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典型耐荫物种中光系统对长期光胁迫的响应

Responses of photosystem to long-term light stress in a typically shade-tolerant species .

作者信息

Cun Zhu, Xu Xiang-Zeng, Zhang Jin-Yan, Shuang Sheng-Pu, Wu Hong-Min, An Tong-Xin, Chen Jun-Wen

机构信息

College of Agronomy & Biotechnology, Yunnan Agricultural University, Kunming, China.

Key Laboratory of Medicinal Plant Biology of Yunnan Province, Yunnan Agricultural University, Kunming, China.

出版信息

Front Plant Sci. 2023 Jan 12;13:1095726. doi: 10.3389/fpls.2022.1095726. eCollection 2022.

Abstract

Photosynthetic adaptive strategies vary with the growth irradiance. The potential photosynthetic adaptive strategies of shade-tolerant species (Burkill) F. H. Chen to long-term high light and low light remains unclear. Photosynthetic performance, photosynthesis-related pigments, leaves anatomical characteristics and antioxidant enzyme activities were comparatively determined in grown under different light regimes. The thickness of the upper epidermis, palisade tissue, and lower epidermis were declined with increasing growth irradiance. Low-light-grown leaves were declined in transpiration rate (Tr) and stomatal conductance (Cond), but intercellular CO concentration ( ) and net photosynthesis rate ( ) had opposite trends. The maximum photo-oxidation ( ) was greatly reduced in 29.8% full sunlight (FL) plants; The maximum quantum yield of photosystem II ( / ) in 0.2% FL plants was significantly lowest. Electron transport, thermal dissipation, and the effective quantum yield of PSI [Y(I)] and PSII [Y(II)] were declined in low-light-grown plants compared with high-light-grown . The minimum value of non-regulated energy dissipation of PSII [Y(NO)] was recorded in 0.2% FL . OJIP kinetic curve showed that relative variable fluorescence at J-phase ( ) and the ratio of variable fluorescent occupying the - amplitude ( ) were significantly increased in 0.2% FL plants. However, the increase in was lower than the increase in . In conclusion, PSI photoinhibition is the underlying sensitivity of the typically shade-tolerant species to high light, and the photodamage to PSII acceptor side might cause the typically shade-tolerant plants to be unsuitable for long-term low light stress.

摘要

光合适应策略随生长光照强度而变化。耐荫物种(Burkill)F. H. Chen对长期高光和低光的潜在光合适应策略仍不清楚。在不同光照条件下生长的植株中,对光合性能、光合相关色素、叶片解剖特征和抗氧化酶活性进行了比较测定。上表皮、栅栏组织和下表皮的厚度随着生长光照强度的增加而减小。低光生长的叶片蒸腾速率(Tr)和气孔导度(Cond)下降,但细胞间CO₂浓度(Ci)和净光合速率(Pn)呈现相反趋势。在29.8%全光照(FL)的植株中,最大光氧化(Pm)大幅降低;在0.2%FL的植株中,光系统II的最大量子产率(Fv/Fm)显著最低。与高光生长的植株相比,低光生长的植株中电子传递、热耗散以及光系统I[Y(I)]和光系统II[Y(II)]的有效量子产率均下降。在0.2%FL的植株中记录到光系统II非调节性能量耗散的最小值[Y(NO)]。OJIP动力学曲线表明,在0.2%FL的植株中,J相的相对可变荧光(Vj)以及可变荧光占据O - J振幅的比例(Wk)显著增加。然而,Vj的增加低于Wk的增加。总之,光系统I光抑制是典型耐荫物种对高光敏感的潜在原因,而光系统II受体侧的光损伤可能导致典型耐荫植物不适于长期低光胁迫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a76/9878349/f7add322da4c/fpls-13-1095726-g001.jpg

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