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土壤pH对不同酸性敏感型水稻品种氮利用效率与根际土壤生物学特性的影响 总被引:1,自引:0,他引:1
为探讨酸化土壤影响水稻氮利用效率的土壤生物学机制,以酸性敏感型品种五优308和酸性特异型品种荆楚优148为材料,采用盆栽试验考察不同土壤pH条件下水稻的氮利用效率指标与根际土壤酶活性及微生物数量的关系。结果表明,在土壤pH值3.5~6.5范围内,五优308氮素稻谷生产效率(NGPE)与氮生理效率(NPE)随土壤pH值的下降显著降低,氮收获指数(NHI)变化不明显;而荆楚优148中3个指标在pH值5.0时最大。土壤pH值的下降均降低了2个品种的根际土壤酶活性,但品种间、时期间降幅稍有差异。五优308各时期磷脂脂肪酸(PLFA)含量随土壤pH值降低而降低,而荆楚优148各时期PLFA含量在pH值5.0时最高。五优308的NGPE、NPE与3种土壤酶活性均呈显著正相关,而NHI仅与蔗糖酶活性呈极显著正相关;荆楚优148氮利用效率指标与土壤酶活性呈负相关,与土壤蔗糖酶和脲酶活性的相关性较显著;五优308氮利用效率指标与微生物数量呈正相关,但其显著性在不同生育时期间与微生物间有一定差异;而荆楚优148氮利用效率指标与分蘖~孕穗期土壤微生物数量呈极显著正相关,与齐穗期土壤微生物数量呈极显著负相关。由此可见,酸性敏感型水稻品种氮利用效率随土壤pH下降显著降低,且主要由根际土壤酶活性与微生物数量显著下降所致;而酸性特异型水稻品种氮利用效率在pH值5.0时最大,且其与土壤生物学特性指标的相关性表现与酸性敏感型水稻品种不同。本研究初步明确了酸化稻田影响水稻氮利用效率的土壤生物学机制,为酸化稻田适宜水稻品种选择提供了参考。 相似文献
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Fishes, Zooplankton, insect larvae, and benthic invertebrates differ in their sensitivity to acidic waters. Some species are able to survive and complete their life-cycle below pH 3.5 while others are eliminated once the pH drops below 5.5. Generally, acid-sensitive fauna are highly water permeable and have difficulty regulating osmotically essential ions, such as sodium and chloride, at low pH. Increased permeability during certain stages of a life-cycle (post-molt crayfish, for example) are often associated with increased acid-sensitivity. Special adaptations, including enlarged anal papillae in Chironomids and the number and morphology of chloride cells in such diverse organisms as crustaceans, insect larvae, and fishes, may enhance acid-tolerance. To test the hypothesis that Na+ regulation can be used to predict relative acid-sensitivity of aquatic fauna we will need a mechanism for standardizing Na+ regulatory capability. 相似文献
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