College of Resources and Environment, Southwest University, Chongqing, China.
J Sci Food Agric. 2022 Mar 15;102(4):1640-1650. doi: 10.1002/jsfa.11501. Epub 2021 Sep 16.
Some soil microorganisms can mobilize unavailable phosphorus (P) in soils for plant use and increase P fertilizer efficiency. Thus, an abiotic P solubilization experiment and fungal incubation in solution and soil were conducted to investigate the mobilization of various P compounds by a new white-rot fungus Ceriporia lacerata HG2011. The crop agronomic performances were then evaluated in the winter barley-summer maize-winter wheat rotation field.
Ceriporia lacerata HG2011 had a wide P mobilization spectrum and mobilized P by different mechanisms depending on P sources supplied in liquid culture. The chief mechanism employed by this fungus was the production of protons in mobilizing Ca (PO ) , low-molecular-weight organic acids and other unknown substances in FePO and AlPO , phytase (an inducible enzyme in the presence of phytate) in phytate, and phosphatase in lecithin and ribonucleic acid, respectively. As a result of the large fungal biomass, P accumulated in the hypha should also be considered in the assessment of the fungal P mobilization, and not just only soluble inorganic P. As C. lacerata HG2011 colonized on and in the test soil, phosphatase and phytase activities were enhanced but pH decreased in the soil, leading to P mobilization. The application of this fungus mobilized soil P, increased crop P uptake and yields, and consecutively reduced P fertilizer use without yield sacrifices in the multiple crop rotation field.
C. lacerata HG2011 showed a new use with respect to mobilizing soil P and reducing P fertilizer input in modern agriculture beyond medical purposes, environmental protection and biofuel production. © 2021 Society of Chemical Industry.
一些土壤微生物可以将土壤中无法利用的磷(P)转化为植物可用的形式,从而提高磷肥的效率。因此,进行了一项非生物 P 溶出实验和真菌在溶液和土壤中的培养实验,以研究新型白腐真菌 Ceriporia lacerata HG2011 对各种 P 化合物的转化作用。然后,在冬小麦-夏玉米-冬小麦轮作田评估了作物的农艺表现。
Ceriporia lacerata HG2011 具有广泛的 P 转化谱,并根据液体培养中提供的 P 源通过不同的机制来转化 P。该真菌采用的主要机制是通过产生质子来转化 Ca(PO4)3,通过产生低分子量有机酸和其他未知物质来转化 FePO4 和 AlPO4,通过植酸酶(在植酸盐存在下诱导产生的酶)来转化植酸盐,通过磷酸酶来转化卵磷脂和核糖核酸。由于真菌生物量大,在评估真菌 P 转化时还应考虑菌丝体中积累的 P,而不仅仅是可溶性无机 P。随着 C. lacerata HG2011 在测试土壤中定殖,土壤中的磷酸酶和植酸酶活性增强,但 pH 值降低,导致 P 转化。该真菌的应用可以活化土壤 P,增加作物对 P 的吸收和产量,减少 P 肥用量,而不会牺牲多茬轮作田的产量。
除了在医学、环境保护和生物燃料生产方面的应用外,Ceriporia lacerata HG2011 在现代农业中显示出一种新的用途,可以活化土壤 P 并减少 P 肥投入。 © 2021 英国化学学会。