Dao Thanh H
USDA-ARS, Animal Manure and By-Products Laboratory, BARC- East, 10300 Baltimore Ave., Beltsville, MD 20705, USA.
J Environ Qual. 2003 Mar-Apr;32(2):694-701. doi: 10.2134/jeq2003.6940.
Information is needed on organic polyphosphates such as myo-inositol 1,2,3,5/4,6-hexakis dihydrogenphosphate or phytate (IP6) contribution to the sources and sinks of dissolved phosphorus (PO4-P) in the soil-manure-water system. Effects of Na+, Ca2+, Al3+, and Fe3+ and cation to IP6-P mole ratios on the enzymatic dephosphorylation of IP6 were studied to determine controlling mechanisms of dephosphorylation and persistence in manure. Phytate- and PO4-P were analyzed by high-performance liquid chromatography. Phytate dephosphorylation by Aspergillus ficuum (Reichardt) Henn. phytase EC 3.1.3.8 decreases by 50 +/- 3.6 and 40 +/- 4% at pH 4.5 and 6, respectively, as Ca2+ concentrations increase and cation to IP6-P mole ratios reach 6:6. Polyanionic IP6 has a high affinity for Al3+ and Fe3+ and reductions in dephosphorylation average 27 and 32% at a cation to IP6-P mole ratio of 1:6 for Al3+ and Fe3+, respectively, while reaching more than 99% at a mole ratio of 6:6. A phytase-hydrolyzable phosphorus (PHP) fraction is native to ruminant animal manure and is proportional to total solids (TS) concentration in 1 to 100 g L(-1) suspensions. Added phytase, in effect, increases water-extractable P content of manure and the risk of environmental P dispersion. As the bioavailability and ecological effect of IP6-P appear to be regulated not only by pH-controlled enzyme activity but also by the associated counterions, the differential protective effects of cations influence the accuracy of manure PHP fraction estimates and increase phytate resistance to enzymatic dephosphorylation that may lead to its persistence in manure.
需要了解诸如肌醇1,2,3,5/4,6 - 六磷酸二氢酯或植酸(IP6)等有机多磷酸盐对土壤 - 粪肥 - 水系统中溶解磷(PO4 - P)源和汇的贡献。研究了Na +、Ca2 +、Al3 +和Fe3 +以及阳离子与IP6 - P摩尔比对IP6酶促脱磷酸作用的影响,以确定脱磷酸作用的控制机制和在粪肥中的持久性。通过高效液相色谱法分析植酸和PO4 - P。随着Ca2 +浓度增加且阳离子与IP6 - P摩尔比达到6:6时,米曲霉(Reichardt)Henn.植酸酶EC 3.1.3.8在pH 4.5和6条件下对植酸的脱磷酸作用分别降低50±3.6%和40±4%。聚阴离子IP6对Al3 +和Fe3 +具有高亲和力,当阳离子与IP6 - P摩尔比为1:6时,Al3 +和Fe3 +存在下脱磷酸作用的降低平均分别为27%和32%,而在摩尔比为6:6时脱磷酸作用降低超过99%。植酸酶可水解磷(PHP)部分是反刍动物粪便中固有的,并且与1至100 g L(-1)悬浮液中的总固体(TS)浓度成正比。实际上,添加植酸酶会增加粪便中水可提取磷的含量以及环境磷扩散的风险。由于IP6 - P的生物有效性和生态效应似乎不仅受pH控制的酶活性调节,还受相关抗衡离子的调节,阳离子的不同保护作用会影响粪便PHP部分估计的准确性,并增加植酸对酶促脱磷酸作用的抗性,这可能导致其在粪便中持续存在。