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首页> 外文期刊>Wiley Interdisciplinary Reviews. Developmental Biology >Patterns of root growth acclimation: constant processes, changing boundaries. [Review]
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Patterns of root growth acclimation: constant processes, changing boundaries. [Review]

机译:根部生长适应的模式:持续不断的过程,不断变化的边界。 [评论]

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Plasticity, the hallmark of plant morphogenesis, extends to kinetics. To enhance acclimation, growing plant organs adeptly adjust their growth rate, up or down. In roots, rates of division and elemental expansion as well as the length of division and elongation zones are readily characterized because of their linear organization, radial symmetry, and indeterminate growth, and can be measured accurately with kinematic methods. Here, for roots, I describe key concepts from kinematics and review patterns of growth and division during acclimation. The growth rate of a root reflects the integral of elemental expansion activity over the span of the growth zone; therefore, an acclimating plant can change the rate of root growth by changing either or both the span of the growth zone or the rate of elemental expansion. The analogous dichotomy exists for cell division where the rate at which cells are produced reflects the integral of cell division rate over the span of the division zone. Surprisingly, expansion responses nearly always involve changes in the length of the growth zone. Similarly, although based on fewer data, changes in cell division rate are rare, whereas changes in meristem length are common. These patterns imply that setting the boundaries for meristem and elongation zone is the key regulatory act for root growth rate acclimation. WIREs Dev Biol 2013, 2:65-73. doi: 10.1002/wdev.94 For further resources related to this article, please visit the WIREs website
机译:可塑性,植物形态发生的标志,延伸到动力学。为了增强适应能力,生长中的植物器官可以熟练地向上或向下调节其生长速率。在根部,由于它们的线性组织,径向对称性和不确定的生长,很容易表征分裂和元素扩展的速率以及分裂和伸长区域的长度,并且可以使用运动学方法精确测量。在这里,我从根源上描述运动学的关键概念,并回顾了适应过程中生长和分裂的模式。根的生长速率反映了整个生长区范围内元素扩展活动的积分;因此,适应环境的植物可以通过改变生长区的跨度或元素扩展率中的一个或两个来改变根的生长速率。对于细胞分裂存在类似的二分法,其中细胞产生的速率反映了分裂区域范围内细胞分裂速率的积分。令人惊讶的是,膨胀反应几乎总是涉及生长区长度的变化。同样,尽管基于较少的数据,但细胞分裂率的变化很少,而分生组织长度的变化却很常见。这些模式暗示着设置分生组织和延伸区的边界是根部生长速率适应的关键调控行为。电线发展生物学2013,2:65-73。 doi:10.1002 / wdev.94有关本文的更多资源,请访问WIREs网站

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