Production of potato seed tubers under the effect of Trichoderma sp. and rhizobacteria in greenhouse conditions

Sergio Eduardo Contreras-Liza, S. Contreras-Liza, R. Ramírez, Dionicio Belisario Luis Olivas
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Abstract

Potato (Solanum tuberosum L.) is one of the main crops in the Andean region and due to environmental aspects, the use of biocontrol agents is considered a safe way to produce potato seed tubers.The objective of the study was to evaluate potato inoculation with Trichoderma sp. as a matrix and rhizobacteria Bacillus simplex and Azotobacter sp. on the growth of potato seedlings from in vitro culture, for the production of seed tubers in a greenhouse. The inoculation of microorganisms was carried out in pots, using five potato genotypes for processing. The inoculation treatments were: control, Trichoderma sp., Trichoderma sp. + Azotobacter sp., Trichoderma sp. + Bacillus simplex, Trichoderma sp. + B. simplex + Azotobacter sp. The potato genotypes were cv. Unica (CIP392797.22), cv. Bicentenaria, the advanced clones CIP 396311.1, CIP 399101.1, and the experimental clone UH-09 from the Universidad Nacional José Faustino Sánchez Carrión. A completely randomized design was used, under a factorial arrangement and comparisons between treatments were made at p<0.05. All inoculant treatments exceeded the control in number and weight of tubers per plant as well as in tuber size. Inoculations of Trichoderma sp. alone or with Azotobacter sp. increased plant height, number of leaves per plant and vegetative uniformity; inoculations with the Trichoderma sp. + B. simplex + Azotobacter sp. consortium, improved the dry weight of the foliage, number of shoots per plant and vegetative vigor. There were significant interactions between potato genotypes and inoculant treatments for plant uniformity, vegetative vigor, and the foliage's dry weight. Coinoculation with Trichoderma sp. and some bacterial strains promote the growth of in vitro potato seedlings, increasing the size and weight of the seed tubers and plant biomass, indicating an interrelation between fungi and bacteria that influence the production of potatoes in a greenhouse.
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木霉和根际细菌在温室条件下生产马铃薯种子块茎的研究
马铃薯(Solanum tuberosum L.)是安第斯地区的主要作物之一,由于环境因素,使用生物防治剂被认为是生产马铃薯种块茎的安全方法。本研究以马铃薯木霉为基质,单纯芽孢杆菌和固氮杆菌为基质,对马铃薯离体培养苗在温室生产种块茎的效果进行了评价。采用5个马铃薯基因型进行盆栽微生物接种。接种处理为:对照、木霉、木霉+固氮杆菌、木霉+单纯芽孢杆菌、木霉+单纯双歧杆菌+固氮杆菌。Unica (CIP392797.22), cv。Bicentenaria,高级克隆CIP 396311.1, CIP 399101.1,以及来自universsidad Nacional jossousustino Sánchez Carrión的实验克隆UH-09。采用完全随机设计,因子排列,处理间比较p<0.05。所有接种剂处理在单株块茎数量、块茎重量和块茎大小上均超过对照。单独接种木霉或与固氮菌一起接种可提高株高、单株叶数和营养均匀性;接种木霉+单纯双歧杆菌+固氮菌联合体,提高了叶片干重、单株芽数和营养活力。马铃薯基因型与接种剂处理在植株均匀性、营养活力和叶片干重方面存在显著的交互作用。与木霉和一些菌株共接种可促进离体马铃薯幼苗的生长,增加种块茎的大小和重量以及植物生物量,表明真菌和细菌之间存在相互关系,影响温室马铃薯的产量。
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来源期刊
Revista de Ciencias Agroveterinarias
Revista de Ciencias Agroveterinarias Veterinary-Veterinary (all)
CiteScore
0.50
自引率
0.00%
发文量
41
审稿时长
53 weeks
期刊介绍: Revista de Ciências Agroveterinárias (Journal of Agroveterinary Sciences) (ISSN 2238-1171) focus on publishing original and unpublished tecnical-scientific works regarding on researches in Agrarian and Veterinary Sciences and related areas. The objective of this journal is to publish double-blind peer reviewed research articles, research notes, and review articles contributing significantly for scientific knowledge diffusion and socialization, being made available to libraries of education and research institutions performing scientific activities on plants, animals, and related organisms.
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