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Development of a Rhizobium Seed Coating to Establish Lupine Species on Degraded Rangelands

根瘤菌 生物 根际 根瘤菌 固氮 乡土植物 农学 堆肥 共生 营养物 开枪 豆类 植物 园艺 引进物种 细菌 生态学 接种 遗传学
作者
B. M. Church,Brad Geary,Joel S. Griffitts,C. Drake,Kate Ruebelmann,Shannon V. Nelson,Matthew D. Madsen
出处
期刊:Plants [MDPI AG]
卷期号:13 (15): 2101-2101
标识
DOI:10.3390/plants13152101
摘要

Restoring native plant species on degraded landscapes is challenging. Symbiotic partners in the plant rhizosphere can aid in nutrient acquisition, pathogen protection, stress tolerance, and many other processes. However, these microbes are often absent in altered landscapes and need to be re-integrated to improve restoration efforts. We evaluated, within a laboratory setting, the ability of commercial and indigenous rhizobia strains to form nodules on lupine species used for rangeland seedings in the Great Basin region of the Western United States and ascertained if these strains could be applied through a seed coating. We also evaluated if a compost amendment applied via seed coating could further enhance the performance of the rhizobia strains. Our analysis showed that successful nodulation could occur using commercial and wildland-collected indigenous strains through either a liquid culture applied to seedlings or as a dry seed coating. However, the number of root nodules and the presence of a pink color (indicating nitrogen fixation) were typically higher in the commercial product than in the indigenous strains. Compost did not improve nodulation or the performance of the nodules; however, this treatment alone improved shoot growth. Overall, these results suggest that commercial rhizobium may be more effective in improving plant growth, and future research with native rhizobia may want to consider identifying strains compatible with seed-coating delivery. Longer-term studies are now merited for assessing how the rhizobia strains evaluated in this study influence plant growth, particularly in a field setting.
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