Souza Tancredo, Lima Dos Santos Josefa Bruna, Batista Diego Silva
Department of Agriculture, Postgraduate Program in Agroecology, Federal University of Paraiba, Bananeiras, PB, Brazil.
Department of Life Sciences, Centre for Functional Ecology, University of Coimbra, Coimbra, Portugal.
Braz J Microbiol. 2025 Jun;56(2):1241-1251. doi: 10.1007/s42770-025-01618-9. Epub 2025 Jan 29.
The influence of arbuscular mycorrhizal fungi (AMF) inoculation on the growth and physiology of Phaseolus vulgaris L. and Zea mays L. in the Brazilian tropical seasonal dry forest is not well known. We examined the effects of indigenous AMF species inoculation on these two annual crops at phosphorus-deficient soils under glasshouse conditions. The AMF species used as inoculum were collected from the root zone of Mimosa tenuiflora, a native plant of the Caatinga ecoregion. The inoculum was propagated in plastic pots with Trifolium sp. as the host plant. We investigated the effect of four treatments: (1) Control- non-inoculated; (2) Acaulospora inoculum- inoculation with A. tuberculata; (3) Gigaspora inoculum- inoculation with G. gigantea; and (4) Mixed inoculum- inoculation with both Acaulospora and Gigaspora species. We found that inoculation with the indigenous AMF community enhanced plant dry biomass, plant P concentration, root colonization, and physiological responses for both model plants. This study highlighted the importance of exploring the P molecule as an integral element in plant development and presents the AMF inoculation as an efficient alternative to overcome low-P conditions, leading to improved nutrient acquisition in low-fertility soils, better growth conditions through enhanced physiological responses, and ultimately increased plant dry biomass.
丛枝菌根真菌(AMF)接种对巴西热带季节性干旱森林中菜豆和玉米生长及生理的影响尚不清楚。我们在温室条件下,研究了在缺磷土壤中接种本地AMF物种对这两种一年生作物的影响。用作接种物的AMF物种是从卡廷加生态区的本地植物细叶含羞草的根区采集的。接种物在以三叶草属植物为寄主植物的塑料盆中繁殖。我们研究了四种处理的效果:(1)对照 - 未接种;(2)无梗囊霉接种物 - 接种瘤状无梗囊霉;(3)巨孢囊霉接种物 - 接种巨型巨孢囊霉;(4)混合接种物 - 接种无梗囊霉和巨孢囊霉物种。我们发现,接种本地AMF群落可提高两种模式植物的植物干生物量、植物磷浓度、根定殖和生理反应。本研究强调了探索磷分子作为植物发育不可或缺元素的重要性,并提出AMF接种是克服低磷条件的有效替代方法,可导致在低肥力土壤中提高养分获取,通过增强生理反应改善生长条件,并最终增加植物干生物量。