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Arbuscular mycorrhizal fungi and biochar improves drought tolerance in chickpea

机译:丛枝菌根真菌和生物炭改善鹰嘴豆的耐旱性

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摘要

Arbuscular mycorrhizal fungi (AMF) inoculation and biochar amendment has been reported to improve growth of several crop plants however their role in stress amelioration individually as well as in combination has not been worked out. This experiment was conducted to evaluate the application of AMF and biochar on the performance of chickpea under drought stress. The treatments included the individual as well as combined treatment of AMF and biochar to drought stressed and normal chickpea plants. Plants inoculation improved growth in terms of shoot and root length, leaf area and number of branches which was observed to show a steep decline due to drought stress. Drought declined the AMF colonization potential though biochar amendment ameliorated the negative effects of drought significantly by improving the spore population, number of mycelium, vesicle and arbuscules and the percentage of colonization as well. Increased chlorophyll synthesis in biochar and AMF treated plants was obvious, which lead to significant enhancement in the net photosynthetic efficiency. Drought stress also declined the relative water content (RWC) and membrane stability index (MSI), while treatment of biochar and AMF either individually or in combination mitigated the deleterious effects to considerable extent and caused a significant enhancement in RWC and MSI under normal conditions. Amendments with biochar and AMF inoculation increased the nitrogen fixation attributes including the number and weight of nodules, leghemoglobin content and activity of nitrate reductase enzyme leading to greater uptake and assimilation of nitrogen in them when compared to drought stressed plants. Drought stressed chickpea plants exhibited considerable reduction in uptake of nitrogen and phosphorous which was ameliorated by biochar and AMF treatments. It could be suggested that increase in growth and physiological attributes in chickpea due to biochar amendments and AMF inoculation under drought stress were plausibly due to their involvement in nitrogen and phosphorous uptake, chlorophyll synthesis and photosynthesis.
机译:据报道,丛枝菌根真菌(AMF)接种和生物炭改良可改善几种农作物的生长,但尚未阐明它们在单独或组合减轻胁迫方面的作用。进行了该实验,以评估AMF和生物炭在鹰嘴豆干旱胁迫下的性能。处理包括对干旱胁迫和正常鹰嘴豆植物的AMF和生物炭的单独处理以及联合处理。接种植物改善了枝条和根长,叶面积和分支数量方面的生长,这被观察到由于干旱胁迫而急剧下降。干旱降低了AMF的定殖潜力,尽管生物炭改良剂通过改善孢子数量,菌丝体,囊泡和丛枝的数量以及定殖百分比显着改善了干旱的负面影响。在生物炭和AMF处理的植物中,叶绿素合成的增加是明显的,这导致净光合效率的显着提高。干旱胁迫还降低了相对含水量(RWC)和膜稳定性指数(MSI),而单独或联合处理生物炭和AMF则在很大程度上减轻了有害影响,并在正常条件下导致RWC和MSI显着提高。与干旱胁迫的植物相比,生物炭和AMF接种的修正增加了固氮特性,包括结核的数量和重量,血红蛋白含量和硝酸还原酶的活性,导致其中氮的吸收和吸收更大。干旱胁迫的鹰嘴豆植物对氮和磷的吸收显着降低,这通过生物炭和AMF处理得以改善。可以认为,干旱胁迫下鹰嘴豆的生物炭改良和AMF接种导致了鹰嘴豆生长和生理特性的提高,这可能是由于它们参与了氮和磷的吸收,叶绿素的合成和光合作用。

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