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首页> 外文期刊>African Journal of Biotechnology >Photosynthetic characterization of a rolled leaf mutant of rice (Oryza sativa L.)
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Photosynthetic characterization of a rolled leaf mutant of rice (Oryza sativa L.)

机译:水稻(Oryza sativa L.)的卷叶突变体的光合特性

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A new rolling leaf rice mutant?was?identified which showed an?apparently straighter longitudinal shape normal transverse rolling characters at all developing stages. The chlorophyll contents per fresh weight of this mutant leaves were lower than those of wild-type. The electron transfer rate (ETR) and photochemical quenching (qP) were a little higher than those of wild-type. However, because of significant increase of non-photochemical quenching (NPQ), the maximal?photosystem II (PSII)?photochemistry (Fv/Fm) and the efficiency of excitation energy trapping by open PSII reaction centers in the light–adapted state (Fv’/Fm’) were lower than those of wild-type. Low temperature fluorescence analysis showed that rolling leaf mutant assigned more excited energy to?photosystem I (PSI)?than to PSII. The superoxide dismutase (SOD) content, soluble sugar content, proline content and malonaldehyde (MDA) content of the rolling leaf mutant were nearly 39.4, 91.2, 96.7 and 143.7% of those of wild-type, respectively. The great increase of MDA content suggests that membrane lipid system was damaged in rolling leaf mutant leaves. These results indicate that rolling leaf mutant decrease the efficiency of light utilization compared?to?the?wild-type. This was because of the reduction of leaf area and chlorophyll contents, and the dissipation of more excitation?energy as NPQ as a result of avoiding potential damage of membrane structure.
机译:确定了一个新的rolling叶水稻突变体,该突变体在所有发育阶段均表现出明显较直的纵向形状,正常的横向横纹特征。该突变叶的每鲜重叶绿素含量低于野生型。电子传递速率(ETR)和光化学猝灭(qP)略高于野生型。然而,由于非光化学猝灭(NPQ)的显着增加,最大光系统II(PSII)光化学(Fv / Fm)和开放PSII反应中心在光适应状态下捕获激发能的效率(Fv '/ Fm')低于野生型。低温荧光分析表明,滚动叶片突变体分配给“光系统I”(PSI)的激发能量比赋予PSII更多。滚动叶片突变体的超氧化物歧化酶(SOD)含量,可溶性糖含量,脯氨酸含量和丙二醛(MDA)含量分别为野生型的近39.4%,91.2%,96.7%和143.7%。 MDA含量的大量增加表明,在滚动的叶片突变体叶片中膜脂质系统被破坏。这些结果表明,与野生型相比,滚动叶片突变体降低了光利用效率。这是因为减少了叶面积和叶绿素含量,并且由于避免了膜结构的潜在破坏而耗散了更多的激发能(NPQ)。

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