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Role of Plant Genotype and Soil Conditions in Symbiotic Plant-Microbe Interactions for Adaptation of Plants to Cadmium-Polluted Soils

机译:植物基因型和土壤条件在共生植物-微生物相互作用中对植物适应镉污染土壤的作用

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We highlighted some of the key problems associated with the use of beneficial microorganisms for improving adaptation of plants to soils, polluted with heavy metals (HMs), especially Cd. Inoculation of pea line SGE and its Cd-tolerant mutant SGECd(t) with nodule bacteria Rhizobium leguminosarum bv. viciae demonstrated that nodulation process may be disturbed at Cd concentrations below threshold toxicity levels for each partner and the plant genotype plays a major role in nodulation under Cd stress. A comparative mathematical analysis of available information about Cd tolerance, accumulation of HMs (Cd, Cr, Cu, Ni, Pb, Sr and Zn), response to mycorrhizal fungus Glomus sp. and 15 phenotypic traits of 99 pea varieties revealed that (1) the Cd-sensitive varieties were more efficient in exploring the protective potential of symbiosis to compensate their deficit in Cd tolerance and (2) correlations between the studied traits exist and can be helpful for selection of plant-microbe systems adapted to polluted soils. In pot experiment with 11 varieties of Indian mustard, the plant growth-promoting effect of rhizobacterium Variovorax paradoxus 5C-2 negatively correlated with Cd tolerance and shoot Cd concentration of the plants grown in Cd-supplemented soil. In an outdoor pot experiment, inoculation of willow with the ectomycorrhizal fungus Pisolithus tinctorius and a cocktail of rhizobacteria stimulated root exudation, decreased soil pH and increased Cd mobilization in soil and Cd uptake by plants, but decreased plant growth at a moderate contamination level (25 mg Cd kg(-1)). Opposite effects were observed in highly contaminated soil (77 mg Cd kg-1). We propose a preliminary systematic framework of interactions between these factors that determine the success of microbial inoculation aimed at improving crop performance on HM-polluted soils or enhancing phytoremediation.
机译:我们强调了与使用有益微生物改善植物对土壤的适应性相关的一些关键问题,这些土壤被重金属(HMs)尤其是镉污染。用根瘤菌豆科根瘤菌接种豌豆SGE及其耐Cd突变体SGECd(t)。蚕豆表明,在镉浓度低于阈值毒性水平时,每个伙伴的结瘤过程都可能受到干扰,并且植物基因型在镉胁迫下的结瘤过程中起主要作用。关于Cd耐受性,HMs积累(Cd,Cr,Cu,Ni,Pb,Sr和Zn),对菌根真菌Glomus sp。的响应的可用信息的比较数学分析。和99个豌豆品种的15个表型性状表明:(1)Cd敏感品种在探索共生的保护潜力以补偿其对Cd耐受性的缺陷方面更有效,并且(2)研究的性状之间存在相关性,可以为选择适合污染土壤的植物微生物系统。在印度芥菜11个品种的盆栽试验中,Variovorax paradoxus 5C-2根瘤菌对植物生长的促进作用与对Cd的耐受性以及在补充Cd的土壤中生长的Cd浓度呈负相关。在一个室外盆栽实验中,用根外生菌真菌Pisolithus tinctorius和根瘤菌混合物接种柳树会刺激根系渗出,降低土壤pH值并增加土壤中Cd的动员和吸收Cd的能力,但在中等污染水平下会降低植物的生长(25 mg Cd kg(-1))。在高度污染的土壤(77 mg Cd kg-1)中观察到相反的影响。我们提出了这些因素之间相互作用的初步系统框架,这些框架确定了微生物接种的成功目标,旨在改善在重金属污染的土壤上的农作物表现或增强植物修复作用。

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