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对 C4 草(狗牙根(L.)Pers.)对遮荫的光合驯化的综合评估。

A comprehensive assessment of photosynthetic acclimation to shade in C4 grass (Cynodon dactylon (L.) Pers.).

机构信息

Coastal Salinity Tolerant Grass Engineering and Technology Research Center, Ludong University, Yantai, 264025, Shandong, China.

College of Agriculture, Ludong University, Yantai, 264025, Shandong, China.

出版信息

BMC Plant Biol. 2024 Jun 21;24(1):591. doi: 10.1186/s12870-024-05242-x.

Abstract

BACKGROUND

Light deficit in shaded environment critically impacts the growth and development of turf plants. Despite this fact, past research has predominantly concentrated on shade avoidance rather than shade tolerance. To address this, our study examined the photosynthetic adjustments of Bermudagrass when exposed to varying intensities of shade to gain an integrative understanding of the shade response of C4 turfgrass.

RESULTS

We observed alterations in photosynthetic pigment-proteins, electron transport and its associated carbon and nitrogen assimilation, along with ROS-scavenging enzyme activity in shaded conditions. Mild shade enriched Chl b and LHC transcripts, while severe shade promoted Chl a, carotenoids and photosynthetic electron transfer beyond Q (ET/RC, φE, Ψ). The study also highlighted differential effects of shade on leaf and root components. For example, Soluble sugar content varied between leaves and roots as shade diminished SPS, SUT1 but upregulated BAM. Furthermore, we observed that shading decreased the transcriptional level of genes involving in nitrogen assimilation (e.g. NR) and SOD, POD, CAT enzyme activities in leaves, even though it increased in roots.

CONCLUSIONS

As shade intensity increased, considerable changes were noted in light energy conversion and photosynthetic metabolism processes along the electron transport chain axis. Our study thus provides valuable theoretical groundwork for understanding how C4 grass acclimates to shade tolerance.

摘要

背景

遮荫环境中的光亏缺会严重影响草坪植物的生长和发育。尽管如此,过去的研究主要集中在避荫而不是耐荫性上。为了解决这个问题,我们的研究检查了百慕大草在不同遮荫强度下的光合调节,以综合了解 C4 草坪草的遮荫反应。

结果

我们观察到在遮荫条件下,光合色素-蛋白、电子传递及其相关的碳和氮同化以及 ROS 清除酶活性发生了改变。轻度遮荫丰富了 Chl b 和 LHC 转录本,而重度遮荫促进了 Chl a、类胡萝卜素和光合电子传递超过 Q(ET/RC、φE、Ψ)。该研究还强调了遮荫对叶片和根系成分的不同影响。例如,随着遮荫减少 SPS、SUT1,但上调 BAM,叶片和根之间的可溶性糖含量会有所不同。此外,我们观察到遮荫会降低叶片中涉及氮同化(如 NR)和 SOD、POD、CAT 酶活性的基因的转录水平,尽管在根中它会增加。

结论

随着遮荫强度的增加,沿电子传递链轴的光能转换和光合代谢过程发生了相当大的变化。因此,我们的研究为理解 C4 草如何适应耐荫性提供了有价值的理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a808/11191358/4758fef77ad3/12870_2024_5242_Fig1_HTML.jpg

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