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Severity of mutant phenotype in a series of chlorophyll-deficient wheat mutants depends on light intensity and the severity of the block in chlorophyll synthesis.

机译:一系列叶绿素缺陷型小麦突变体中突变体表型的严重性取决于光强度和叶绿素合成中阻断的严重性。

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摘要

Analyses of a series of allelic chlorina mutants of wheat (Triticum aestivum L.), which have partial blocks in chlorophyll (Chl) synthesis and, therefore, a limited Chl supply, reinforce the principle that Chl is required for the stable accumulation of Chl-binding proteins and that only reaction centers accumulate when the supply of Chl is severely limited. Depending on the rate of Chl accumulation (determined by the severity of the mutation) and on the rate of turnover of Chl and its precursors (determined by the environment in which the plant is grown), the mutants each reach an equilibrium of Chl synthesis and degradation. Together these mutants generate a spectrum of phenotypes. Under the harshest conditions (high illumination), plants with moderate blocks in Chl synthesis have membranes with very little Chl and Chl-proteins and membrane stacks resembling the thylakoids of the lethal xantha mutants of barely grown at low to medium light intensities (which have more severe blocks). In contrast, when grown under low-light conditions the same plants with moderate blocks have thylakoids resembling those of the wild type. The wide range of phenotypes of Chl b-deficient mutants has historically produced more confusion than enlightenment, but incomparable growth conditions can now explain the discrepancies reported in the literature.
机译:一系列小麦(Triticum aestivum L.)等位基因叶绿素突变体的分析,这些突变体在叶绿素(Chl)合成中具有部分阻滞,因此有限的Chl供应,强化了Chl稳定积累Chl-所需的原理。结合蛋白,只有当Chl的供应受到严重限制时,只有反应中心才会积累。根据Chl积累的速率(由突变的严重程度决定)和Chl及其前体的周转率(由植物生长的环境决定),每个突变体均达到Chl合成和降解。这些突变体共同产生了一系列表型。在最恶劣的条件下(高照度),Chl合成中度受阻的植物的Chl和Chl蛋白质很少,并且膜堆叠类似于致命的xantha突变体的类囊体,这些突变体在低至中等光强度下几乎不生长(具有更多严重的障碍)。相反,当在弱光条件下生长时,具有适度块状的相同植物的类囊体类似于野生型。 Chl b缺陷型突变体的广泛表型在历史上比启蒙运动更令人困惑,但是无与伦比的生长条件现在可以解释文献中报道的差异。

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