生物制剂共接种对番木瓜(Carica papaya L.)种子发芽率和促生长的影响)

Manglar Pub Date : 2023-07-05 DOI:10.57188/manglar.2023.017
Cristhian John Macías-Holguín, Hayron Fabricio Canchignia Martínez, Vicenta Dayana Delgado Basurto, Fernando Patricio Paucar-Nieto, Ketty Vanessa Arellano Ibarra, Angel Virgilio Cedeño Moreira
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引用次数: 0

摘要

休眠是对发芽的阻碍,代表了一种适应机制,允许木瓜种子延迟其出现。根杆菌通过几种方式促进植物生长,包括植物激素的产生、固氮、磷酸盐的溶解和根系形态的增加。本试验测定了三种生物制剂中根瘤菌(PGPR)假单胞菌蛋白(CHA0)和恶臭假单胞菌(bmr2 -4)的接种效率,并对其发芽率和吸收毛的增加率进行了评价。在体外条件下,BIOIMPULSE共接种可有效提高发芽率,平均提高80%。在根茎中,每BIOIMPULSE的吸收毛增加了5.67 mm,根面积增加了0.86 mm2,与AIA (25 mg/mL)处理相当。在幼苗中,BIOIMPULSE对根系形态和高度的改善非常有效,5 g/L的磷在(5.12 ~ 4.62 mm)和功能叶(9.75 ~ 11.75 mm)之间观察到Ø下胚轴尺寸。BIOIMPULSE可以改变根系功能,改善植物营养,影响营养生理,在磷肥存在的情况下,通过提高发芽率,根毛的早期外观和根系生长,比所有其他生物制剂都具有多功能性。这意味着它们可以用于降低化肥的成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efectos de la co-inoculación de Bioformulados (PGPR´s) sobre el porcentaje de germinación y promover el crecimiento en plántula de papaya (Carica papaya L.)
Dormancy is a blockage to germination and represents an adaptive mechanism that allows papaya seed to delay its emergence. Rhizobacteria improve plant growth in several ways, phytohormone production, nitrogen fixation, phosphate solubilization and increase root morphology. The present investigation was conducted to determine the efficiency of rhizobacteria (PGPR's) Pseudomona protegens (CHA0) and Pseudomona putida (BMR 2-4) inoculated within three bioformulates to be evaluated within the percentage of germination, increase of absorbing hairs using rhizotrons and seedlings under consortia or in combination of phosphorus fertilizers. Under in-vitro conditions, BIOIMPULSE co-inoculation was very effective in increasing germination percentage with an average of 80%. In rhizotrons, a greater increase in absorbing hairs of 5.67 mm and root area of 0.86 mm2 per BIOIMPULSE was exhibited, comparable to the treatment with AIA (25 mg/mL). In seedlings, BIOIMPULSE is highly effective in improving root morphology and height by emendando 5 g/L phosphorus was observed Ø hypocotyl dimensions between (5.12 to 4.62 mm) and functional leaves (9.75 to 11.75). BIOIMPULSE modifies root functioning, improves plant nutrition, and influences vegetative physiology, being versatile over all other bioformulates by increasing the germination percentage, early appearance of root hairs and root growth in the presence of phosphorus fertilizers. This means that they can be useful to reduce the cost of chemical fertilizers.
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