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首页> 外文期刊>Australian Journal of Crop Science >Effect of nitrogen fertilizer on hydrolytic enzyme production, root colonisation, N metabolism, leaf physiology and growth of rice inoculated with Bacillus sp. (Sb42).
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Effect of nitrogen fertilizer on hydrolytic enzyme production, root colonisation, N metabolism, leaf physiology and growth of rice inoculated with Bacillus sp. (Sb42).

机译:氮肥对接种芽孢杆菌的水稻水解酶产生,根系定植,氮代谢,叶片生理和生长的影响。 (Sb42)。

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A study was conducted at Universiti Putra Malaysia, Malaysia, glasshouse to determine the inoculation effect of Sb42 (locally isolated diazotroph) with different doses of nitrogen fertiliser (0, 30 and 60kg N ha-1) on hydrolytic enzyme production and the growth of rice variety MR219. Using 16S rRNA partial gene sequencing, Sb42 was identified as Bacillus sp. Plants were harvested at 45 days after transplanting, and specific enzyme activities of endoglucanase (EG) and endopolymethylgalacturonase (EPMG) were determined. Results showed that the growth of rice and hydrolytic enzymes production were significantly (P<0.05) affected by bacterial inoculation and N application. The application of N at concentrations of 30 and 60kg ha-1 to inoculated plants reduced plant growth and specific enzyme activities. Inoculated plants without N application showed significantly higher (P<0.05) specific hydrolytic enzyme activity (88.9% EG and 20.1% EPMG), plant biomass (72.46%), rate of photosynthesis (9.38μmolCO m2s-12 ), leaf N content (3.16%) and N uptake (74.59mg plant-1) compared to non-inoculated treatments. Root colonisation was observed by Scanning Electron Microscopy (SEM) and Transmission Electron Microscopy (TEM), which proved that Sb42 is able to colonise at the surface and interior of roots. The ability of Sb42 to produce hydrolytic enzymes and biological nitrogen fixation was affected by the application of N fertiliser.
机译:在马来西亚马来西亚布特拉大学的温室内进行的一项研究,以确定不同剂量的氮肥(0、30和60kg N ha-1)对Sb42(局部分离的重氮营养菌)的接种对水解酶生产和水稻生长的影响品种MR219。使用16S rRNA部分基因测序,Sb42被鉴定为芽孢杆菌。移植后第45天收获植物,并测定内切葡聚糖酶(EG)和内聚甲基半乳糖醛酸内切酶(EPMG)的特定酶活性。结果表明,细菌接种和施氮对水稻的生长和水解酶的产生有显着影响(P <0.05)。在接种的植物上施用30和60kg ha-1浓度的氮会降低植物的生长和特定的酶活性。未施氮的已接种植物表现出较高的(P <0.05)比水解酶活性(88.9%EG和20.1%EPMG),植物生物量(72.46%),光合作用率(9.38μmolCOm2s-12),叶片N含量(3.16) %)和N吸收量(74.59mg植物-1),与未接种的处理相比。通过扫描电子显微镜(SEM)和透射电子显微镜(TEM)观察到根定殖,这证明Sb42能够在根的表面和内部定殖。氮肥的施用影响了Sb42产生水解酶和生物固氮的能力。

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