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首页> 外文期刊>Indian Journal of Horticulture >Synergistic interaction of arbuscular mycorrhizal fungi and mycorrhiza helper bacteria improving antioxidant activities in Troyer citrange and Cleopatra mandarin under low moisture stress
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Synergistic interaction of arbuscular mycorrhizal fungi and mycorrhiza helper bacteria improving antioxidant activities in Troyer citrange and Cleopatra mandarin under low moisture stress

机译:低水分胁迫下丛枝菌根真菌与菌根辅助细菌的协同相互作用提高了Troyer citrange和Cleopatra柑的抗氧化活性

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A glasshouse experiment was conducted to investigate the influence of arbuscular mycorrhizal fungi (AMF) and mycorrhiza helper bacteria (MHB) on growth, osmotic adjustment, and antioxidant activities in Troyer citrange and Cleopatra mandarin in pot culture under well-watered (WW) and water stress (WS) conditions. After 270 days of inoculation with microbial culture(s), half of the seedlings of each genotype were subjected to water stress and the other half were WW for 20 days. During the moisture stress mycorrhizal root colonization showed a durative reduction. No mycorrhizal colonization was observed in the roots of non-AM seedlings. Troyer citrange and Cleopatra mandarin recorded significantly highest root colonization just before imposing differential water treatment (83.34 and 80.00%, respectively) and after 20 days of differential water treatment (66.67 and 62.50%, respectively) under WS and (87.50 and 83.33%, respectively) under WW, when dually inoculated with Glomus intraradices and PSB. Glomus intra radices in association with PSB or Azospirillum accumulated higher concentration of osmolytes like total phenols, proline and total soluble sugars and antioxidant metabolites (carotenoids and ascorbic acid) in leaves of citrus seedlings under WS.
机译:进行了温室试验,研究了盆栽菌根真菌(AMF)和菌根辅助细菌(MHB)对在浇水(WW)和水充足的条件下盆栽中Troy citrange和Cleopatra普通话的生长,渗透调节和抗氧化活性的影响压力(WS)条件。接种微生物培养物270天后,每种基因型的一半幼苗受到水分胁迫,另一半进行WW处理20天。在水分胁迫期间,菌根根定殖显示持续减少。在非AM幼苗的根中未观察到菌根定植。在WS和WS下分别进行差异水处理之前和之后的20天差异水处理之后(分别为66.67和62.50%),Troyer citrange和Cleopatra普通话记录到了最高的根定植。 ),当用Glomus intraradices和PSB双重接种时。在WS条件下,柑桔内球囊根与PSB或偶氮螺旋菌结合在一起积累了更高浓度的渗透液,如总酚,脯氨酸和总可溶性糖以及抗氧化剂代谢产物(类胡萝卜素和抗坏血酸)。

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