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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Zinc-Arbuscular Mycorrhizal Interactions: Effect on Nutrient Pool, Enzymatic Antioxidants, and Osmolyte Synthesis in Pigeonpea Nodules Subjected to Cd Stress
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Zinc-Arbuscular Mycorrhizal Interactions: Effect on Nutrient Pool, Enzymatic Antioxidants, and Osmolyte Synthesis in Pigeonpea Nodules Subjected to Cd Stress

机译:锌 - 丛枝菌根相互作用:对养分池,酶促抗氧化剂和渗透性合成的养分菌,对CD胁迫进行营养池

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摘要

The intent of the experiments was to analyze impact of cadmium (Cd) and/or zinc (Zn) on membrane functionality, nutrient acquisition, antioxidant defense, and osmolyte accumulation in nodules of two pigeonpea (Cajanus cajan (L.) Millsp.) genotypes (Sel 85N and P792) with and without arbuscular mycorrhizal (AM) fungus Funneliformis mosseae. Findings demonstrated that accumulation of Cd and Zn in nodules resulted in membrane destabilization, nutrient imbalance, increased antioxidant enzyme activities [superoxide dismutase (SOD), catalase (CAT), peroxidase (POX), and glutathione reductase (GR)], and osmoprotectants such as total free amino acids (FAA), total soluble sugars (TSS), proline, and glycine betaine (GB). Cd had higher negative effects than Zn. P792 was comparatively more metal sensitive and displayed higher reductions than Sel 85N. Application of Zn decreased Cd uptake and reduced the phytotoxic effects of Cd. Zn-1000 in combination with F. mosseae restored nodular membrane stability; enhanced nutrient pool [phosphorus (P), potassium (K), calcium (Ca), magnesium (Mg), and iron (Fe)]; and boosted antioxidant enzyme activities and osmolyte synthesis in a genotype-dependent manner.
机译:实验的目的是分析镉(CD)和/或锌(Zn)对两台Pigeonpea结节(Cajanus Cajan(L.)Millsp。)基因型的结节中膜功能,营养采集,抗氧化剂防御和渗透物积聚的影响(SEL 85N和P792),没有枝状菌根(AM)真菌Funneliformis Mosseae。结果表明,结节中的CD和Zn的积累导致膜不平衡,营养不平衡,增加的抗氧化酶活性[超氧化物歧化酶(SOD),过氧化氢酶(CAT),过氧化物酶(POX)和谷胱甘肽还原酶(GR),以及肿瘤保护剂作为无氨基酸(FAA),总可溶性糖(TSS),脯氨酸和甘氨酸甜菜碱(GB)。 CD的负面影响比Zn更高。 P792对金属敏感相对较多,比SEL 85N更高的减少。锌降低的镉吸收和降低Cd的植物毒性作用。 Zn-1000与F. Mosseae的结合恢复的结节膜稳定性;增强营养池[磷(P),钾(钾(K),钙(Ca),镁(Mg)和铁(Fe)];并以基因型依赖性方式提高抗氧化酶活性和渗透性合成。

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