以春光1号水稻为供试种子,链霉菌JD211为供试菌,通过浅盘试验研究链霉菌JD211对水稻生物量和土壤细菌多样性的影响。结果表明:菌剂用量10 g kg-1对水稻幼苗的生长有极显著的促进作用,幼苗总干重、地上部分干重、地下部分干重与对照相比...
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以春光1号水稻为供试种子,链霉菌JD211为供试菌,通过浅盘试验研究链霉菌JD211对水稻生物量和土壤细菌多样性的影响。结果表明:菌剂用量10 g kg-1对水稻幼苗的生长有极显著的促进作用,幼苗总干重、地上部分干重、地下部分干重与对照相比分别提高52.15%、44.56%、65.55%,植株全氮、全磷分别提高90.10%、58.51%。与CK土壤相比,菌剂用量10 g kg-1的土壤速效氮、有效磷均有显著提高,分别提高了37.49%、40.62%。细菌多样性的末端限制性片段长度多样性(T-RFLP)分析表明链霉菌JD211能促进一些稀有或生态势较弱的细菌生长,使参与土壤营养循环、改善土壤质地及防治植物病害的功能菌成为优势菌群。土壤功能微生物类群的变化,加速了N、P等土壤养分循环,增强了水稻对N、P等矿质养分的吸收,从而促进水稻生长。
The application of tillering fertilizer plays an important role in promoting rice tillering and improving rice yield. However, under the condition of mechanical transplanting, the optimal application time of tillering...
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The application of tillering fertilizer plays an important role in promoting rice tillering and improving rice yield. However, under the condition of mechanical transplanting, the optimal application time of tillering fertilizer is still unclear. In this study, the early rice cultivar Zhongjiazao 17 and late rice cultivar H You 518 were used as materials, and the effects of different application times of tillering fertilizer on yield and population development of double-cropping rice transplanted by machine were investigated. The tillering fertilizer was applied 7(D07), 10(D10) and 13(D13) d after the transplanting, respectively. The results showed that compared with those in the D07 treatment groups, the yield of early rice in the D10 and D13 treatment groups were reduced by 9.4% and 3.8%, respectively, and the yield of late rice in the D10 and D13 treatment groups were reduced by 4.5% and 12.6%,respectively. However, there were no significant differences in rice yield among the treatment groups. The application time of tillering fertilizer showed significant effects on grain number per panicle and seed setting rate of early rice. The grain number per panicle in the D10 treatment group was significantly lower than that in the D07 treatment group, and the seed setting rate of the D13 treatment group was significantly lower than that in the D07 treatment group(P〈0.05). For the late rice, the effect of application time of tillering fertilizer on effective tiller number was most obvious, and the effective tiller number in the D13 treatment group was significantly lower than that in the D07 treatment group(P〈0.05). Compared with those in the D07 treatment group, the effective tiller numbers, leaf area indexes and biomasses in the D10 and D13 treatment groups were all trended to be decreased. Therefore,to improve the quality of population and fulfill the high-yielding potential of double-cropping rice transplanted by machine, the tillering fertilizer should be applied as
The research selected 16 rice varieties(8 early and 8 late double-cropping rice) by mechanical transplanting modes as per equivalent row and wide-narrow row to explore yield and physiological traits in order to prov...
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The research selected 16 rice varieties(8 early and 8 late double-cropping rice) by mechanical transplanting modes as per equivalent row and wide-narrow row to explore yield and physiological traits in order to provide references for selection of rice variety suitable for mechanical transplanting. The results showed that yields of early and late rice improved by 2.90% and 2.73% by mechanical transplanting as per equivalent row and wide-narrow row respectively. Besides, leaf area index in the treatment as per wide-narrow row was higher compared with the treatment as per equivalent row, as well as average photosynthetic potential which grew by 0.92%,3.99% and 5.64% of early from tillering-peak stage to mature stage and 3.46%,7.09% and 6.79% of late rice. Furthermore, by mechanical transplanting as per wide-narrow row, SPAD value, and root activity performer higher, as well as the number of differentiated branch and glumous flowers, but degradation rate showed lower. In addition, with mechanical transplanting the same, early rice Zhuliangyou819 and late rice Fengyuanyou 299 took advantages in yield, which can be priorities for mechanical transplanting in double-cropping areas in Jiangxi Province.
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