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用于保护玉米免受干旱影响的耐旱微生物种子包衣:一种新型干燥生物制剂的表型效应

Seed-Encapsulation of Desiccation-Tolerant Microorganisms for the Protection of Maize from Drought: Phenotyping Effects of a New Dry Bioformulation.

作者信息

Rebelo Romão Inês, Rodrigues Dos Santos Ana Sofia, Velasco Leonardo, Martínez-Ferri Elsa, Vilchez Juan Ignacio, Manzanera Maximino

机构信息

Instituto de Tecnologia Química e Biológica (ITQB)-NOVA Lisboa, 2780-157 Oeiras, Portugal.

Instituto Andaluz de Investigación y Formación en Agricultura, Pesca, Alimentación y Producción Ecológica (IFAPA Churriana), 29140 Málaga, Spain.

出版信息

Plants (Basel). 2022 Apr 9;11(8):1024. doi: 10.3390/plants11081024.

Abstract

Droughts and high temperatures deeply affect crop production. The use of desiccation-tolerant (or xerotolerant) microorganisms able to protect plants from droughts represents a promising alternative. These xerotolerant microorganisms have previously been used to modulate plant responses and improve their tolerance to drought. In addition, these microorganisms could be stored and used in dry formats, which would improve their viability and resilience at a much lower cost than current market alternatives. In the present study we analyze the possibility of using strains of xerotolerant Actinobacteria in encapsulated format on seeds. Under this formulation, we carried out greenhouse with farming soil with maize plants. Under greenhouse conditions, the plants showed greater resistance to drought, as well as increased growth and production yield, but not as well in field trials. This alternative could represent a useful tool to improve water efficiency in crops for drought-affected areas or affected by water scarcity.

摘要

干旱和高温对作物生产产生了深远影响。使用能够保护植物免受干旱影响的耐旱(或耐干)微生物是一种很有前景的替代方法。这些耐旱微生物此前已被用于调节植物反应并提高其耐旱性。此外,这些微生物可以以干燥形式储存和使用,这将以比当前市场上的替代品低得多的成本提高其活力和恢复力。在本研究中,我们分析了在种子上使用封装形式的耐旱放线菌菌株的可能性。在这种配方下,我们在种植玉米植株的温室土壤中进行了试验。在温室条件下,植株表现出更强的抗旱性,以及生长和产量的增加,但在田间试验中效果不佳。这种替代方法可能是提高干旱影响地区或水资源短缺地区作物水分利用效率的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a07a/9024790/b9e3f7ae6fed/plants-11-01024-g001.jpg

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