根际细菌和内生细菌离体和离体接种对香蕉小苗生长参数的评价

Y. Mon, K. Oo, Kyaw Kyaw Linn, Z. Lynn, N. Hlaing, Nay Chi Ko Ko
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摘要

香蕉的繁殖依赖于工业目的的组织培养繁殖。由于组培苗缺乏原生内生菌,在组培苗中重新引入有益微生物是提高组培苗建立水平、提高植株生长参数、保护植株病虫害和田间种植整体性能的有益基础。本研究从健康香蕉根、叶、假茎等不同部位分离到根际和内生4种细菌(荧光假单胞菌、恶臭芽孢杆菌、短小芽孢杆菌、解淀粉芽孢杆菌)。将香蕉组培苗在MS培养基上培养成根期,作为寄主进行人工接种。然后在离体和离体条件下组织培养植株进行细菌接种。本试验所用香蕉幼苗均在温室中成功驯化并成活。试验分为3个处理:(1)体外生根苗接种2周细菌;(2)体外(硬化)苗接种细菌;(3)无菌蒸馏水对照。在这些处理中,在所有数据采集时间内,离体接种均显著提高了植株的株高、叶数和株围,增加指数最高:(24.0、7.0和7.3)。离体接种的株高、叶数和株周长分别以22.0、6.9和6.3的增幅位居第二。在所有4个数据收集时间(19.0、6.2和6.0),对照处理的植物生长参数数量最少。结果表明,在温室条件下,施用混合细菌接种剂可有效提高香蕉组培苗的生长参数。此外,在离体苗阶段人工接种2周是香蕉组培苗中最适宜的微生物施用方法,可在大田种植前促进香蕉根际微生物的生长。
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Evaluation of Plant Growth Parameters by In vitro and Ex vitro Inoculation of Micropropagated Banana Plantlets with Rhizospheric and Endophytic Bacterial Inoculum
Banana propagation is dependent on propagation by tissue culture for industrial purposes. Due to lack of native endophytes in tissue culture plantlets, reintroduction of beneficial microorganisms to tissue culture plantlets become popular as a useful foundation for improving the level of establishment, increasing plant growth parameters, protecting the plantlets against pest and diseases and overall performance for field plantation. In the present study, rhizospheric and endophytic four bacterial species (Pseudomonas fluorescens, Bacillus putida, Bacillus pumilus, Bacillus amyloliquefaciens were isolated from different parts of healthy banana plants such as root, leaf and pseudostem. Banana tissue culture plantlets were cultured for root formation stage on MS medium and used as host for artificial inoculation. Then, bacterial inoculation was carried out with tissue culture plantlets both in vitro and ex vitro conditions. All banana plantlets used for this experiment were successfully acclimatized and survived in the greenhouse. The experiment consisted of three treatments: (1) bacterial inoculum with in vitro rooted plantlets for 2 weeks (2) bacterial inoculum with ex vitro (hardening) plantlets (3) control with sterilized distilled water. Among these treatments, in vitro inoculation affected significantly increased plant height, number of leaves and plant girth for all data collection times with the highest increment indices: (24.0, 7.0, and 7.3). Ex vitro inoculation showed the second highest increment indices: (22.0, 6.9 and 6.3) for plant height, number of leaves and plant girth, respectively. The lowest number of plant growth parameters were observed in control treatment for all four data collection time (19.0, 6.2, and 6.0). According to the results, application of mixtures of bacterial inoculum was effective for enhanced plant growth parameters of tissue culture banana plantlets under greenhouse condition. In addition, two weeks artificial inoculation during in vitro plantlets stage was found the most suitable method for application of microbes with tissue culture banana plantlets which can promote the microbial rhizosphere of banana prior to field plantation.
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