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Arabidopsis thaliana Ei-5: Minor Vein Architecture Adjustment Compensates for Low Vein Density in Support of Photosynthesis

机译:拟南芥Ei-5:小静脉结构调整补偿低光密度以支持光合作用

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摘要

An Arabidopsis thaliana accession with naturally low vein density, Eifel-5 (Ei-5), was compared to Columbia-0 (Col-0) with respect to rosette growth, foliar vein architecture, photosynthesis, and transpiration. In addition to having to a lower vein density, Ei-5 grew more slowly, with significantly lower rates of rosette expansion, but had similar capacities for photosynthetic oxygen evolution on a leaf area basis compared to Col-0. The individual foliar minor veins were larger in Ei-5, with a greater number of vascular cells per vein, compared to Col-0. This compensation for low vein density resulted in similar values for the product of vein density × phloem cell number per minor vein in Ei-5 and Col-0, which suggests a similar capacity for foliar sugar export to support similar photosynthetic capacities per unit leaf area. In contrast, the product of vein density × xylem cell number per minor vein was significantly greater in Ei-5 compared to Col-0, and was associated not only with a higher ratio of water-transporting tracheary elements versus sugar-transporting sieve elements but also significantly higher foliar transpiration rates per leaf area in Ei-5. In contrast, previous studies in other systems had reported higher ratios of tracheary to sieve elements and higher transpiration rate to be associated with higher – rather than lower – vein densities. The Ei-5 accession thus further underscores the plasticity of the foliar vasculature by illustrating an example where a higher ratio of tracheary to sieve elements is associated with a lower vein density. Establishment of the Ei-5 accession, with a low vein density but an apparent overcapacity for water flux through the foliar xylem network, may have been facilitated by a higher level of precipitation in its habitat of origin compared to that of the Col-0 accession.
机译:就玫瑰花生长,叶脉结构,光合作用和蒸腾作用而言,将具有自然低静脉密度的拟南芥登录号Eifel-5(Ei-5)与Columbia-0(Col-0)进行了比较。除具有较低的静脉密度外,Ei-5的生长速度更慢,玫瑰花结的膨胀速率显着降低,但与Col-0相比,叶面积的光合氧气释放能力相似。与Col-0相比,Ei-5中的单个叶状小静脉较大,每条静脉中的血管细胞数量更多。低静脉密度的这种补偿导致Ei-5和Col-0中每条小静脉的静脉密度×韧皮部细胞数乘积的值相似,这表明叶面糖的出口能力相似,以支持每单位叶面积相似的光合能力。 。相反,与Col-0相比,在Ei-5中,静脉密度×每条小静脉的木质部细胞数的乘积明显大于Col-0,并且不仅与输水气管元素相对于输糖筛分元素的比例更高有关,而且与在Ei-5中,每叶面积的叶蒸腾速率也显着提高。相反,先前在其他系统中的研究报告,气管与筛网元素的比例较高,蒸腾速率较高,则与较高(而非较低)的静脉密度相关。因此,Ei-5品种通过举例说明气管与筛网元素比例较高与较低静脉密度相关联的示例,进一步强调了叶脉系统的可塑性。与Col-0相比,Ei-5的建立具有较低的静脉密度,但是通过叶木质部网络的水通量明显过剩,这可能是由于其原始栖息地中较高水平的降水促进的。 。

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