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Short term carbon isotopic fractionation in plants.

机译:植物中的短期碳同位素分馏。

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摘要

A system was developed for measuring carbon isotopic fractionation in plants over a time interval of 1-3 hours, in contrast to leaf combustion studies which give long-term, integrated discrimination measurements. The system was used to study environmental effects on soybean (Glycine max) and corn (Zea mays) discrimination. Changes in leaf temperature, photon flux density (PFD), O{dollar}sb2{dollar} concentration, and CO{dollar}sb2{dollar} concentration produced little or no change in measured discrimination ({dollar}Delta{dollar}). For soybean, {dollar}Delta{dollar} increased with decreasing PFD. For corn, {dollar}Delta{dollar} decreased with decreasing O{dollar}sb2{dollar} concentration. For both soybean and corn, {dollar}Delta{dollar} increased with increasing CO{dollar}sb2{dollar} concentration. These changes in {dollar}Delta{dollar} were interpreted as environmental effects on stomatal conductance and photosynthetic capacity, which indirectly affect {dollar}Delta{dollar} by altering C{dollar}sb{lcub}rm i{rcub}{dollar}/C{dollar}sb{lcub}rm a{rcub}{dollar}.; Respiratory discrimination in the dark and light was also investigated. Respired CO{dollar}sb2{dollar} was 5{dollar}perthous{dollar} and 0-1{dollar}perthous{dollar} more positive than leaf carbon for soybean and corn, respectively. Photorespiratory discrimination was 6-7{dollar}perthous{dollar} for soybean, supporting the contention that glycine decarboxylase may be the source of discrimination in the photorespiratory pathway.; No significant increase in {dollar}Delta{dollar} during corn leaf development was found using 6-13 day old corn seedlings, suggesting any direct C{dollar}sb3{dollar} fixation occurring in young corn leaves must be {dollar}<{dollar}10% of total carbon fixation. Immature leaves at higher rank were {dollar}sim{dollar}1{dollar}perthous{dollar} more positive isotopically than mature leaves of lower rank, as measured by leaf combustion analysis. The difference in the {dollar}deltasp{lcub}13{rcub}{dollar}C values of leaf carbon without a corresponding difference in measured discrimination implies processes such as respiration or metabolite transport lead to further fractionation.; Discrimination during the four CAM phases for Kalanchoe daigremontiana was similar to expected values for the pathways operative during each phase. The CO{dollar}sb2{dollar} leaked during the deacidification phase was positive (+7 to +11{dollar}perthous{dollar}) relative to leaf carbon ({dollar}-{dollar}17{dollar}perthous{dollar}); this loss of heavy CO{dollar}sb2{dollar} from the leaf may account for the discrepancy between leaf combustion measurements and the observed nighttime discrimination.
机译:与叶片燃烧研究相比,该系统开发了一种用于在1-3小时的时间间隔内测量植物中碳同位素分馏的系统,而叶片燃烧研究则提供了长期,综合的判别测量。该系统用于研究环境对大豆(Glycine max)和玉米(Zea mays)区分的影响。叶片温度,光子通量密度(PFD),O {sb2 {dollar}浓度和CO {ssb2 {dollar}}浓度的变化几乎没有或没有变化({dollar} Delta {dollar})。对于大豆,{PFD}会降低{dollar} Delta {dollar}。对于玉米,随着O {dollar} sb2 {dollar}浓度的降低,{dollar} Delta {dollar}降低。对于大豆和玉米,{COOL} sb2 {USDOL}浓度增加时,{COOL}的{Delta}会增加。 {dollar} Delta {dollar}中的这些变化被解释为对气孔导度和光合作用能力的环境影响,通过改变C {dollar} sb {lcub} rm i {rcub} {dollar}而间接影响{dollar} Delta {dollar} / C {dollar} sb {lcub} rm a {rcub} {dollar}。还研究了在黑暗和黑暗中的呼吸歧视。呼吸的CO {dollar} sb2 {dollar}比大豆和玉米的叶碳分别高5 {dollar} perthous {dollar}和0-1 {dollar} perthous {dollar}。大豆的光呼吸歧视为6-7 {美元} /美元{美元},这支持了以下观点:甘氨酸脱羧酶可能是光呼吸途径的歧视来源。使用6-13日龄的玉米幼苗,发现在玉米叶片发育过程中{dollar} Delta {dollar}没有显着增加,表明在年轻玉米叶片中发生的任何直接C {dollar} sb3 {dollar}固定都必须{dollar} <{美元}固碳总量的10%。通过叶片燃烧分析测量,与较低等级的成熟叶片相比,较高等级的未成熟叶片的{iso} {dol} {{dollar} 1 {dollar} perthous {dollar}同位素更正。叶片碳的{deltaasp {lcub} 13 {rcub} {dollar} C值的差异在测量的判别力上没有相应的差异,这意味着诸如呼吸作用或代谢物运输的过程导致了进一步的分级分离。在四个CAM阶段中,对Kalanchoe daigremontiana的区分与每个阶段中可操作路径的预期值相似。相对于叶片碳({dollar}-{dollar} 17 {dollar} perthous {dollar}),在脱酸阶段泄漏的CO {dollar} sb2 {dollar}为正(+7至+11 {dollarperthous {dollar})。 );从叶片中损失的大量CO {sb2 {dollar}}可能解释了叶片燃烧测量值与观察到的夜间辨别力之间的差异。

著录项

  • 作者

    Rooney, Melodye Ann.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Biology Plant Physiology.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 216 p.
  • 总页数 216
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学 ;
  • 关键词

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