Hobbie L, McGovern M, Hurwitz L R, Pierro A, Liu N Y, Bandyopadhyay A, Estelle M
Department of Biology, Adelphi University, Garden City, NY 11530, USA.
Development. 2000 Jan;127(1):23-32. doi: 10.1242/dev.127.1.23.
The indolic compound auxin regulates virtually every aspect of plant growth and development, but its role in embryogenesis and its molecular mechanism of action are not understood. We describe two mutants of Arabidopsis that define a novel gene called AUXIN-RESISTANT6 (AXR6) which maps to chromosome 4. Embryonic development of the homozygous axr6 mutants is disrupted by aberrant patterns of cell division, leading to defects in the cells of the suspensor, root and hypocotyl precursors, and provasculature. The homozygous axr6 mutants arrest growth soon after germination lacking a root and hypocotyl and with severe vascular pattern defects in their cotyledons. Whereas previously described mutants with similar developmental defects are completely recessive, axr6 heterozygotes display a variety of morphological and physiological alterations that are most consistent with a defect in auxin physiology or response. The AXR6 gene is likely to be important for auxin response throughout the plant, including early development.
吲哚类化合物生长素几乎调控着植物生长和发育的各个方面,但其在胚胎发生中的作用及其分子作用机制尚不清楚。我们描述了拟南芥的两个突变体,它们定义了一个名为抗生长素6(AXR6)的新基因,该基因位于第4号染色体上。纯合axr6突变体的胚胎发育因异常的细胞分裂模式而受到破坏,导致胚柄、根和下胚轴前体细胞以及原维管组织出现缺陷。纯合axr6突变体在萌发后不久就停止生长,没有根和下胚轴,子叶中存在严重的维管模式缺陷。虽然先前描述的具有类似发育缺陷的突变体是完全隐性的,但axr6杂合子表现出各种形态和生理变化,这些变化与生长素生理或反应缺陷最为一致。AXR6基因可能对整个植物(包括早期发育)的生长素反应很重要。