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首页> 外文期刊>Tree Physiology >Comparison of photosynthetic induction and transient limitations during the induction phase in young and mature leaves from three poplar clones
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Comparison of photosynthetic induction and transient limitations during the induction phase in young and mature leaves from three poplar clones

机译:三个杨树无性系幼嫩叶片和成熟叶片诱导期光合诱导和瞬时限制的比较

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摘要

We tested the hypothesis that leaf age affects photosynthetic induction, because conductance to CO2 diffusion usually decreases with increasing leaf age. Photosynthetic inductions, primarily determined by the light modulation of Rubisco activity and stomatal opening, were investigated in both young and mature leaves, as defined by leaf plastochron index (LPI), from three poplar clones: Populus alba L., P. nigra L. and P. × euramericana (Dode) Guinier. In all clones, maximum assimilation rates (Amax), maximum stomatal conductance (GSmax) and dark respiration rates (RD) were higher in young leaves (LPI = 3–5) than in mature leaves (LPI = 10–14), and Amax decreased from P. alba via P. × euramericana to P. nigra. The clones with high photosynthetic capacity had low induction states 60 s after leaf illumination (IS60; indicating a slow initial induction phase), and required less time to reach 90% photosynthetic induction (T90). In contrast, the clone with the lowest photosynthetic capacity (P. nigra) exhibited high IS60 (high initial induction state) but a long induction time (high T90). A comparison of mature leaves with young leaves revealed significantly (P < 0.01) lower IS60 values in mature leaves of P. nigra only, and significantly higher T90 values in mature leaves of P. alba only. In all clones, young leaves exhibited a lower percentage of maximum transient stomatal limitation during photosynthetic induction (4–9%) compared with mature leaves (16–30%). Transient biochemical limitation, assessed on the basis of the time constants of Rubisco activation (τ), was significantly higher in mature leaves than in young leaves of P. alba; whereas there were no significant differences in τ between young and mature leaves of the other poplar clones. Thus, our hypothesis that leaf age affects photosynthetic induction was confirmed at the level of transient stomatal limitation, which was significantly higher in mature leaves than in young leaves in all clones. For the induction parameters IS60, T90 and τ, photosynthetic induction was more clone-specific and was dependent on leaf age only in some cases, an observation that may apply to other tree species.
机译:我们测试了叶龄影响光合诱导的假设,因为对CO 2 扩散的电导通常随叶龄的增加而降低。研究了三个杨树无性系:杨杨,黑杨(L. P. nigra L.)的幼嫩和成熟叶片中的光合作用诱导,主要由Rubisco活性和气孔打开的光调制决定,该叶片由叶片塑性同步指数(LPI)定义。和P.×euramericana(Dode)Guinier。在所有克隆中,最大同化率(A max ),最大气孔导度(G Smax )和暗呼吸速率(R D )均较高。幼叶(LPI = 3–5)比成熟叶(LPI = 10–14)大,A max 从白菜假单胞菌通过P.×euramericana降至黑假菜假单胞菌。具有高光合能力的克隆叶片光照后60 s(IS 60 ;表明初始诱导阶段很慢)具有较低的诱导状态,并且需要更少的时间达到90%的光合诱导(T 90 )。相反,光合作用能力最低的克隆(黑假单胞菌)表现出较高的IS 60 (高初始诱导态),但诱导时间长(较高的T 90 )。成熟叶片与幼叶的比较表明,仅黑黑实蝇的成熟叶片中IS 60 值显着降低(P <0.01),而成熟叶片中的T 90 值显着更高仅P. alba的叶子。在所有克隆中,与成熟叶片(16–30%)相比,年轻叶片在光合作用诱导过程中表现出最大瞬时气孔限制的百分比较低(4–9%)。根据Rubisco活化(τ)的时间常数评估的瞬时生化限制在成熟叶片中明显高于白叶杨叶片的年轻叶片。而其他杨树无性系的幼叶和成熟叶之间的τ没有显着差异。因此,我们的叶龄影响光合诱导的假说在瞬时气孔限制水平上得到了证实,在所有克隆中,成熟叶的叶片显着高于幼叶。对于诱导参数IS 60 ,T 90 和τ,光合诱导更具克隆特异性,仅在某些情况下取决于叶龄,这一发现可能适用于其他树种。

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  • 来源
    《Tree Physiology》 |2008年第8期|1189-1197|共9页
  • 作者单位

    Laboratory of Plants Ecological Physiology Institute of Systems Biology and Ecology AS CR Poříčí 3b CZ-60300 Brno Czech Republic;

    Corresponding author otmar{at}usbe.cas.cz;

    Department of Forest Ecology Mendel University of Agriculture and Forestry in Brno Zemědělská 3 CZ-61300 Brno Czech Republic;

    Botanical Institute (Molecular Biology and Biochemistry of Plants) University of Karlsruhe Kaiserstrasse 12 D-76133 Karlsruhe Germany;

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