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烟草中光呼吸速率高低的系谱选择对净光合作用的影响。

The effect on net photosynthesis of pedigree selection for low and high rates of photorespiration in tobacco.

作者信息

Zelitch I, Day P R

机构信息

Departments of Biochemistry and of Genetics, The Connecticut Agricultural Experiment Station, New Haven, Connecticut 06504.

出版信息

Plant Physiol. 1973 Jul;52(1):33-7. doi: 10.1104/pp.52.1.33.

Abstract

A normal appearing plant with a low rate of photorespiration (ratio of (14)CO(2) released light/dark = 1.6) was found in an unselected tobacco (Nicotiana tabacum) cultivar. The plant was self-pollinated, and further selections were made on several successive generations. Excised leaves from the progeny of the selections were examined for photorespiration and net CO(2) assimilation in normal air during photosynthesis. Similar measurements were made of plants derived from selfed parents with high rates of photorespiration (ratio of (14)CO(2) released light/dark = 3.0 or greater). Efficient photosynthetic plants (greater than 22.0 mg of CO(2) dm(-2) hr(-1)) with low rates of photorespiration produced a larger proportion of efficient progeny (about 25%) than did selfing inefficient plants (about 6%), but this proportion did not increase in successive generations.Wide variations in photorespiration and photosynthesis were observed within populations of normal appearing plants grown in the same greenhouse environment. Several plants had photosynthetic rates as great as 25 mg of CO(2) dm(-2) hr(-1) coupled with light/dark ratios below 2.0.The characteristics of two representative contrasting plants were studied more extensively and were fairly constant, irrespective of leaf position on the stalk, leaf size, or time of sampling within approximately a 2-week period. One plant with a mean light/dark ratio of 1.7 showed a mean net photosynthesis of 23.4 mg of CO(2) dm(-2) hr(-1), while an inefficient plant with a light/dark ratio of 3.7 had an average photosynthetic rate of only 17.0 mg CO(2) dm(-2) hr(-1). The dark respiration was similar in these plants. Thus decreasing the photorespiratory rate by about one-half increased net photosynthesis by 38%. The results suggest that diminishing photorespiration, in an otherwise suitable genetic background, will result in large increases in net photosynthesis and plant productivity.

摘要

在一个未经筛选的烟草(Nicotiana tabacum)品种中发现了一株外观正常、光呼吸速率较低(光照/黑暗条件下释放的(14)CO(2)比率 = 1.6)的植株。该植株进行了自花授粉,并在连续几代中进行了进一步筛选。对筛选后代的离体叶片在光合作用的正常空气中进行了光呼吸和净CO(2)同化的检测。对来自光呼吸速率高(光照/黑暗条件下释放的(14)CO(2)比率 = 3.0或更高)的自交亲本的植株也进行了类似测量。与光呼吸速率低的高效光合植株(大于22.0 mg CO(2) dm(-2) hr(-1))相比,低效光合植株自交产生的高效后代比例更大(约25%),而低效光合植株自交产生的高效后代比例约为6%,但这一比例在连续几代中并未增加。在同一温室环境中生长的外观正常的植株群体中,观察到光呼吸和光合作用存在广泛差异。几株植株的光合速率高达25 mg CO(2) dm(-2) hr(-1),且光照/黑暗比率低于2.0。对两株具有代表性的对比植株的特性进行了更广泛的研究,并且这些特性相当稳定,与茎上的叶位、叶片大小或在大约两周时间内的采样时间无关。一株平均光照/黑暗比率为1.7的植株,其平均净光合速率为23.4 mg CO(2) dm(-2) hr(-1),而一株光照/黑暗比率为3.7的低效植株,其平均光合速率仅为17.0 mg CO(2) dm(-2) hr(-1)。这些植株的暗呼吸相似。因此,将光呼吸速率降低约一半可使净光合速率提高38%。结果表明,在其他合适的遗传背景下,降低光呼吸速率将导致净光合速率和植物生产力大幅提高。

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本文引用的文献

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Plant Physiol. 1972 May;49(5):764-8. doi: 10.1104/pp.49.5.764.
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Proc Natl Acad Sci U S A. 1961 Sep;47(9):1423-33. doi: 10.1073/pnas.47.9.1423.

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