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Physiological and growth response of rice plants ( Oryza sativa L.) to Trichoderma spp . inoculants

机译:水稻对木霉属的生理和生长响应。孕育剂

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Trichoderma spp., a known beneficial fungus is reported to have several mechanisms to enhance plant growth. In this study, the effectiveness of seven isolates of Trichoderma spp. to promote growth and increase physiological performance in rice was evaluated experimentally using completely randomized design under greenhouse condition. This study indicated that all the Trichoderma spp. isolates tested were able to increase several rice physiological processes which include net photosynthetic rate, stomatal conductance, transpiration, internal CO2 concentration and water use efficiency. These Trichoderma spp. isolates were also able to enhance rice growth components including plant height, leaf number, tiller number, root length and root fresh weight. Among the Trichoderma spp. isolates, Trichoderma sp. SL2 inoculated rice plants exhibited greater net photosynthetic rate (8.66 μmolCO2 m?2?s?1), internal CO2 concentration (336.97?ppm), water use efficiency (1.15 μmoCO2/mmoH2O), plant height (70.47?cm), tiller number (12), root length (22.5?cm) and root fresh weight (15.21?g) compared to the plants treated with other Trichoderma isolates tested. We conclude that beneficial fungi can be used as a potential growth promoting agent in rice cultivation.
机译:据报道,木霉属种,一种已知的有益真菌具有增强植物生长的几种机制。在这项研究中,木霉属七种分离株的有效性。在温室条件下使用完全随机设计,通过实验评估了促进水稻生长和提高水稻生理性能的方法。这项研究表明所有木霉属。测试的分离物能够增加水稻的几种生理过程,包括净光合速率,气孔导度,蒸腾作用,内部CO2浓度和水分利用效率。这些木霉属。分离株还能够增强水稻的生长成分,包括株高,叶数,分till数,根长和根鲜重。在木霉属中。分离株,木霉属。接种SL2的水稻植株具有更高的净光合速率(8.66μmolCO2m?2?s?1),内部CO2浓度(336.97?ppm),水分利用效率(1.15μmoCO2/ mmoH2O),株高(70.47?cm),分till数(12),与用其他木霉分离株处理过的植物相比,根长(22.5?cm)和根鲜重(15.21?g)。我们得出结论,有益真菌可以用作水稻栽培中潜在的生长促进剂。

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