土壤类型对促进辣椒增溶、矿化和植物吸收磷的新型“Milpa”分离株的影响

Dorcas Zúñiga-Silgado, Ayixon Sánchez-Reyes, María Laura Ortiz-Hernández, Miranda Otero, Edgar Balcázar-López, Susana Valencia-Díaz, Mario Serrano, Jeffrey J Coleman, Luis Sarmiento-López, Luz E De-Bashan, Jorge Luis Folch-Mallol
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引用次数: 1

摘要

辣椒属具有重要的经济意义,因为它的味道和辛辣的特性在世界范围内被种植和消费。2021年,墨西哥在4.5万公顷土地上生产了33亿吨玉米,向美国、加拿大、日本等国出口了20亿美元。土壤类型对植物的磷有效性有很大的影响,这主要是由于土壤中离子的保留作用。在先前的研究中,新的真菌分离株被证明在不同类型的土壤中具有不同的磷保留能力,可以溶解和矿化磷。本研究旨在研究不同类型“米尔帕”土壤矿物学对辣椒植物萌发、生物量生产和磷吸收的影响。双接种显著提高了种子的发芽率、发芽速度指数和平均发芽时间。不同土壤类型和不同接种量对温室辣椒叶片磷含量、生长指标和生物量均有促进作用。相关研究表明,双接种7 × 106 mL-1孢子的verissol对辣椒叶片磷浓度和植株生长响应的影响最为显著,表明该方法可根据土壤类型提高辣椒种植水平。本研究强调了仔细分析土壤类型在植物-微生物相互作用中的作用的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Soil Type Influences Novel "Milpa" Isolates of <i>Trichoderma</i> virens and <i>Aspergillus tubingensis</i> That Promote Solubilization, Mineralization, and Phytoabsorption of Phosphorus in <i>Capsicum annuum</i> L.

Soil Type Influences Novel "Milpa" Isolates of <i>Trichoderma</i> virens and <i>Aspergillus tubingensis</i> That Promote Solubilization, Mineralization, and Phytoabsorption of Phosphorus in <i>Capsicum annuum</i> L.

Soil Type Influences Novel "Milpa" Isolates of <i>Trichoderma</i> virens and <i>Aspergillus tubingensis</i> That Promote Solubilization, Mineralization, and Phytoabsorption of Phosphorus in <i>Capsicum annuum</i> L.

Soil Type Influences Novel "Milpa" Isolates of Trichoderma virens and Aspergillus tubingensis That Promote Solubilization, Mineralization, and Phytoabsorption of Phosphorus in Capsicum annuum L.

The Capsicum genus has significant economic importance since it is cultivated and consumed worldwide for its flavor and pungent properties. In 2021, Mexico produced 3.3 billion tons on 45,000 hectares which yielded USD 2 billion in exports to the USA, Canada, Japan, etc. Soil type has a dramatic effect on phosphorus (P) availability for plantsdue to its ion retention.In a previous study, novel fungal isolates were shown to solubilize and mineralize P in different kinds of soils with different P retention capacities. The aim of this work was to study the effects of the mineralogy of different kinds of "milpa" soils on the germination, biomass production, and P absorption of chili plants (Capsicum annuum). The germination percentage, the germination speed index, and the mean germination time were significantly increased in the plants treated with dual inoculation. Foliar phosphorus, growth variables, and plant biomass of chili plants grown in a greenhouse were enhanced in different soil types and with different inocula. Correlation studies suggested that the most significant performance in the foliar P concentration and in the growth response of plants was achieved in Vertisol with dual inoculation of 7 × 106 mL-1 spores per chili plant, suggesting this would be an appropriate approach to enhance chili cultivation depending on the soil type. This study stresses the importance of careful analysis of the effect of the soil type in the plant-microbe interactions.

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