首页> 美国卫生研究院文献>Plant Physiology >Localization of Boron in Cell Walls of Squash and Tobacco and Its Association with Pectin (Evidence for a Structural Role of Boron in the Cell Wall).
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Localization of Boron in Cell Walls of Squash and Tobacco and Its Association with Pectin (Evidence for a Structural Role of Boron in the Cell Wall).

机译:硼在南瓜和烟草细胞壁中的定位及其与果胶的关系(硼在细胞壁中的结构作用的证据)。

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摘要

B deficiency results in a rapid inhibition of plant growth, and yet the form and function of B in plants remains unclear. In this paper we provide evidence that B is chemically localized and structurally important in the cell wall of plants. The localization and chemical fractionation of B was followed in squash plants (Curcurbita pepo L.) and cultured tobacco cells (Nicotiana tabacum) grown in B-replete or B-deficient medium. As squash plants and cultured tobacco cells became deficient, an increasingly large proportion of cellular B was found to be localized in the cell wall. Cytoplasmic B concentrations were reduced to essentially zero as plants became deficient, whereas cell wall B concentration remained at or above 10 [mu]g B/g cell wall dry weight in all experiments. Chemical and enzymic fractionation studies suggest that the majority of cell B is associated with pectins within the cell wall. Physical analysis of B-deficient tissue indicates that cell wall plastic extensibility is greatly reduced under B deficiency, and anatomical observations indicate that B deficiency impairs normal cell elongation in growing plant tissue. In plants in which B deficiency had inhibited all plant growth, tissues remained green and did not show any additional visible symptoms for at least 1 week with no additional B. This occurred even though cytoplasmic B had been reduced to extremely low levels (<0.2 [mu]g/g). This suggests that B in these species is largely associated with the cell wall and that any cytoplasmic role for B is satisfied by very low concentrations of B. The localization of B in the cell wall, its association with cell wall pectins, and the contingent effects of B on cell wall extensibility suggest that B plays a critical, although poorly defined, role in the cell wall structure of higher plants.
机译:B缺乏会导致植物生长的快速抑制,但是B在植物中的形式和功能仍不清楚。在本文中,我们提供证据表明B在植物的细胞壁中化学定位且在结构上很重要。在南瓜植物(西葫芦)和在富含B或缺乏B的培养基中生长的培养的烟草细胞(Nicotiana tabacum)中追踪B的定位和化学分离。随着南瓜类植物和培养的烟草细胞的缺乏,发现越来越多的细胞B定位在细胞壁中。随着植物的缺乏,细胞质B的浓度降低到基本上为零,而在所有实验中细胞壁B的浓度保持在或大于10μgB / g细胞壁干重。化学和酶促分离研究表明,大多数细胞B与细胞壁内的果胶有关。缺乏B的组织的物理分析表明,在缺乏B的情况下,细胞壁的塑性扩展性大大降低,并且解剖学观察表明,缺乏B会损害生长中的植物组织中正常细胞的伸长。在缺硼会抑制所有植物生长的植物中,组织至少在1周内仍保持绿色且没有其他可见症状,并且没有其他B。即使细胞质B降低到极低水平(<0.2 [微克/克)。这表明这些物种中的B很大程度上与细胞壁有关,并且B的任何细胞质作用都可以通过非常低的B浓度来满足。B在细胞壁中的定位,与细胞壁果胶的结合以及或有作用B对细胞壁可扩展性的影响表明,B在高等植物的细胞壁结构中起着至关重要的作用,尽管定义不明确。

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