相對濕度對黃瓜葉片光合特性的影響
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公益性行業(yè)(氣象)科研專項(GYHY(QX) 201206024、GYHY(QX) 201006028),江蘇省科技支撐項目“江蘇省設(shè)施農(nóng)業(yè)氣象災(zāi)害預(yù)警及防御技術(shù)研究”(BE2010734),江蘇高校優(yōu)勢學(xué)科建設(shè)工程(PAPD)資助


Effects of Different Relative Humidity on Cucumber Leaf Photosynthesis Characteristic
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    摘要:

    以黃瓜“津優(yōu)1號”為試材,于2011年4月在南京信息工程大學(xué)進行人工環(huán)境控制試驗,設(shè)計8個相對濕度梯度,用LI 6400進行光合參數(shù)的測定,系統(tǒng)研究不同相對濕度處理對黃瓜葉片光合特性的影響。結(jié)果表明:黃瓜葉片的凈光合速率和胞間CO2濃度隨著相對濕度的減小而降低;氣孔導(dǎo)度、蒸騰速率和葉片的水分利用效率在相對濕度為75%時達到最大;而氣孔限制值在相對濕度為75%時降到最低;黃瓜葉片最大光合作用速率(Pmax)與空氣相對濕度呈指數(shù)關(guān)系:Pmax=22375e189085fRH;隨空氣相對濕度的減小,黃瓜葉片的表觀量子效率、光飽和點均降低,而光補償點增加;相關(guān)分析表明,凈光合速率與葉面水汽壓差呈負(fù)相關(guān),而與氣孔導(dǎo)度、胞間CO2濃度、相對濕度、蒸騰速率均呈正相關(guān),且相關(guān)性均達到極顯著水平。

    Abstract:

    In order to study the effects of different relative humidity on the leaf photosynthesis characteristic in a greenhouse, an experiment was conducted with eight models of relative humidity on cucumber Jinyou 1, which was chosen as the trail material. The photosynthetic physiology parameters of cucumber leaves were measured with the LI 6400 portable photosynthesis system. The results show that the net photosynthetic rate and intercellular CO2 concentration reduced with the decreasing relative humidity; the stomata conductance, transpiration rate, and the leaf water use efficiency reached the maximum when relative humidity was 75%, while the stomatal limitation value reached the minimum when relative humidity was 75%. The relationship of maximum photosynthetic rate and air relative humidity conforms to the exponent equation: 〖WTBX〗P〖WTBZ〗max=223753e189085fRH. Through the light response curves, it can be learned that the apparent photosynthetic quantum yield and light saturation decrease with deceasing relative humidity, and the light compensation point increases with the decreasing relative humidity. In addition, the correlative analysis indicates that a negative correlation between the vapor pressure deficit of leaves and relative humidity, and a positive correlation exists between intercellular CO2 concentration, stomata conductance transpiration rate, relative humidity, and photosynthetic rate.

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張婷華,楊再強,李葉萌,張波.相對濕度對黃瓜葉片光合特性的影響[J].氣象科技,2013,41(6):1128~1133

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  • 收稿日期:2012-08-25
  • 定稿日期:2013-05-13
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  • 在線發(fā)布日期: 2013-12-27
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