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The role of the Arabidopsis ELD1 gene in cell development and photomorphogenesis in darkness

机译:拟南芥ELD1基因在黑暗中细胞发育和光形态发生中的作用

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Because cell growth and differentiation are regulated by complex interactions among different signaling pathways, a growth defect affects subsequent differentiation. We report on a growth-defective mutant of Arabidopsis, called eld1 (elongation defective I). Cell elongation was impaired in every organ examined. Later characteristics of the eld1 phenotype include defective vascular tissue differentiation, the inability to grow in soil, ectopic deposition of suberin around twisted vascular bundles, the de-etiolation phenotype, and continuation of shoot development and flowering in the dark. The dwarf phenotype of eld1: could not be rescued by treatment with exogenous growth regulators, because defective cell elongation is the earliest and most universal feature detected in eld1 mutants, control of or activity in fell elongation may be the primary function of the ELD1 gene. The impaired cell growth results in pleiotropic effects on cell proliferation and differentiation, and the retardation in hypocotyl elongation enables growth and development in darkness. [References: 40]
机译:由于细胞生长和分化受不同信号通路之间复杂相互作用的调节,因此生长缺陷会影响随后的分化。我们报告了一个称为eld1(伸长缺陷I)的拟南芥生长缺陷型突变体。在每个检查过的器官中,细胞伸长均受到损害。 eld1表型的后期特征包括缺陷的维管组织分化,无法在土壤中生长,扭曲的维管束周围的木脂蛋白异位沉积,脱异位表型以及枝条在黑暗中持续发育和开花。 eld1的矮表型不能通过外源性生长调节剂的治疗来挽救,因为缺陷细胞伸长是最早的且在eld1突变体中检测到的最普遍的特征,下降伸长率的控制或活性可能是ELD1基因的主要功能。细胞生长受损会导致多效性对细胞增殖和分化的影响,而下胚轴伸长的延迟则可以在黑暗中生长发育。 [参考:40]

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