首页> 外文期刊>African Journal of Food, Agriculture, Nutrition and Development >Differential benefits of rock phosphate (RP) by tomato (Lycopersicon esculentum mill.) plant as affected by nitrogen froms and soil types.
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Differential benefits of rock phosphate (RP) by tomato (Lycopersicon esculentum mill.) plant as affected by nitrogen froms and soil types.

机译:番茄(Lycopersicon esculentum mill。)植物的磷矿(RP)的差异受氮源和土壤类型的影响。

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Phosphorus is one of the critical elements that limit plant production, particularly in humid and semi-humid soils. For realization of African Green Revolution, use of rock phosphate (RP) by resource-poor farmers may be an alternative to more expensive water soluble phosphate (P). Utilization of RP was investigated in tomato (Lycopersicon esculentum Mill) var; Moneymaker in minirhizotrons at Hohenheim to assess root-induced chemical changes in the rhizosphere with two soil types: - Arenosol and C-horizon of Luvisol. Additionally, field experiments were conducted atKibwezi and Maseno (Luvisol and Ferralsol, respectively) in Kenya. All trials received RP and soluble P as source of P and nitrate and ammonium (stabilized with DMPP as nitrification inhibitor) as nitrogen sources. Ammonium treatment significantly reduced rhizosphere pH in minirhizotron treatment with Arenosol with corresponding increase in shoot P content (but with significant negative shoot biomass accumulation), while rhizoplane pH differed significantly from rhizosphere pH treatment with C-horizon of Luvisol and there was no RP benefit to plant. The buffer capacity of the Luvisol was quite high and the pH 2mm away from rhizoplane was similar to that of bulk soil. However, minimal NO3 - additions to ammonium treatment significantly improved biomass production in both soils. In both rhizobox experiments, NO3 - led to rhizosphere alkalinization. Both shoot and fruit biomass was enhanced by RP application at Maseno, while RP had a negative effect on tomato plant production at Kibwezi. Therefore, role of RP on improved tomato yield at Maseno may partly be attributed to secondary factors other than P, viz; alleviation of aluminium rhizotoxicity since the Al content was significantly reduced by RP treatment, while RP may have led to partial alkalinization at specific root/rhizoplane, leading to Zinc deficiency at Kibwezi site. The application of rock phosphate in addition to acidifying nitrogenous fertilizer with consideration to soil types has potential of improving crop production and phosphate capital of resource-poor farmers.
机译:磷是限制植物产量的关键元素之一,特别是在潮湿和半潮湿的土壤中。为了实现非洲绿色革命,资源贫乏的农民使用磷酸盐岩(RP)可以替代更昂贵的水溶性磷酸盐(P)。在番茄(Lycopersicon esculentum Mill)var中研究了RP的利用。霍恩海姆(Hohenheim)微型根际放疗中的摇钱树,用于评估根系诱导的两种土壤类型的化学变化:-槟榔和Luvisol的C-水平。此外,在肯尼亚的Kibwezi和Maseno(分别为Luvisol和Ferralsol)进行了野外试验。所有试验均以RP和可溶性P为磷源,以硝酸盐和铵(以DMPP为硝化抑制剂稳定)作为氮源。铵处理显着降低了Arenosol微型根际处理对根际pH的影响,并相应增加了茎中P含量(但芽生物量积累显着为负值),而根际平面pH与用Luvisol的C-水平处理的根际pH有显着差异,RP对厂。 Luvisol的缓冲能力非常高,并且距根际平面2mm的pH值类似于散装土壤。然而,在铵盐处理中添加最少的NO 3 -可以显着提高两种土壤的生物量生产。在两个根盒实验中,NO 3 -导致根际碱化。在Maseno施用RP可以提高枝条和水果的生物量,而在Kibwezi RP则对番茄的产量产生负面影响。因此,RP对Maseno番茄产量提高的作用可能部分归因于P,即P以外的次要因素。 RP处理可显着降低铝的根际毒性,因为RP处理可显着降低Al含量,而RP可能已导致特定根/根际平面部分碱化,导致Kibwezi部位缺锌。考虑到土壤类型,除了酸化氮肥外,还施用磷矿粉具有改善作物生产和资源贫乏农民磷肥的潜力。

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