Chen Yizhu, Murchie Erik H, Hubbart Stella, Horton Peter, Peng Shaobing
Crop, Soil and Water Sciences Division, International Rice Research Institute, PO Box 933, 1099 Manila, Philippines Robert Hill Institute, Department of Molecular Biology and Biotechnology, Firth Court, Western Bank, University of Sheffield, Sheffield, S10 2TN, UK Present address: South China Institute of Botany, Academia Sinica, Leyiju, Guangzhou 510650, China.
Physiol Plant. 2003 Mar;117(3):343-351. doi: 10.1034/j.1399-3054.2003.00048.x.
Photoinhibition and acclimation of photosynthesis in rice plants grown under N-sufficient (NS) and N-deficient (ND) field conditions were investigated during the tropical wet (WS) and dry (DS) seasons in the Philippines. Diurnal patterns of CO2 assimilation were examined. There was a transient peak in CO2 assimilation in the leaves of the NS plants in the early morning during the DS and the WS, which was not seen in the ND plants in either season. ND leaves had lower Ribulose bisphosphate carboxylase/oxygenase (Rubisco) contents and lower chlorophyll contents. A lowered quantum yield of photosystem II (phiPSII) was observed in the ND plants at an intermediate irradiance though no differences between N treatments were seen at high irradiance. Analysis of carotenoids indicated a small increase in the de-epoxidation state of the xanthophyll cycle (DES) at mid-day in the ND leaves compared to NS. Photoinhibition was greater in ND leaves when incident mid-day irradiance was increased by altering the leaf angle. Although Rubisco contents were lower in ND plants, photosynthesis in situ did not decline proportionally. For NS plants, Chlorophyll content, but not Rubisco content, was season-dependent and results are discussed in terms of the interaction between irradiance use and N content of rice leaves.
在菲律宾热带湿润(WS)和干旱(DS)季节期间,研究了在氮素充足(NS)和氮素缺乏(ND)田间条件下生长的水稻植株光合作用的光抑制和适应情况。检测了二氧化碳同化的日变化模式。在DS和WS期间的清晨,NS植株叶片中的二氧化碳同化出现短暂峰值,而在这两个季节的ND植株中均未观察到。ND叶片的核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)含量和叶绿素含量较低。在中等光照强度下,ND植株中观察到光系统II(phiPSII)的量子产率降低,尽管在高光强下氮处理之间没有差异。类胡萝卜素分析表明,与NS相比,ND叶片在中午时叶黄素循环的脱环氧化状态(DES)略有增加。当通过改变叶角增加中午入射光照强度时,ND叶片的光抑制作用更强。尽管ND植株中Rubisco含量较低,但原位光合作用并未成比例下降。对于NS植株,叶绿素含量而非Rubisco含量与季节有关,并根据水稻叶片光照利用与氮含量之间的相互作用对结果进行了讨论。