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Minor loading vein acclimation for three Arabidopsis thaliana ecotypes in response to growth under different temperature and light regimes

机译:三种拟南芥生态型在不同温度和光照条件下对生长的反应中的小负荷静脉适应

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摘要

In light of the important role of foliar phloem as the nexus between energy acquisition through photosynthesis and distribution of the products of photosynthesis to the rest of the plant, as well as communication between the whole plant and its leaves, we examined whether foliar minor loading veins in three Arabidopsis thaliana ecotypes undergo acclimation to the growth environment. As a winter annual exhibiting higher rates of photosynthesis in response to cooler vs. warmer temperatures, this species might be expected to adjust the structure of its phloem to accommodate greater fluxes of sugars in response to growth at low temperature. Minor (fourth- and third-order) veins had 14 or fewer sieve elements and phloem tissue comprised 50% or more of the cross-sectional area. The number of phloem cells per minor loading vein was greater in leaves grown under cool temperature and high light vs. warm temperature and moderate light. This effect was greatest in an ecotype from Sweden, in which growth under cool temperature and high light resulted in minor veins with an even greater emphasis on phloem (50% more phloem cells with more than 100% greater cross-sectional area of phloem) compared to growth under warm temperature and moderate light. Likewise, the number of sieve elements per minor vein increased linearly with growth temperature under moderate light, almost doubling over a 27°C temperature range (21°C leaf temperature range) in the Swedish ecotype. Increased emphasis on cells involved in sugar loading and transport may be critical for maintaining sugar export from leaves of an overwintering annual such as A. thaliana, and particularly for the ecotype from the northern-most population experiencing the lowest temperatures.
机译:鉴于叶韧皮部在通过光合作用获取能量和将光合作用产物分配到植物的其余部分之间以及整个植物与其叶子之间的通讯之间起着重要的作用,我们研究了叶的次要加载脉在三种拟南芥生态型中,它们适应了生长环境。作为冬季的一年,由于温度相对较低而相对较高,其光合作用速率较高,因此该物种有望适应其韧皮部的结构,以适应低温下的生长而适应更大的糖通量。次要(四阶和三阶)静脉具有14个或更少的筛分元素,韧皮部组织占横截面积的50%或更多。在低温和强光下与温和中等光下相比,叶片中每个次要加载静脉的韧皮部细胞数量更多。在瑞典的一种生态型中,这种作用最大,在低温和强光下生长会导致较小的静脉,对韧皮部的重视更大(韧皮部细胞多50%,韧皮部横截面积大100%)在温暖的温度和适度的光照下生长。同样,在中等光照下,每条小静脉的筛子元素数量随生长温度线性增加,在瑞典生态型中,在27°C温度范围(21°C叶片温度范围)内几乎翻了一番。对于维持糖分装载和运输的细胞的重视对于维持越冬一年生叶片(如拟南芥)的叶片的糖分出口,特别是对于温度最低的最北端种群的生态型而言,可能至关重要。

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