Comparison of different inoculation methods and carrier materials for allelopathic Pseudomonas strains in weed management of direct-seeded rice

Muhaimen Ayyub, Zahir Ahmad Zahir, H. Asghar, Muhammad Shahid
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Abstract

The use of allelopathic bacteria to combat weed infestation in crops is regarded as an effective technology for sustainable agriculture and environment. In this regard, six bacterial strains from the genus Pseudomonas were selected for their ability to inhibit the germination and growth of Leptochloa chinensis (L.) and Dactyloctenium aegyptium (L.) while promoting the growth of rice. These strains were applied to the target weeds and rice using different application methods viz. seed priming, liquid application, and foliar application. The results showed that all strains possessed herbicidal activity and significantly reduced growth of L. chinensis. Shoot length, root length, and fresh biomass of D. aegyptium were also significantly reduced in all strains by 60, 55, and 76%, respectively, with the exception of R15-4. Additionally, the growth suppression of both weed species was more prominent in the liquid application. The selected allelopathic strains also demonstrated plant growth-promoting traits and improved the growth and physiological parameters of rice in all three application methods, with the best results achieved with liquid and foliar applications. The survival efficiency of the bacterial strains was also tested using four different carrier materials, where the press mud was found the best carrier for controlling L. chinensis and D. aegyptium.
等位假单胞菌不同接种方法和载体材料在直播水稻杂草管理中的比较
使用等位病理细菌防治作物中的杂草被认为是一项有效的可持续农业和环境技术。为此,研究人员从假单胞菌属中筛选出六种细菌菌株,以确定它们是否能够抑制禾本科杂草(L. Leptochloa chinensis)和埃及稗(Dactyloctenium aegyptium (L.))的发芽和生长,同时促进水稻的生长。对目标杂草和水稻施用这些菌株时,采用了不同的施用方法,即种子引诱、液体施用和叶面施用。结果表明,所有菌株都具有除草活性,能显著降低禾本科杂草的生长。除 R15-4 外,所有菌株都能显著降低埃及豚草的芽长、根长和新鲜生物量,降幅分别为 60%、55% 和 76%。此外,液体施用对两种杂草生长的抑制作用更为明显。在所有三种施用方法中,所选的等位病理菌株还表现出促进植物生长的特性,并改善了水稻的生长和生理参数,其中液体和叶面施用的效果最好。此外,还使用四种不同的载体材料对菌株的存活效率进行了测试,结果发现榨泥是控制 L. chinensis 和 D. aegyptium 的最佳载体。
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