首页> 外文OA文献 >Chlorophyll a fluorescence and antioxidant analyses provide evidence for the operation of alternative electron sinks during leaf senescence in a stay-green mutant of Festuca pratensis
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Chlorophyll a fluorescence and antioxidant analyses provide evidence for the operation of alternative electron sinks during leaf senescence in a stay-green mutant of Festuca pratensis

机译:叶绿素a的荧光和抗氧化剂分析提供了证据,证明了Festuca pratensis的绿色持久突变体中叶片衰老过程中其他电子宿的运作。

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摘要

Mutation of the sid gene in Festuca pratensis prevents chlorophyll degradation. The senescing leaves retain their chlorophyll complement and stay green. Nevertheless, CO2 assimilation and ribulose-bisphosphate carboxylase/oxygenase content decline in both mutant and wild-type plants. Photosynthesis and chlorophyll a fluorescence measurements were performed in air and at low oxygen to prevent photorespiration. The maximum extractable activity of ribulose 1,5 bisphosphate carboxylase was higher in the senescent mutant leaves than in those of the wild-type control hut Mas much lower than that observed in the mature leaves of either genotype. The activation state of this enzyme was similar in mutant and wild-type lines at equivalent stages of development. Analysis of chlorophyll a fluorescence quenching with varying irradianco showed similar characteristics for mature leaves of the two genotypes. Genotypic variations in photosystem II (I'SII) efficiency were observed only in the senescent leaves. Photochemical quenching and the quantum efficiency of PSII were greater in the senescent mutant leaves than in (he wild type at a given irradiance. The calculated electron flux through PSII was substantially higher in the mutant with a greater proportion of electrons directed to photorespiration. Maximum catalytic activities of ascorbate peroxidase decreased in senescent compared to mature leaves of both genotypes, while glutathione reductase and monodehydroascorbate reductase were unchanged in both cases. Superoxide dismutase activity was approximately doubled and dehydroascorbate reductase activity was three times higher in senescent leaves compared with the mature leaves of both genotypes. In no case was there a difference in enzyme activities between mutant and wild type at equivalent growth stages. The pool of reduced ascorbate was similar in the mature leaves of the two genotypes, whereas it was significantly higher in the senescent leaves of the mutant compared with the wild type. Conversely, the hydrogen peroxide content was significantly higher in the mature leaves of the wild type than in those of the mutant, but in senescent leaves similar values were obtained. In leaves subjected to chilling stress the reduced ascorbate pool was higher in both mature and senescent leaves of the mutant than in their wild-type counterparts. Similarly, the hydrogen peroxide pool was significantly lower in both mature and senescent leaves of the mutant than in the wild type. We conclude that, in spite of deceased CO2 assimilation, the mutant is capable of high rates of electron Slow. The high ascorbate/hydrogen peroxide ratio observed in the mutant, particularly at low temperatures, suggests that the senescent leaves are not subject to enhanced oxidative stress.
机译:Festuca pratensis中sid基因的突变可防止叶绿素降解。衰老的叶片保留其叶绿素补体并保持绿色。然而,无论是突变型植物还是野生型植物,CO2同化作用和核糖二磷酸羧化酶/加氧酶的含量均下降。在空气和低氧下进行光合作用和叶绿素a荧光测量,以防止光呼吸。在衰老的突变叶片中,核糖1,5-二磷酸羧化酶的最大可提取活性高于野生型对照小屋的Mas,远低于在任一基因型的成熟叶片中观察到的活性。在同等的发育阶段,该酶的活化状态在突变型和野生型品系中相似。叶绿素a荧光猝灭与不同的irradianco的分析显示出两种基因型的成熟叶片的相似特征。仅在衰老的叶片中观察到光系统II(I'SII)效率的基因型变化。在给定的辐照度下,衰老突变体叶片中的光化学猝灭和PSII的量子效率要高于野生型叶片。通过突变体的PSII计算出的电子通量在突变体中要高得多,其中有较大比例的电子用于光呼吸。最大的催化作用与两种基因型的成熟叶片相比,衰老的抗坏血酸过氧化物酶活性降低,而两种情况下谷胱甘肽还原酶和单脱氢抗坏血酸还原酶的活性均未改变,超氧化物歧化酶活性大约是两倍,而脱氢抗坏血酸还原酶活性则是成熟叶片的三倍。在相同的生长阶段,突变型和野生型之间的酶活性没有差异,两种基因型的成熟叶片中抗坏血酸的还原池相似,而衰老叶片中的抗坏血酸池显着更高。突变体与野生型相比e。相反,野生型成熟叶片中的过氧化氢含量明显高于突变体中的叶片,但在衰老叶片中获得了相似的值。在遭受冷胁迫的叶片中,突变体的成熟和衰老叶片中抗坏血酸库的减少量均高于野生型叶片。同样,该突变体的成熟叶和衰老叶中的过氧化氢池均显着低于野生型。我们得出的结论是,尽管CO2的同化作用已降低,但该突变体仍能够以较高的速率产生慢速电子。在突变体中观察到的高抗坏血酸/过氧化氢比率,特别是在低温下,表明衰老的叶片没有受到增强的氧化胁迫。

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