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The over-expression of the plastidial transglutaminase from maize in Arabidopsis increases the activation threshold of photoprotection

机译:拟南芥中玉米质体转谷氨酰胺酶的过表达增加了光保护的激活阈值

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摘要

Plastidial transglutaminase is one of the most promising enzymes in chloroplast bioenergetics due to its link with polyamine pathways and the cross talk with signals such as Ca2+ and GTP. Here, we show the effect of the increase of transglutaminase activity in Arabidopsis by using genetic transformation techniques. These lines fulfill their biological cycle normally (normal growth in soil, production of viable seeds) and show a relatively mild increase in transglutaminase activity (127%). These overexpressors of transglutaminase (OE TGase) have an extended stroma thylakoid network (71% higher number of PSIIβ centers), similar chlorophyll content (-4%), higher linear electron flow (+13%), and higher threshold of photoprotection activation (∼100%). On the other hand OE TGase showed a reduced maximum photochemistry of PSII (-6.5%), a smaller antenna per photosystem II (-25%), a lower photoprotective “energization” quenching or qE (-77% at 490 μmol photons m-2 s-1) due to a higher threshold of qE activation and slightly lower light induced proton motive force (-17%). The role of the polyamines and of the transglutaminase in the regulation of chemiosmosis and photoprotection in chloroplasts is discussed.
机译:质膜转谷氨酰胺酶是叶绿体生物能学中最有前途的酶之一,因为它与多胺途径有关,并与诸如Ca2 +和GTP的信号发生串扰。在这里,我们通过使用遗传转化技术显示了拟南芥中转谷氨酰胺酶活性增加的影响。这些品系正常完成其生物周期(土壤正常生长,可存活种子的产生),并且转谷氨酰胺酶活性相对温和地提高(127%)。这些转谷氨酰胺酶(OE TGase)的过表达者具有广泛的间质类囊体网络(PSIIβ中心数增加71%),相似的叶绿素含量(-4%),更高的线性电子流(+ 13%)和更高的光保护活化阈值( 〜100%)。另一方面,OE TGase显示PSII的最大光化学降低(-6.5%),每个光系统II的天线更小(-25%),光保护性的“激发”猝灭或qE更低(在490μmol光子m-下为-77%) 2 s-1)是由于更高的qE激活阈值和稍低的光诱导质子动力(-17%)。讨论了多胺和转谷氨酰胺酶在调节叶绿体中化学渗透和光保护中的作用。

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    Ioannidis Nikolaos E.;

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  • 年度 2016
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  • 正文语种 eng
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