首页> 外文期刊>International Journal of Innovative Research in Science, Engineering and Technology >Effect of Humic Acid Application on Growth and Chlorophyll Contents of Common Bean Plants (Phaseolus vulgarisL.)Under Salinity Stress Conditions
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Effect of Humic Acid Application on Growth and Chlorophyll Contents of Common Bean Plants (Phaseolus vulgarisL.)Under Salinity Stress Conditions

机译:盐胁迫下腐殖酸的施用对菜豆生长和叶绿素含量的影响

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Pot experiment was carried out at the research greenhouseof the King Abdul-Aziz University, Jeddah, Saudi Arabia to study the effect of humic acid (HA)on biological aspects (plant height, number of leaves and root length and plant growth biomass as well as chlorophyll contents) of common bean plants (Phaseolus vulgaris L.) under salinity stress conditions at 15, 30 and 45 days after planting (DAP).Four different salinity levels (0, 25, 50 and 100 mMNaCl) combined with and without HA supply at 3g L–1) in split plot design with three replicates were assigned. Results indicated that HAsupply significantly increased plant height, number of leaves, root length, shoot and root fresh and dry weights as well as chlorophyll contents of common bean than control plants at 15, 30 and 45 DAP, respectively. While, no significant responding was found for shoot fresh weigh at 15 DAP and root fresh weight at 30 DAP.Salt stress significantly declined the plant morphological and fresh and dry biomass as well as chlorophyllcontents and leaf area in shoot leaves. Application of HA markedly mitigated the adverse effects of a biotic stress on all studied biological aspects. Lastly, humic acid supply significantly increased the relative growth rates of shoot and root under saline conditions and humic is considered as a promising soil amendment to overcome adverse effects of salinity stress.
机译:在沙特阿拉伯吉达的阿卜杜勒·阿齐兹国王大学研究温室进行了盆栽试验,以研究腐殖酸(HA)对生物学方面(植物高度,叶片数和根长以及植物生长生物量以及种植(DAP)后15、30和45天的盐胁迫下普通豆类植物(菜豆)的叶绿素含量)四种不同的盐度水平(0、25、50和100 mMNaCl)结合和不结合HA供应在3g L–1中)分配了三个重复样的分割图设计。结果表明,分别在第15、30和45天DAP相比,HAsupply显着增加了普通豆的株高,叶片数,根长,枝和根的鲜重和干重以及叶绿素含量。而在15 DAP和30 DAP时鲜重无显着响应。盐胁迫显着降低了植物的形态,鲜,干生物量,枝叶的叶绿素含量和叶面积。 HA的应用显着减轻了生物胁迫对所有研究生物学方面的不利影响。最后,腐殖酸的供应显着增加了盐分条件下茎和根的相对生长速率,腐殖质被认为是克服盐分胁迫不利影响的有希望的土壤改良剂。

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