沙吧体育投注

  • <tr id='eMpK6B'><strong id='eMpK6B'></strong><small id='eMpK6B'></small><button id='eMpK6B'></button><li id='eMpK6B'><noscript id='eMpK6B'><big id='eMpK6B'></big><dt id='eMpK6B'></dt></noscript></li></tr><ol id='eMpK6B'><option id='eMpK6B'><table id='eMpK6B'><blockquote id='eMpK6B'><tbody id='eMpK6B'></tbody></blockquote></table></option></ol><u id='eMpK6B'></u><kbd id='eMpK6B'><kbd id='eMpK6B'></kbd></kbd>

    <code id='eMpK6B'><strong id='eMpK6B'></strong></code>

    <fieldset id='eMpK6B'></fieldset>
          <span id='eMpK6B'></span>

              <ins id='eMpK6B'></ins>
              <acronym id='eMpK6B'><em id='eMpK6B'></em><td id='eMpK6B'><div id='eMpK6B'></div></td></acronym><address id='eMpK6B'><big id='eMpK6B'><big id='eMpK6B'></big><legend id='eMpK6B'></legend></big></address>

              <i id='eMpK6B'><div id='eMpK6B'><ins id='eMpK6B'></ins></div></i>
              <i id='eMpK6B'></i>
            1. <dl id='eMpK6B'></dl>
              1. <blockquote id='eMpK6B'><q id='eMpK6B'><noscript id='eMpK6B'></noscript><dt id='eMpK6B'></dt></q></blockquote><noframes id='eMpK6B'><i id='eMpK6B'></i>
                您的瀏覽器版本太低,請使用IE9(或以上)、谷歌、火狐︼等現代瀏覽器。360、QQ、搜狗等瀏覽器請使用極速模式。
                學院發表文章

                Responses of the content and spectral characteristics of dissolved organic matter in intercropping soil to drought in northeast China

                發布日期:2023-07-07瀏覽次數:信息來源:土地科學與技術學院

                Yumei Peng   Huasen Xu   Zi Wang   Jia Shi   Junfei Lv   Xiang Wang

                Abstract

                Background and aims

                Dissolved organic matter (DOM) has a key role in soil biogeochemistry and is vulnerable to global climate change such as drought stress. Intercropping provides greater bioavailable resources and soil carbon inputs, compared to monoculture. However, little data exist on the DOM quantity and quality of intercropping soil responses to drought.


                Methods

                We conducted a two-year manipulated rainfall-reduction field experiment including water (the control and drought), and cropping system (millet/peanut intercropping and corresponding monoculture). After crop harvesting, DOM contents and compositions were determined and characterized using ultraviolet–visible absorbance and fluorescence spectroscopy.

                 

                Results

                In 0–20 cm, DOC contents were reduced by 44.3% in intercropping and 23.8% under drought. However, the specific ultraviolet absorbance at 254 nm (SUVA254) and 260 nm (SUVA260) of DOM were increased in intercropping, indicating greater aromatic and hydrophobic DOM in intercropping soil, and the enhanced effect was observed under drought. Four identified DOM components were UVC humic-like (C1), microbial-derived humic-like (C2), unidentified humic-like (C3), and tyrosine-like (C4). In detail, C1, C2, C3, and C4 were all higher in intercropping, especially under drought treatment (P?<?0.05). Humification index (HIX), fluorescence index (FI), and biological index (BIX) indicated mixed DOM sources (terrestrially-derived and microbial-derived), FI and BIX were higher under drought.

                 

                Conclusion

                Although drought decreased DOC content, the DOM components in intercropping could be more stable due to their higher aromaticity and hydrophobicity. These findings provide a new theoretical basis to evaluate soil fertility in various agroecosystems and understand how soil DOM responding to drought.


                Responses of the content and spectral characteristics of dissolved organic matter in intercropping soil to drought in northeast China.pdf

                "十大滚球体育平台,玩滚球的十大正规平台,可以玩滚球的正规app

                "十大滚球体育平台,玩滚球的十大正规平台,可以玩滚球的正规app