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促进植物生长和除草细菌作为沙漠地区农业潜在的生物基解决方案

Plant Growth-Promoting and Herbicidal Bacteria as Potential Bio-Based Solutions for Agriculture in Desertic Regions.

作者信息

Muñoz-Torres Patricio, Huanca-Mamani Wilson, Cárdenas-Ninasivincha Steffany, Aguilar Yola, Quezada Antonio, Bugueño Franco

机构信息

Laboratory of Plant Pathology and Bioproducts, Faculty of Agronomic Sciences, University of Tarapacá, Av. General Velásquez 1775, Arica 1000000, Chile.

出版信息

Plants (Basel). 2024 Dec 24;14(1):9. doi: 10.3390/plants14010009.

Abstract

The region of Arica and Parinacota hosts unexplored remote sites with unique characteristics suitable for developing novel agricultural bioproducts. Notable locations include Jurasi Hot Springs, Polloquere Hot Springs, and Amuyo Lagoons, featuring open pools fed by thermal mountain springs. These geothermal sites harbor bacteria with plant growth-promoting activities, particularly interesting to the strains J19, TP22, A20, and A3. These bacteria possess in vitro plant growth-promoting traits, the ability to produce hydrolytic enzymes, and the capacity to inhibit phytopathogenic fungi. Moreover, they can tolerate different concentrations of NaCl and boron, making them suitable for developing new agricultural bioproducts for arid environments. The bacterial strains A3 and A20 have a positive effect on the growth of the aerial part of tomato plants (increased stem length, fresh and dry weight), with a significant increment in proline concentration and chlorophyll A and B content under saline conditions. Meanwhile, the strains J19 and TP22 exhibit herbicidal activity against by reducing root elongation and germination of the weed. These strains possess plant growth-promoting traits and improve plant resistance to salinity stress. They are promising candidates for developing innovative bio-based agricultural products suited to arid and semi-arid regions.

摘要

阿里卡和帕里纳科塔地区拥有未被探索的偏远地点,这些地点具有独特的特征,适合开发新型农业生物产品。值得注意的地点包括胡拉西温泉、波洛奎雷温泉和阿穆约泻湖,其特点是有由山间温泉供水的露天水池。这些地热地点蕴藏着具有促进植物生长活性的细菌,其中菌株J19、TP22、A20和A3特别引人关注。这些细菌具有体外促进植物生长的特性、产生水解酶的能力以及抑制植物病原真菌的能力。此外,它们能够耐受不同浓度的氯化钠和硼,这使得它们适合开发用于干旱环境的新型农业生物产品。细菌菌株A3和A20对番茄植株地上部分的生长有积极影响(茎长、鲜重和干重增加),在盐胁迫条件下脯氨酸浓度以及叶绿素A和B含量显著增加。同时,菌株J19和TP22通过减少杂草的根伸长和发芽对其表现出除草活性。这些菌株具有促进植物生长的特性,并提高植物对盐胁迫的抗性。它们是开发适合干旱和半干旱地区的创新型生物基农产品的有前途的候选菌株。

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