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光照对芥菜叶(白芥)苹果酸含量及阴离子/阳离子平衡的影响。

The effect of illumination of the malic acid content and anion/cation balance of mustard leaves (Sinapis alba).

作者信息

Palmer M J, Bacon J S

出版信息

Biochem J. 1967 Jan;102(1):304-12. doi: 10.1042/bj1020304.

Abstract
  1. Mustard plants have been grown under conditions in which the length of artificial day could be controlled. 2. Leaf samples were analysed for malic acid and citric acid, and for a number of inorganic anions and cations. A simple method is described by which sap was obtained from 0.5g. samples of leaves. 3. In days of 16hr. or more, malic acid was accumulated; the chief cation accumulated was calcium. 4. When the day-length was reduced the malic acid content decreased considerably but the calcium content remained the same. There was little change in the pH value of the sap, the balance of anions and cations having been maintained mainly by increases in citrate and nitrate contents. Analyses of the whole leaf still showed some deficiency in anion after sodium, potassium, calcium, magnesium, nitrate, sulphate, inorganic phosphate, chloride, malate and citrate had been accounted for. 5. Analyses at shorter intervals revealed a large diurnal variation in malic acid content, which increased during the first 5-6hr. of the light period, and fell during darkness. 6. The significance of these findings is discussed, and it is suggested that malic acid accumulation is a by-product of photosynthesis, calcium being taken up irreversibly to maintain anion/cation balance, and hence creating a continuing need for anions to balance it.
摘要
  1. 芥菜已在可控制人工日照时长的条件下种植。2. 对叶片样本进行了苹果酸、柠檬酸以及多种无机阴离子和阳离子的分析。文中描述了一种从0.5克叶片样本中获取汁液的简单方法。3. 在日照时长为16小时或更长时,苹果酸会积累;积累的主要阳离子是钙。4. 当日照时长缩短时,苹果酸含量大幅下降,但钙含量保持不变。汁液的pH值变化不大,阴离子和阳离子的平衡主要通过柠檬酸盐和硝酸盐含量的增加得以维持。对整片叶子的分析表明,在钠、钾、钙、镁、硝酸盐、硫酸盐、无机磷酸盐、氯化物、苹果酸盐和柠檬酸盐都已计入后,阴离子仍存在一些不足。5. 更短间隔时间的分析显示,苹果酸含量存在很大的昼夜变化,在光照期的前5 - 6小时增加,在黑暗中下降。6. 讨论了这些发现的意义,并提出苹果酸积累是光合作用的副产物,钙被不可逆地吸收以维持阴离子/阳离子平衡,因此持续需要阴离子来平衡它。

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本文引用的文献

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Acid-producing mechanisms in minced leaves.碎叶中的产酸机制。
Biochem J. 1945;39(2):172-8. doi: 10.1042/bj0390172.
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Malate Synthetase in Higher Plants.高等植物中的苹果酸合成酶
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