<sub id="egwi1"></sub>

<bdo id="egwi1"><code id="egwi1"><optgroup id="egwi1"></optgroup></code></bdo>
  • <sub id="egwi1"></sub>
    1. 日韩av片无码一区二区不卡,成人免费在线播放av,成人亚欧欧美激情在线观看,中文字幕va一区二区三区,大伊香蕉在线精品视频75,精品久久久bbbb人妻,天天操夜夜操,人妻一区二区三区人妻黄色
      網站首頁技術中心 > Dualex植物多酚-葉綠素儀鐵植物中的應用

      Dualex植物多酚-葉綠素儀鐵植物中的應用

      更新時間:2022-04-13 點擊量:2338

      Duale植物多酚-葉綠素儀:腐殖酸通過鐵依賴和非鐵依賴的協同機制緩解禾本科植物的鐵失綠癥

      1649324048304326.png

      1649324060931732.png

      許多研究表明,土壤和沉積腐殖酸對石灰性土壤中種植的植物生長的有益作用與它們改善鐵植物營養的能力之間存在密切關系。這些結果歸因于腐殖酸(HA)改善鐵溶解度和生物利用度的能力。然而,不能排除與腐殖酸對缺鐵植物根系中激活的特定機制的作用有關的其他影響。雖然這個問題已經在雙子葉植物中進行了研究,但在禾本科植物中還沒有具體的研究。在這里,我們研究了從泥炭中提取的腐殖酸(HA)在鐵缺乏和充足的條件下提高小麥植株鐵營養的能力。結果表明,HA可以改善缺鐵小麥植株的生理狀態,減輕缺鐵對植株發育的一些有害影響,并提高植株向營養液分泌植物鐵載體的能力。HA的這種作用與葉片中鐵活性池的增加有關,這可能與HA與營養液中的植物鐵載體相互作用所產生的鐵絡合物的動員有關。反式玉米素核糖苷(tZR)的作用可能有利于鐵從根向地上部的轉移,因為在缺鐵植物中,HA提高了這種植物激素的葉片濃度。

      Humic Acid Alleviates Fe Chlorosis in Graminaceous Plants Through Coordinated Fe-Dependent and Fe-Independent Mechanisms

      Many studies have shown the close relationship between the beneficial action of soil and sedimentary humic acids on the growth of plants c*ted in calcareous soils and their ability to improve Fe plant nutrition. These results have been ascribed to the humic acid (HA) capability to improve Fe solubility and bioavailability. However, other effects more related to a humic acid action on the specific mechanisms activated in roots of plants under Fe deficiency cannot be ruled out. Although this question has been studied in dicotyledonous plants, in graminaceous plants there are no specific studies. Here we investigate the ability of a humic acid extracted from peat (HA) to improve Fe nutrition in wheat plants c*ted under Fe deficient and sufficient conditions. The results show that HA can improve the physiological status of Fe deficient wheat plants by alleviating some of the deleterious consequences of Fe deficiency on plant development and increasing the plant ability to secrete phytosiderophores to the nutrient solution. This action of HA is associated with increases in the Fe-active pool in leaves that might be related to the mobilization of the Fe complexed by HA resulting from the interaction of HA with the phytosiderophores in the nutrient solution. The Fe translocation from the root to the shoot may be favored by the action of trans-Zeatin Riboside (tZR) since the leaf concentration of this phytohormone was enhanced by HA in Fe deficient plants.

      相關閱讀

      Dualex便攜式氮平衡-葉綠素-花青素-黃酮醇測量儀

      PESSL便攜式Dualex便攜式植物多酚-葉綠素儀原理

      主站蜘蛛池模板: 亚洲中文久久久精品无码| 国产精品国产三级国快看| 樱花影院电视剧免费| 国产熟女网站| 精品视频九九| 久久天天躁狠狠躁夜夜不卡| 国产亚洲欧洲中文天堂| 天天澡日日澡狠狠澡欧美老妇| 亚洲成人激情在线影院| 亚欧美国产色| 精品一区二区成人码动漫| 在线亚洲色| www射我里面在线观看| 超碰国产一区二区三区| 美女不带套日出白浆免费视频| 国产一区二区三区九精品| 国产白浆喷水在线视频免费看 | 美女网站18| 色婷婷2020精品| 国产美女被遭强高潮免费网站 | 人妻激情乱人伦视频| 精品a片| 欧美成人精品福利在线视频| 国产美女久久久亚洲综合| 精品午夜福利在线视在亚洲| 丰满白嫩大屁股ass| 婷婷综合网| 久久精品视频一二三四区| 国产一区二区三区黄色片| 精品一区二区三区在线观看| 成人福利网站导航秘?涩涩屋| 一区二区日本在线| 青青草白浆在线| 亚洲精品自拍在线视频| 美女视频黄频大全视频网站 | 中文字字幕在线中文乱码| 桃花岛亚洲精品tv自拍网站| 国产成人免费永久在线平台| 国产精品无码a∨麻豆| 亚洲AV网站| 狠狠色综合网站久久久久久久|