光合作用
光系统II
叶绿素
叶绿素荧光
生物
光系统I
叶绿体
植物
猝灭(荧光)
光化学
光系统
化学
荧光
生物化学
基因
物理
量子力学
作者
Andersson Jenny,W Farnham Mark,Robin Walters,Howard Caroline A.,Ruban Alexander V.,Peter Horton,Stefan Jansson
出处
期刊:Plant Journal
[Wiley]
日期:2003-07-08
卷期号:35 (3): 350-361
被引量:257
标识
DOI:10.1046/j.1365-313x.2003.01811.x
摘要
Summary We have constructed Arabidopsis thaliana plants that are virtually devoid of the major light‐harvesting complex, LHC II. This was accomplished by introducing the Lhcb2.1 coding region in the antisense orientation into the genome by Agrobacterium ‐mediated transformation. Lhcb1 and Lhcb2 were absent, while Lhcb3, a protein present in LHC II associated with photosystem (PS) II, was retained. Plants had a pale green appearance and showed reduced chlorophyll content and an elevated chlorophyll a / b ratio. The content of PS II reaction centres was unchanged on a leaf area basis, but there was evidence for increases in the relative levels of other light harvesting proteins, notably CP26, associated with PS II, and Lhca4, associated with PS I. Electron microscopy showed the presence of grana. Photosynthetic rates at saturating irradiance were the same in wild‐type and antisense plants, but there was a 10–15% reduction in quantum yield that reflected the decrease in light absorption by the leaf. The antisense plants were not able to perform state transitions, and their capacity for non‐photochemical quenching was reduced. There was no difference in growth between wild‐type and antisense plants under controlled climate conditions, but the antisense plants performed worse compared to the wild type in the field, with decreases in seed production of up to 70%.
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