A Study on Root Exudation Pattern and Effect of Plant Growth Promoting Fungi during Biotic and Abiotic Stress in Pigeonpea

Aashif Iqubal Khan, R. Bhandari, Ambika Pokhrel, R. Yadav
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引用次数: 2

Abstract

An experiment was conducted to observe the interaction of Fusarium udum and Macrophomina phaseolina with a rhizospheric microbe Pseudomonas [AKC-O11] to see their impact on pigeonpea under biotic and abiotic conditions. Both biotic [Fusarium udum and Macrophomina phaseolina] and abiotic stress (NaCl) were applied and performances of these microbes were evaluated. The strain was used individually and in combination with the stresses and applied as seed bacterization of pigeonpea (Var. MA-3) seeds to see the impact on total phenol content in plant root exudates. The bacterized seeds were grown under invitro conditions and after three days of germination the seedlings were exposed to biotic stress due to challenge of the pathogens [Fusarium udum and Macrophomina phaseolina] and abiotic stress due to irrigation with salt solution of 100 mM. Root exudates were collected at 48 h, 96 h and 144 h after the application of stresses. The collected root exudates were processed for total phenolic content and High Pressure/Performance Liquid Chromatography (HPLC) analysis. It was observed that total phenol content was low in seeds bacterized with Pseudomonas strain but the concentration increased when the plants were challenged with the pathogen particularly Macrophomina phaseolina and NaCl. Similarly, a similar trend was also observed in gallic acid accumulation. The above results indicates that Pseudomonas strain (AKC-O11) have potential to be used as biocontrol agent that can help pigeonpea plants to combat attack of Macrophomina phaseolina and Fusarium udum as well as salinity.
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生物和非生物胁迫下鸽豌豆根系分泌模式及促生真菌作用的研究
通过实验观察了镰刀菌和phaseolmacrophomina与根际微生物假单胞菌[AKC-O11]的相互作用,以了解它们在生物和非生物条件下对鸽子的影响。采用生物胁迫和非生物胁迫(NaCl)对这两种微生物的生长性能进行了评价。将该菌株单独使用和与胁迫联合使用,并应用于鸽豆种子(Var. MA-3)的种子杀菌,观察其对植物根系分泌物中总酚含量的影响。在体外条件下培养经过细菌处理的种子,发芽3天后,幼苗分别受到病原菌[镰刀菌和phaseolina Macrophomina]的生物胁迫和100 mM盐溶液灌溉的非生物胁迫。分别在胁迫后48 h、96 h和144 h收集根系分泌物。对收集的根分泌物进行总酚含量测定和高压高效液相色谱分析。结果表明,经假单胞菌处理的种子中总酚含量较低,但在以菜绿巨藻和NaCl为主要侵染剂的情况下,总酚含量升高。同样,没食子酸的积累也有类似的趋势。上述结果表明,AKC-O11假单胞菌具有作为生物防治剂的潜力,可以帮助鸽豌豆植物对抗菜绿巨噬菌和镰刀菌的侵袭以及盐度。
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