Gray Gordon R, Ivanov Alexander G, Król Marianna, Williams John P, Kahn Mobashoher U, Myscich Elizabeth G, Huner Norman P A
Department of Plant Sciences, University of Saskatchewan, Saskatoon SK S7N 5A8, Canada.
Plant Cell Physiol. 2005 Aug;46(8):1272-82. doi: 10.1093/pcp/pci136. Epub 2005 Jun 9.
The interaction of light and temperature in the modulation of the trans-delta3-hexadecenoic acid (trans-16:1) content of phosphatidylglycerol (PG) in winter rye (Secale cereale L.) was assessed and related to the organization of light-harvesting complex II (LHCII). Increasing the growth irradiance from 50 to 800 micromol m(-2) s(-1) at 20 degrees C resulted in a 1.8-fold increase in the trans-16:1 content in PG which favoured a greater preponderance of oligomeric LHCII, measured in vitro as the ratio of oligomer : monomer. Similar irradiance-dependent increases were observed during growth at 5 degrees C; however, 1.4-fold lower trans-16:1 contents and lower LHCII oligomer : monomer ratios were observed compared with growth at 20 degrees C and the same irradiance. These trends were also observed under natural field conditions. Thus, the accumulation of trans-16:1, as well as the organization of LHCII are modulated by both growth irradiance and growth temperature in an independent but additive manner. We also examined how changes in the supramolecular organization of LHCII affected the capacity for non-photochemical quenching (q(N)) and photoprotection via antenna quenching (q(O)). While q(O) was positively correlated with q(N), there was no correlation with either LHCII organization or xanthophyll cycle activity under the steady-state growth conditions examined.
评估了光照和温度对冬黑麦(Secale cereale L.)中磷脂酰甘油(PG)反式-δ3-十六碳烯酸(反式-16:1)含量的调控作用,并将其与捕光复合体II(LHCII)的组织情况相关联。在20℃下将生长辐照度从50微摩尔·米⁻²·秒⁻¹提高到800微摩尔·米⁻²·秒⁻¹,导致PG中反式-16:1含量增加了1.8倍,这有利于寡聚体LHCII占比更高,体外测量时以寡聚体与单体的比例表示。在5℃生长期间也观察到了类似的辐照度依赖性增加;然而,与20℃及相同辐照度下的生长相比,反式-16:1含量低1.4倍,LHCII寡聚体与单体的比例也更低。在自然田间条件下也观察到了这些趋势。因此,反式-16:1的积累以及LHCII的组织情况受到生长辐照度和生长温度的独立但累加的调控。我们还研究了LHCII超分子组织的变化如何影响非光化学猝灭(q(N))能力以及通过天线猝灭(q(O))进行的光保护作用。虽然q(O)与q(N)呈正相关,但在所研究的稳态生长条件下,它与LHCII组织或叶黄素循环活性均无相关性。