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杉木优良无性系苗期氮利用效率评价

Evaluation of nitrogen use efficiency at seedling stage of excellent clones of Chinese fir trees

  • 摘要: 为筛选氮高效杉木良种,采用田间试验对4种杉木优良无性系苗期不同生长阶段在不同氮处理条件下的生长性状和氮利用率进行分析。结果表明:氮处理条件下杉木不同无性系间生长性状均存在不同程度的差异,4种无性系在不同氮处理下速生期的生长指标差异不明显。生长后期不同氮处理条件下洋049地径、株高和生物量均随施氮量的增加而增加,最大增幅分别为2.17%、14.93%和48.15%;洋061株高随施氮量增加略下降,最大降幅为7.54%,其地径和生物量整体上在不同氮处理下无显著差异;洋047地径、株高和生物量随施氮量的增多略有增加,但其平均值均低于其他3种无性系;4种无性系中,洋6421地径、株高和生物量在不同氮处理下均无明显的变化规律。洋061和洋047含水率在氮处理下变异系数分别为0.74%和5.71%,洋049的含水率整体上高于其他3种无性系,且随施氮量增加有增多趋势但无显著差异;4种无性系地上部和地下部氮含量在氮处理下均有不同变化,但变化幅度较小;洋049磷钾含量,尤其是地上部的磷钾含量受施氮量的影响变化比较大,变化幅度分别为4.24%~47.26%和2.74%~25.16%。综上所述,初步判定洋049对施氮量具有高响应性,可作为高氮高效型候选良种,适宜在氮肥可及性高的条件下造林;在困难立地造林时,应增加氮肥投入以保证其生产力最大化。洋061和6421对施氮量不敏感,可作为低氮高效型候选良种,栽培过程中不必过多关注造林地氮的本底水平。

     

    Abstract: To screen nitrogen-efficient fir species, field experiments were conducted to study the growth traits and nitrogen utilization of four excellent fir asexual lines under different nitrogen treatments at different growth stages of the seedling stage. The results showed that the growth traits of different asexual fir lines differed to different degrees under nitrogen treatment conditions. In general, the growth indexes of the four asexual lines in the fast-growing period under different N treatments did not differ significantly. However, in the late stage of growth, the diameter, height, and biomass of Yang 049 increased with the increase of nitrogen application, with maximum increases of 2.17%, 14.93%, and 48.15%, respectively; the height of Yang 061 decreased slightly with the increase of nitrogen application, with the maximum decrease of 7.54%, and there was no significant difference in its diameter and biomass under different nitrogen treatments. The diameter, height, and biomass of Yang 047 increased slightly with the increase of nitrogen application, with a maximum decrease of 7.54%, and there was no significant difference in its diameter and biomass under different nitrogen treatments. The diameter, plant height, and biomass of Ocean 047 increased slightly with the increase of nitrogen application, but its average value was lower than that of the other three asexual lines; among the four asexual lines, there was no obvious change rule for the diameter, plant height, and biomass of Ocean 6421 under different nitrogen treatments. Further results of water content and NPK content showed that the coefficients of variation of water content of Ocean 061 and Ocean 047 were 0.74% and 5.71%, respectively, under nitrogen treatments, and that the water content of Ocean 049 was higher than that of other three asexuals and tended to increase with the increase of nitrogen application, but the differences were not significant. Aboveground and belowground N contents of the four asexual lines showed different changes under N treatments, but the magnitude of the changes was small. The phosphorus and potassium contents of Yang 049, especially in the above-ground part, varied greatly under the influence of nitrogen application, with the ranges of 4.24%~47.26% and 2.74%~25.16%, respectively. Based on the above growth traits and physiological indexes, it was preliminarily determined that Ocean 049 was highly responsive to nitrogen application and could be used as a high-nitrogen and high-efficiency candidate species, suitable for afforestation under conditions of high nitrogen fertilizer accessibility; when afforesting in difficult habitats, nitrogen fertilizer inputs should be increased to ensure that its productivity is maximized. In the case of difficult sites, N input should be increased to ensure its productivity is maximized. Yang 061 and 6421 are not sensitive to the amount of N applied so they can be used as low-N high-efficiency candidates, and there is no need to pay too much attention to the background level of N in silvicultural sites during the cultivation process.

     

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