首页> 美国卫生研究院文献>Journal of Experimental Botany >RBCS1A and RBCS3B two major members within the Arabidopsis RBCS multigene family function to yield sufficient Rubisco content for leaf photosynthetic capacity
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RBCS1A and RBCS3B two major members within the Arabidopsis RBCS multigene family function to yield sufficient Rubisco content for leaf photosynthetic capacity

机译:RBCS1A和RBCS3B是拟南芥RBCS多基因家族的两个主要成员其功能是产生足够的Rubisco含量以维持叶片的光合作用能力

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摘要

Ribulose 1,5-bisphosphate carboxylase/oxygenase (Rubisco) small subunit (RBCS) is encoded by a nuclear RBCS multigene family in many plant species. The contribution of the RBCS multigenes to accumulation of Rubisco holoenzyme and photosynthetic characteristics remains unclear. T-DNA insertion mutants of RBCS1A (rbcs1a-1) and RBCS3B (rbcs3b-1) were isolated among the four Arabidopsis RBCS genes, and a double mutant (rbcs1a3b-1) was generated. RBCS1A mRNA was not detected in rbcs1a-1 and rbcs1a3b-1, while the RBCS3B mRNA level was suppressed to ∼20% of the wild-type level in rbcs3b-1 and rbcs1a3b-1 leaves. As a result, total RBCS mRNA levels declined to 52, 79, and 23% of the wild-type level in rbcs1a-1, rbcs3b-1, and rbcs1a3b-1, respectively. Rubisco contents showed declines similar to total RBCS mRNA levels, and the ratio of Rubisco-nitrogen to total nitrogen was 62, 78, and 40% of the wild-type level in rbcs1a-1, rbcs3b-1, and rbcs1a3b-1, respectively. The effects of RBCS1A and RBCS3B mutations in rbcs1a3b-1 were clearly additive. The rates of CO2 assimilation at ambient CO2 of 40 Pa were reduced with decreased Rubisco contents in the respective mutant leaves. Although the RBCS composition in the Rubisco holoenzyme changed, the CO2 assimilation rates per unit of Rubisco content were the same irrespective of the genotype. These results clearly indicate that RBCS1A and RBCS3B contribute to accumulation of Rubisco in Arabidopsis leaves and that these genes work additively to yield sufficient Rubisco for photosynthetic capacity. It is also suggested that the RBCS composition in the Rubisco holoenzyme does not affect photosynthesis under the present ambient [CO2] conditions.
机译:核糖1,5-二磷酸羧化酶/加氧酶(Rubisco)小亚基(RBCS)由许多植物中的核RBCS多基因家族编码。 RBCS多基因对Rubisco全酶的积累和光合特性的贡献尚不清楚。从四个拟南芥RBCS基因中分离出了RBCS1A(rbcs1a-1)和RBCS3B(rbcs3b-1)的T-DNA插入突变体,并产生了一个双突变体(rbcs1a3b-1)。在rbcs1a-1和rbcs1a3b-1中未检测到RBCS1A mRNA,而在rbcs3b-1和rbcs1a3b-1中,RBCS3B mRNA水平被抑制为野生型水平的约20%。结果,rbcs1a-1, rbcs3b-1 rbcs1a3b-1 的总RBCS mRNA水平下降至野生型水平的52、79和23%。 , 分别。 Rubisco含量显示出与总的 RBCS mRNA水平相似的下降,并且Rubisco氮与总氮的比例分别为 rbcs1a-1 <野生型水平的62%,78%和40%。 / em>, rbcs3b-1 rbcs1a3b-1 。显然, rbcs1a3b-1 中的 RBCS1A RBCS3B 突变具有累加作用。随着突变叶片中Rubisco含量的减少,在40 Pa的环境CO2下,CO2同化率降低。尽管Rubisco完整酶中的RBCS组成发生了变化,但不管基因型如何,每单位Rubisco含量的CO2同化率均相同。这些结果清楚地表明, RBCS1A RBCS3B 有助于Rubisco在拟南芥叶中的积累,并且这些基因可加性发挥作用,以产生足够的Rubisco发挥光合作用能力。还建议在目前的环境[CO2]条件下,Rubisco全酶中的RBCS组成不影响光合作用。

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