首页> 外文期刊>Soil Science and Plant Nutrition >Stem productivity in relation to nitrogen concentration and carbon isotopic composition (?′13C) in leaves of hinoki cypress (Chamaecyparis obtusa Endlicher) plantations in Shikoku district, Japan
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Stem productivity in relation to nitrogen concentration and carbon isotopic composition (?′13C) in leaves of hinoki cypress (Chamaecyparis obtusa Endlicher) plantations in Shikoku district, Japan

机译:日本四国地区h柏人工林叶片中茎生产力与氮浓度和碳同位素组成(?' 13 C)的关系

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The stem productivity of the hinoki cypress (Chamaecyparis obtusa Endlicher) in relation to plant nitrogen status and water-use efficiency was investigated in the Okuono (OKU) and Karakawa (KRK) areas in Shikoku district, Japan, where abundant precipitation occurs. The nitrogen concentration and carbon isotopic composition (?′13C) in the leaves were used as indexes of plant nitrogen status and water-use efficiency, respectively. The leaf nitrogen concentration increased with decreasing soil carbonitrogen (C/N) ratio and with increasing soil pH. There was a marginally significant negative correlation between leaf ?′13C and soil water content in the KRK area, but leaf ?′13C in the OKU area did not correlate with the soil water condition, and increased on the upper slope. The results suggest that hinoki trees in the KRK area have higher water-use efficiency (high leaf ?′13C) under lower soil water conditions. In the OKU area, meanwhile, leaf ?′13C in the upper slope was higher due to adaptation to adverse conditions. When 12 plots in two areas were included, the mean height and stem increments increased with increasing leaf nitrogen concentration and with decreasing leaf ?′13C. These findings suggest that nitrogen acquisition is a primary factor for stem productivity in the areas concerned but the productivity of some forests is restricted by the soil water condition or other conditions, as indicated by the high value of leaf ?′13C. The measurement of nitrogen concentration and ?′13C in leaves can provide us with valuable insights into the relative importance of nitrogen, water and other conditions on stem productivity in the two areas.View full textDownload full textKeywordshinoki cypress, nitrogen, soil, stem increment, water use efficiency.Related var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00380768.2011.608169
机译:在日本四国地区奥库诺(OKU)和卡拉川(KRK)地区,研究了日ki柏(Chamaecyparis obtusa Endlicher)的茎生产力与植物氮素状况和水分利用效率的关系,这些地区降水丰富。叶片中的氮浓度和碳同位素组成(?'sup> 13 C)分别用作植物氮素状态和水分利用效率的指标。随着土壤碳/氮(C / N)比的降低和土壤pH值的升高,叶片氮浓度增加。在KRK地区,叶片?' 13 C与土壤水分之间存在显着的负相关,而在OKU地区,叶片?' 13 C与土壤水分没有相关性。土壤水分状况,并在上坡增加。结果表明,KRK地区的扁柏树在较低的土壤水分条件下具有较高的水分利用效率(高叶?' 13 C)。同时,在OKU地区,由于适应不利条件,上坡的叶片α' 13 C较高。当包括两个区域的12个样地时,平均身高和茎的增加随着叶片氮浓度的增加和叶片'′ss <13 C的降低而增加。这些发现表明,氮吸收是相关地区茎秆生产力的主要因素,但是某些森林的生产力受到土壤水分条件或其他条件的限制,如叶片?' 13的高价值所表明的。 sup> C。叶片中氮浓度和?' 13 C的测定可以为我们提供有价值的见解,了解氮,水和其他条件对这两个地区茎秆生产力的相对重要性。 ,氮,土壤,茎增加,水分利用效率。相关变量addadd_id “,pubid:” ra-4dff56cd6bb1830b“};添加到候选列表链接永久链接http://dx.doi.org/10.1080/00380768.2011.608169

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