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Endophytic Fungi Piriformospora indica Mediated Protection of Host from Arsenic Toxicity

机译:内生真菌Piriformospora indica介导的宿主免受砷毒性的保护

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摘要

Complex intercellular interaction is a common theme in plant-pathogen/symbiont relationship. Cellular physiology of both the partners is affected by abiotic stress. However, little is known about the degree of protection each offers to the other from different types of environmental stress. Our current study focused on the changes in response to toxic arsenic in the presence of an endophytic fungus Piriformospora indica that colonizes the paddy roots. The primary impact of arsenic was observed in the form of hyper-colonization of fungus in the host root and resulted in the recovery of its overall biomass, root damage, and chlorophyll due to arsenic toxicity. Further, fungal colonization leads to balance the redox status of the cell by adjusting the antioxidative enzyme system which in turn protects photosynthetic machinery of the plant from arsenic stress. We observed that fungus has ability to immobilize soluble arsenic and interestingly, it was also observed that fungal colonization restricts most of arsenic in the colonized root while a small fraction of it translocated to shoot of colonized plants. Our study suggests that P. indica protects the paddy (Oryza sativa) from arsenic toxicity by three different mechanisms viz. reducing the availability of free arsenic in the plant environment, bio-transformation of the toxic arsenic salts into insoluble particulate matter and modulating the antioxidative system of the host cell.
机译:复杂的细胞间相互作用是植物-病原体/共生关系中的一个共同主题。伴侣的细胞生理都受到非生物胁迫的影响。但是,人们对彼此免受不同类型的环境压力的保护程度知之甚少。我们当前的研究集中在存在于定植于水稻根部的内生真菌印度梨形孢子的存在下对毒性砷的响应变化。砷的主要影响以寄主根部真菌的超定殖形式观察到,并由于砷中毒而导致其总体生物量,根部损伤和叶绿素的恢复。此外,真菌定植通过调节抗氧化酶系统来平衡细胞的氧化还原状态,从而保护植物的光合作用机制免受砷胁迫。我们观察到真菌具有固定可溶性砷的能力,有趣的是,还观察到真菌定植限制了被定植根中的大部分砷,而一小部分转移到了定植植物​​的芽上。我们的研究表明,P稻通过三种不同的机制保护稻谷(Oryza sativa)免受砷的毒性。减少植物环境中游离砷的可用性,将有毒砷盐生物转化为不溶性颗粒物,并调节宿主细胞的抗氧化系统。

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