生物接种剂对百日草形态及生化指标的影响。

I. Saini, K. Yadav, Esha, A. Aggarwal
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引用次数: 8

摘要

从线虫根际土壤中分离到优势AMF Glomus mosseae (G)和Acaulospora laevis (A)。并在实验室大量生产以供进一步研究。采用盆栽试验研究了在玻璃室内条件下,丛枝菌根真菌(G. mosseae和A. laevis)单独或与绿色木霉(T)和荧光假单胞菌(P)联合对秀丽隐杆线虫的交互作用势。试验采用全随机设计,5个重复。60 d后测定各形态指标(株高、茎部生物量、根生物量、根长、叶面积、花数、直径)和生化指标(叶绿素、类胡萝卜素、花花青素含量、P含量、总糖、淀粉和蛋白质含量)。结果表明,不同处理对线虫的生长反应存在差异。单用或联用AMF均能提高线虫的各项参数。G+A组合对生长参数的影响最大,其次是G+T和G+A+P。G+A+T+P联合接种对总蛋白和总叶绿素含量的影响最大,花中花青素含量以G+A处理最大。AMF促进AM定植和孢子数增加,增加养分尤其是磷的获取,产生植物生长激素,改善土壤根际条件,改变线虫的生理生化特性。通过对不同参数的研究,发现苔藓藓是一种有效的促进线虫生长的生物接种剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of bioinoculants on morphological and biochemical parameters of Zinnia elegans Jacq.
The dominant AMF Glomus mosseae (G) and Acaulospora laevis (A) were isolated from the rhizosphere soil of Z. elegans Jacq. and mass produced in laboratory for further studies. A pot experiment was performed to see the interactive potential of arbuscular mycorrhizal fungi (G. mosseae and A. laevis) alone or in combination with Trichoderma viride (T) and Pseudomonas fluorescens (P) on Z. elegans under glass house conditions. The experiment were conducted in a factorial arrangement based completely randomized design with five replicates. Various morphological (plant height, shoot biomass, root biomass, root length, leaf area, flower number, diameter) and biochemical attributes (chlorophyll, carotenoids, flower anthocyanin content, P content, total sugar, starch and protein content) were measured after 60 days. The results indicated a variation in growth response of Z. elegans with different treatments. AMF alone or in combination helped in increasing the different parameters of Z. elegans. The combination of G+A showed maximum increase of growth parameters followed by G+T and G+A+P. Consortium inoculation of bioinoculants plants with G+A+T+P treatment proved to be the best treatment for total proteins and total chlorophyll content while flower anthocyanin content was best in G+A treatment. AMF promotes higher AM colonization and spore number enhancing nutrient acquisition especially phosphorus, producing plant growth hormones resulting in an improvement of rhizospheric condition of soil, altering the physiological and biochemical properties of Z. elegans. Based on different parameters studied, G. mosseae was found to be an efficient bioinoculant as compared to A. laevis for growth enhancement of Z. elegans.
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