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用作微生物生物刺激剂的产生长素细菌可促进水培系统中番茄(L.)幼苗的生长。

Auxin-Producing Bacteria Used as Microbial Biostimulants Improve the Growth of Tomato ( L.) Seedlings in Hydroponic Systems.

作者信息

Pappalettere Livia, Bartolini Susanna, Toffanin Annita

机构信息

Institute of Crop Science, Sant'Anna School of Advanced Studies, Piazza Martiri della Libertà 33, 56127 Pisa, Italy.

Department of Agriculture Food and Environment (DAFE), University of Pisa, Via del Borghetto 80, 56124 Pisa, Italy.

出版信息

BioTech (Basel). 2024 Aug 21;13(3):32. doi: 10.3390/biotech13030032.

Abstract

Seven auxin-producing endophytic bacterial strains ( spp., , spp.), and two different combinations of these strains were used to verify their influence on tomato during germination and development in hydroponic conditions where, as a novelty for Canestrino di Lucca cultivar, endophytic bacteria were inoculated. To emphasize the presence of bacterial auxins in roots and stems of seedlings, both in situ staining qualitative assessment and quantitative analysis were carried out. Moreover, hypogeal and epigeal growth of the plantlets were measured, and correlation analyses were conducted to examine the relationship between the amount of indolacetic acid (IAA) produced by the bacterial strains and root and stem parameters. Plantlets treated with microbial inoculants showed a significant increase in the survival rate compared to the control treatment. The best results as IAA producers were from Sp245 and Cd, which also induced significant root growth. On the other hand, and induced the best rates in stem growth. These findings highlight the potential for using endophytic bacterial strains in a hydroponic co-cultivation system that enables inoculating plantlets, at an early stage of growth (5 days old).

摘要

使用七株产生生长素的内生细菌菌株( spp.、 spp.、 spp.)以及这些菌株的两种不同组合,在水培条件下验证它们对番茄发芽和发育的影响,其中对卡内斯特里诺·迪卢卡品种进行了内生细菌接种,这是一项创新。为了强调幼苗根和茎中细菌生长素的存在,进行了原位染色定性评估和定量分析。此外,测量了幼苗的子叶出土和子叶留土生长情况,并进行了相关性分析,以研究细菌菌株产生的吲哚乙酸(IAA)量与根和茎参数之间的关系。与对照处理相比,用微生物接种剂处理的幼苗存活率显著提高。作为IAA生产者,最佳结果来自 Sp245和 Cd,它们还诱导了显著的根生长。另一方面, 和 诱导了最佳的茎生长速率。这些发现突出了在水培共培养系统中使用内生细菌菌株的潜力,该系统能够在生长早期(5天大)对接种幼苗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4114/11348165/3ea6a3d3480c/biotech-13-00032-g001.jpg

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