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首页> 外文期刊>American journal of botany >Characterization of Rubisco activase from thermally contrasting genotypes of Acer rubrum (Aceraceae)
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Characterization of Rubisco activase from thermally contrasting genotypes of Acer rubrum (Aceraceae)

机译:从热对比基因型红枫(醋栗科)表征Rubisco活化酶。

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摘要

The lability of Rubisco activase function is thought to have a major role in the decline of leaf photosynthesis under moderate heat (<35°C). To investigate this further, we characterized Rubisco activase and explored its role in the previously demonstrated thermal acclimation and inhibition of two genotypes of Acer rubrum originally collected from Florida (FL) and Minnesota (MN). When plants were grown at 33/25°C (dayight) for 21 d, the FL genotype compared to the MN genotype maintained about a two-fold increase in leaf photosynthetic rates at 33–42°C and had a 22% increase in the maximal rate of Rubisco carboxylation (Vcmax) at 33°C under nonphotorespiratory conditions. Both genotypes had two leaf Rca transcripts, likely from equivalent alternative splicing events. The RCA1 and RCA2 proteins increased modestly in FL plants under warmer temperature, while only RCA2 protein increased in MN plants. Rubisco large subunit (RbsL) protein abundance was relatively unaffected in either genotype by temperature. These results support the idea that Rubisco activase, particularly the ratio of Rubisco activase to Rubisco, may play a role in the photosynthetic heat acclimation in A. rubrum and may have adaptive significance. This mechanism alone is not likely to entirely explain the thermotolerance in the FL genotype, and future research on adaptive mechanisms to high temperatures should consider activase function in a multipathway framework.
机译:Rubisco激活酶功能的不稳定性被认为在中等温度(<35°C)下叶片光合作用的下降中起主要作用。为了进一步研究这一点,我们表征了Rubisco活化酶,并探讨了其在先前证明的热适应和抑制最初从佛罗里达州(FL)和明尼苏达州(MN)收集到的两种基因型红槭中的作用。当植物在33/25°C(昼/夜)下生长21天时,FL基因型与MN基因型相比在33-42°C时叶片的光合速率保持了大约两倍的增长,并且增加了22%在非光呼吸条件下,在33°C时Rubisco羧化的最大速率(Vcmax)。两种基因型都有两个叶Rca转录本,可能来自同等的可变剪接事件。在温度较高的FL植物中,RCA1和RCA2蛋白适度增加,而在MN植物中,仅RCA2蛋白增加。 Rubisco大亚基(RbsL)蛋白的丰度在两种基因型中均不受温度影响。这些结果支持了Rubisco活化酶,特别是Rubisco活化酶与Rubisco的比例,可能在红曲霉的光合热驯化中起作用,并且可能具有适应性意义。单独的这种机制不可能完全解释FL基因型的耐热性,未来对高温适应机制的研究应在多途径框架中考虑激活酶的功能。

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