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豌豆(L.)植株的非叶光合作用:从叶片到种子内部

Non-Foliar Photosynthesis in Pea ( L.) Plants: Beyond the Leaves to Inside the Seeds.

作者信息

Stepanova Nataliia, Zhilkina Tatiana, Kamionskaya Anastasia, Smolikova Galina

机构信息

Federal State Institution Federal Research Centre "Fundamentals of Biotechnology", Russian Academy of Sciences, 119071 Moscow, Russia.

Department of Plant Physiology and Biochemistry, St. Petersburg State University, 199034 St. Petersburg, Russia.

出版信息

Plants (Basel). 2024 Oct 21;13(20):2945. doi: 10.3390/plants13202945.

Abstract

In addition to leaves, photosynthesis can occur in other green plant organs, including developing seeds of many crops. While the majority of studies examining photosynthesis are concentrated on the leaf level, the role of other green tissues in the production of total photoassimilates has been largely overlooked. The present work studies the photosynthetic behavior of leaves and non-foliar (pericarps, coats, and cotyledons) organs of pea ( L.) plants at the middle stage of seed maturation. The Chl fluorescence transient was examined based on OJIP kinetics using the FluorPen FP 110. A discrepancy was observed between the performance index (PI) for foliar and non-foliar plant tissues, with the highest level noted in the leaves. The number of absorbed photons (ABS) and captured energy flow (TRo) per reaction center (RC) were elevated in the non-foliar tissues, which resulted in a faster reduction in Q. Conversely, the energy dissipation flux per RC (DIo/RC and PHI_Do) indicated an increase in the overall dissipation potential of active reaction centers of photosystem II. This phenomenon was attributed to the presence of a higher number of inactive RCs in tissues that had developed under low light intensity. Furthermore, the expression of genes associated with proteins and enzymes that regulate ribulose-1,5-bisphosphate carboxylase/oxygenase (RuBisCo) activity was observed, including chaperonins Cpn60α and Cpn60β, RuBisCO activase, as well as phosphoribulokinase. The expression of these genes was found to differ between foliar and non-foliar tissues, indicating that the activation state of RuBisCO may be modified in response to light intensity. Overall, the present study provides insights into the mechanisms by which non-foliar green tissues of plants adapt to efficient light capture and utilization under low light conditions.

摘要

除了叶片外,光合作用还可以在其他绿色植物器官中发生,包括许多作物的发育种子。虽然大多数研究光合作用的实验都集中在叶片水平,但其他绿色组织在总光合产物生产中的作用在很大程度上被忽视了。本研究考察了豌豆(L.)植株种子成熟中期叶片和非叶器官(果皮、种皮和子叶)的光合行为。使用FluorPen FP 110基于OJIP动力学检测叶绿素荧光瞬变。观察到叶和非叶植物组织的性能指数(PI)存在差异,其中叶片中的PI最高。每个反应中心(RC)吸收的光子数(ABS)和捕获的能量流(TRo)在非叶组织中升高,这导致Q更快地减少。相反,每个RC的能量耗散通量(DIo/RC和PHI_Do)表明光系统II活性反应中心的整体耗散潜力增加。这种现象归因于在低光照强度下发育的组织中存在更多的非活性RC。此外,还观察到与调节核酮糖-1,5-二磷酸羧化酶/加氧酶(RuBisCo)活性的蛋白质和酶相关的基因表达,包括伴侣蛋白Cpn60α和Cpn60β、RuBisCO活化酶以及磷酸核糖激酶。发现这些基因在叶和非叶组织中的表达不同,这表明RuBisCO的激活状态可能会根据光照强度而改变。总的来说,本研究为植物非叶绿色组织在低光照条件下适应高效光捕获和利用的机制提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eba2/11511552/95cfb9d7c351/plants-13-02945-g001.jpg

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