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植物非光依赖叶绿素合成研究进展 被引量:1
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作者 薛娴 万迎朗 +1 位作者 石欣隆 曾繁梓 《植物生理学报》 CAS CSCD 北大核心 2020年第7期1383-1394,共12页
植物叶绿素暗合成能力与非光依赖型原叶绿素酸酯还原酶(DPOR)有关,光合生物进化过程中从细菌到裸子植物均保留了这个古老的酶,完全黑暗条件下可以合成叶绿素。被子植物则由于丢失了这个酶,失去了叶绿素暗合成能力。本文综合国内外有关... 植物叶绿素暗合成能力与非光依赖型原叶绿素酸酯还原酶(DPOR)有关,光合生物进化过程中从细菌到裸子植物均保留了这个古老的酶,完全黑暗条件下可以合成叶绿素。被子植物则由于丢失了这个酶,失去了叶绿素暗合成能力。本文综合国内外有关非光依赖叶绿素合成的研究成果,从叶绿素合成途径过程的关键反应、叶片中质体结构及光系统发育等方面,对黑暗条件下植物叶绿素合成进行综述,并从植物进化角度对叶绿素暗合成及其影响因素做了总结,为研究植物暗形态建成以及暗-光转变过程中光合器官建成提供基础。 展开更多
关键词 叶绿素暗合成 非光依赖型原叶绿素酸酯还原酶 光系统发育
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Glucose and δ-Aminolevulinic Acid Stimulate the Dark Chlorophyll Synthesis of Rice Seedlings 被引量:5
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作者 杨棋明 蔡慧美 杨佳豪 《Acta Botanica Sinica》 CSCD 2003年第4期422-426,共5页
This research was to examine if rice (Oryza sativa L.), a monocotyledon of angiosperm, was able to synthesize chlorophyll (Chl) in complete darkness. Five-cm-tall etiolated seedlings of rice were used as starting mate... This research was to examine if rice (Oryza sativa L.), a monocotyledon of angiosperm, was able to synthesize chlorophyll (Chl) in complete darkness. Five-cm-tall etiolated seedlings of rice were used as starting materials and treated with or without various concentrations of glucose and/or δ-aminolevulinic acid (ALA) in the dark. Leaves harvested at the indicated time were determined for their contents of Chl, protoporphyrin Ⅸ (Proto), Mg-protoporphyrin Ⅸ (Mg-Proto) and protochlorophyllide (Pchlide). The mole percentage of porphyrin was calculated. The Chl content in the etiolated rice seedlings slightly increased from about 2.5 μg/g to 7.5 μg/g within 12 d in the dark, but the total Chl of dark-grown rice increased from 0.36 μg/g to 3.6 μg/g. While the mole percentages of Proto, Mg-Proto and Pchlide in the dark-grown seedlings without any treatment were about 65%, 27.5% and 7.5% at the beginning, respectively, those in the light-grown seedlings were about 42.5%, 35% and 22.5%, respectively. The mole percentage of porphyrin of etiolated seedlings resumed its normal ratio within 2 d after treatment with glucose. While the Chl content of etiolated seedlings grown in culture solution with 3% and 6% glucose increased 2.5 and 4.0 folds, respectively, those with 3% and 6% glucose and 1 mmol/L ALA increased 22 and 24 folds, respectively. It is concluded that angiosperm might be able to synthesize a small amount of Chl in complete darkness, that either glucose or ALA could stimulate dark Chl synthesis in angiosperm, and that a combination of glucose and ALA exhibited an additional effect. It is still unknown and remains to be further explored what is the mechanism of the effect of glucose and ALA on the Chl synthesis of rice in the dark. 展开更多
关键词 ANGIOSPERM rice dark chlorophyll synthesis GLUCOSE δ-aminolevulinic acid protoporphyrin Mg-protoporphyrin PROTOCHLOROPHYLLIDE
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