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中国农学通报 ›› 2022, Vol. 38 ›› Issue (17): 44-50.doi: 10.11924/j.issn.1000-6850.casb2021-1196

所属专题: 生物技术 园艺

• 林学·园艺·园林 • 上一篇    下一篇

CO2浓度升高条件下不同氮素水平对小叶章光合特性和生长的影响

王建波1(), 王继丰1, 付晓玲1, 钟海秀1, 刘赢男1, 倪红伟2()   

  1. 1黑龙江省科学院自然与生态研究所,哈尔滨 150040
    2黑龙江省林业科学院,哈尔滨 150081
  • 收稿日期:2021-12-14 修回日期:2022-02-24 出版日期:2022-06-15 发布日期:2022-07-08
  • 通讯作者: 倪红伟
  • 作者简介:王建波,女,1977年出生,黑龙江讷河人,副研究员,博士,研究方向:全球变化生态学和湿地生态学。通信地址:150040 哈尔滨市香坊区哈平路103号 自然与生态研究所,Tel:0451-86664562,E-mail: 181923445@qq.com
  • 基金资助:
    国家自然科学基金“三江湿地小叶章群落光合生理生态特性对氮沉降和CO2升高的响应”(30970452);黑龙江省科学院预研项目“三江平原小叶章湿地碳固定与释放对CO2浓度升高的适应机制”(YY2021ZR02);中央引导地方科技发展专项(ZY20B15)

Effects of Different Nitrogen Supply on Photosynthetic Characteristics and Growth of Calamagrostis angustifolia Under Elevated CO2 Concentration

WANG Jianbo1(), WANG Jifeng1, FU Xiaoling1, ZHONG Haixiu1, LIU Yingnan1, NI Hongwei2()   

  1. 1Institute of Natural Resources and Ecology, Heilongjiang Academy of Sciences, Harbin 150040
    2Heilongjiang Academy of Forestry, Harbin 150081
  • Received:2021-12-14 Revised:2022-02-24 Online:2022-06-15 Published:2022-07-08
  • Contact: NI Hongwei

摘要:

为阐明大气CO2浓度升高和不同氮素水平对湿地植物光合生理特性和生长的影响,本研究以三江平原湿地优势植物小叶章(Calamagrostis angustifolia)为研究对象,通过野外原位控制试验,利用开顶式气室(OTC)模拟环境大气CO2浓度变化,设置E0(380 ±20 µmol/mol)、E1(550 ±20 μmol/mol)和E2(700 ± 20 μmol/mol)3个CO2浓度;在每个OTC内设置 N0(0 g N/m2)、N1(4 g N/m2)和N2(8 g N/m2)3个氮素水平。结果表明,N0条件下,与E0处理相比,E1和E2处理(72 天)后小叶章叶片净光合速率分别降低11%和12%(P<0.05),其叶片可溶性蛋白含量、氮素含量(CO2熏蒸72 天)、小叶章株高(CO2熏蒸86 天)均显著低于E0处理(P<0.05);N1条件下,与E0处理相比,E1和E2处理(72 天)后小叶章叶片净光合速率降低5%(P>0.05)和10%(P<0.05),其叶片氮素含量(P<0.05)、小叶章株高均低于E0处理;N2条件下,E1和E2处理(72 天)小叶章净光合速率均呈稍增加的趋势(P>0.05),其叶片可溶性蛋白含量显著增加(P<0.05),氮素含量和小叶章株高无显著变化(P>0.05)。N0、N1和N2条件下,CO2浓度升高均显著增加了小叶章叶片可溶性糖含量。本研究表明长期CO2浓度升高可能通过降低小叶章叶片光合酶活性,进而降低了其净光合速率,而施加高浓度的氮肥可以缓解长期高CO2浓度对湿地植物光合及生长的负面影响。

关键词: 小叶章, CO2浓度升高, 氮素, 光合作用

Abstract:

In order to reveal the effects of elevated CO2 concentration and different nitrogen supply on the photosynthetic characteristics and growth of wetland plants, the marsh predominated with Calamagrostis angustifolia in Sanjiang Plain was studied. A manipulative in situ experiment was performed. Open top chambers (OTCs) were used for the CO2 concentration treatment in order to model the effects of elevated CO2 concentration in the atmospheric environment. Three levels of CO2 concentration, i.e., E0 (380±20 μmol/mol), E1 (550±20 μmol/mol) and E2 (700±20 μmol/mol), and three levels of nitrogen fertilization, i.e., N0 (0 g N/m2 ), N1 (4 g N/m2 ) and N2(8 g N/m2), were applied in the study. Under treatment N0, after a long period of elevated CO2 concentration treatment (72 days), the net photosynthetic rate of C. angustifolia under E1 and E2 was reduced by 11% and 12% (P<0.05) respectively compared with that under E0, and the leaf soluble protein content, nitrogen content (72 days by CO2 fumigation) and the plant height (86 days by CO2 fumigation) were all significantly lower than those under E0 (P<0.05). Under treatment N1, the net photosynthetic rate of C. angustifolia under E1 and E2 (72 days) decreased by 5% (P>0.05) and 10% (P<0.05) compared with that under E0, respectively, and the leaf nitrogen content (P<0.05) and plant height were lower than those under E0. Under treatment N2, the net photosynthetic rate of C. angutifolia under E1 and E2 (72 days) had a slight increase trend (P>0.05), the leaf soluble protein content was significantly enhanced (P<0.05), and the leaf nitrogen content and plant height had no significant change (P>0.05). The elevated CO2 concentration significantly increased the soluble sugar content in the leaves of C. angustifolia under treatment N0, N1 and N2. Our results indicate that the long-term increase of CO2 concentration may decrease the net photosynthetic rate of C. angustifolia leaves by reducing the activity of photosynthesis enzyme, and the high-rate application of nitrogen fertilizer can alleviate the negative effects of long-term high CO2 concentration on photosynthesis and growth of wetland plants.

Key words: Calamagrostis angustifolia, elevated CO2 concentration, nitrogen, photosynthesis

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