CO2浓度升高对豆科植物碳同化物和常量营养素的影响

S. Mehrotra, Karunakear Prasad Tripathi
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引用次数: 1

摘要

研究了二氧化碳浓度升高(Free Air carbon dioxide Enrichment)对豆科植物Cyamopsis tetragonoloba叶片、豆荚和种子叶绿素、生长、常量营养素、总淀粉、总碳水化合物和磷酸烯醇丙酮酸羧化酶(Pep C)活性的影响。将Cyamopsis tetragonoloba (C3)植物暴露于不同浓度的CO2环境(420±20ppm)和550±20ppm(升高)。与环境对照相比,处理后植株总叶绿素(+39.17%)、总淀粉(+43.73%、+25.44%和+26.35%)、蔗糖(+69.77%、+22.27%和+33.77%)和总碳水化合物(+58.88%、+30.54%和+ 28.38%)含量均有显著提高。在整个植物生长(+40%高度和+25%生物量)中,e[CO2]浓度增加更多。升高条件下,植株全氮(N)含量下降(叶片中为- 12.55%),全磷(P)含量下降(叶片中为- 3.15%),全钾(K)含量下降(叶片中为- 46.63%)。土壤全钾(+60.23%)和全磷(+48.88%)随土壤氮含量(- 16%)的减少而增加。e[CO2]处理下,种子全氮含量平均增加18.15%,全钾、全磷含量变化不显著。磷烯醇丙酮酸羧化酶(Pep C)(叶片中+139.5%)活性和总有机碳(TOC)(叶片和种子中+19.12%,+17.85%)浓度升高,从而通过增强CO2固定促进和指示更高的光合作用。因此,我们的研究表明,e[CO2]积极促进植物组织中糖、碳水化合物的合成、转运和分配,提高叶片和种子组织中的常量营养素水平,这与其他C3植物相反。因此,[CO2]是cyamopsiss品种的福音,种子营养丰富、健康、蛋白质和碳水化合物(C/N)平衡,因此这些品种对印度这样的农业国家的工业应用具有未来的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of Carbon Assimilates and Macronutrients in Legumes under Elevated CO2 Concentration
Impact  of  elevated  carbon  dioxide  (Free  Air  Carbon  dioxide  Enrichment)  was  studied  on  the  plant  chlorophyll,  plant  growth,  plant  macronutrients,  total  starch,  total  carbohydrate  and  the  activity  of  phosphoenol  pyruvate  carboxylase  (Pep  C)  enzymatic  assays  in  leaves, pods and seeds in leguminous plant Cyamopsis tetragonoloba. Plants of Cyamopsis tetragonoloba (C3) were exposed to different atmospheric CO2 concentrations 420 ± 20 ppm (ambient) and 550 ± 20ppm (elevated). An average increase in the plant total chlorophyll (+39.17%), total starch (+43.73%, +25.44% and +26.35% in leaves, pods, and seeds), sucrose (+69.77%, +22.27% and +33.77% in leaves, pods and seed) and total carbohydrate (+58.88%, +30.54% and +28.38 % in leaves, pods and seeds) content were found in plant grown under elevated condition when compared to ambient counterpart. More over overall plant growth (+40% height and +25% biomass) increased in e[CO2] concentration. Plant total nitrogen (N) content decreased (−12.55% in leaves) under the elevated condition where as total phosphorus (P) decreased (−3.15% in leaves) along with total potassium (K) (−46.63% in leaves). In soil, total potassium (+60.23%) and phosphorous (+48.88%) were found to increase with (−16%) decrease in soil nitrogen content. In seed total nitrogen content increased (+18.15%) on an average with no significant change in total potassium and phosphorus content under e[CO2]. Phosphoenolpyruvate carboxylase  enzyme  (Pep  C)  (+139.5%  in  leaves)  activity  and  total  organic  carbon  (TOC)  (+19.12%,  +17.85%  in  leaves  and  seeds)  increases in elevated concentration thus promoting and indicating higher photosynthesis via enhanced CO2 fixation. Thus our studies showed that e[CO2] positively promotes sugars, carbohydrates synthesis, translocation and partitioning in plant tissues and enhanced macronutrients level in leaves and seeds tissue which is contradictory to other C3 plants. Thus e[CO2] works as the boon for Cyamopsisvarieties and the seeds are nutritionally rich, healthy, balanced in proteins and carbohydrates (C/N) and so these varieties have future implication for industrial use in the agricultural country like India.
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