的主要限制因素,其可以通过细菌酶1-氨基环丙烷-1-羧酸酯(ACC)脱氨基酶(ACCD)来控制乙烯,乙烯前体。在本研究中,我们介绍了ACCD负面心理药物细菌中表达质粒的ACCD,以研究其对手指和狐尾小米幼苗生长的影响。 ACCD阴性鞘氨胺酸鞘蛋白酶与含有 ACDS 基因的质粒pRKACC进行选择和转化。当施加4和10℃的冷应激时接种小米种子并研究生理参数,表明与ACCD表达菌株的接种改善了根和芽长度,狐尾和手指小米种子的生物质含量。此外,我们还观察到通过高水平的SOD,CAT,GPX,POD,APX和GR酶活性增加植物中的抗氧化活性,并降低了与ACCD阳性突变体接种的脯氨酸含量。因此,酶ACC脱氨酶是通过调节在应力条件下演化的内源性乙烯来缓解粪便和手指小米中的潜在策略。

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