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机构地区:[1]北京林业大学水土保持与荒漠化防治教育部重点实验室,北京100083
出 处:《水土保持通报》2007年第2期79-82,共4页Bulletin of Soil and Water Conservation
基 金:农业科技转化资金项目"黄土高原平缓退耕还林农林复合可持续经营技术"(02EFN216701228)
摘 要:以山西省吉县地区幼龄梨树为研究对象,在盆栽试验的基础上,研究了不同土壤水分条件对幼龄梨树生长相关生理指标的影响。结果表明,幼龄梨树的蒸腾速率日变化趋势在SWC≤10%时,呈现双峰曲线,第一峰值出现在上午10时,第二个高峰出现在14时左右。SWC>10%时,蒸腾速率日变化为单峰曲线,在中午12时达到一天中的最大值;不同土壤水分条件下,幼龄梨树净光合速率日变化呈“S”形,在上午8时左右达到最大峰值,在12时左右出现“光午休”低谷,土壤水分缺失明显降低净光合速率。发挥较大水分利用效率的土壤含水量范围为10%~14%。单株幼龄梨树的生物量分布总体为干>根>叶>枝,土壤水分较为充足时幼龄梨树积累的干物质的分配有偏向于叶和枝的趋势;而在干旱的情况下幼龄梨树干物质分配有偏向于根和干的趋势。Taking young pear trees in Jixian Country, Shanxi Province for an example, the paper analyzes the effects of different soil water conditions on physiological characteristics of young pear tree based on a potted experiment. The result indicates that the daily change in transpiration rate presents a single-peak or double-peak curve and the relationship between water consumption of pear tree and soil water content can be described significantly by a quadratic curve. Under different soil water conditions, daily change in net photosynthetic rate of young pear tree presents "S" shape, which rises to a peak at 8:00 am and appears a midday depression of photosynthesis at 12:00 am. Soil water deficient markedly reduces photosynthetic rate. Soil water content suitable for high water use efficiency is 10%-14%. The dried weight of leaves and total biomass of young pear tree has a downtrend with de- creased soil water content. Under the normal soil water condition, the proportions of biomass overground and underground are nearly the same, but the greater photosynthetic production of young pear tree tends to occur in the underground.
分 类 号:S152.7[农业科学—土壤学] S661.2[农业科学—农业基础科学]
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