Carland F M, Berg B L, FitzGerald J N, Jinamornphongs S, Nelson T, Keith B
Department of Molecular, Cellular, and Developmental Biology, Yale University, New Haven, Connecticut 06520-8104, USA.
Plant Cell. 1999 Nov;11(11):2123-37. doi: 10.1105/tpc.11.11.2123.
Plants transport water and nutrients through a complex vascular network comprised of interconnected, specialized cell types organized in discrete bundles. To identify genetic determinants of vascular tissue patterning, we conducted a screen for mutants with altered vascular bundle organization in Arabidopsis cotyledons. Mutations in two genes, CVP1 and CVP2 (for cotyledon vascular pattern), specifically disrupt the normal pattern of vascular bundles in cotyledons, mature leaves, and inflorescence stems. The spatial distribution of the procambium, the precursor to mature vascular tissue, is altered in cvp1 and cvp2 embryos, suggesting that CVP1 and CVP2 act at a very early step in vascular patterning. Similarly, in developing stems of cvp1 and leaves of cvp2, the pattern of vascular differentiation is defective, but the maturation of individual vascular cells appears to be normal. There are no discernible alterations in cell morphology in cvp2 mutants. In contrast, cvp1 mutants are defective in directional orientation of the provascular strand, resulting in a failure to establish uniformly aligned vascular cells, and they also show a reduction in vascular cell elongation. Neither cvp1 nor cvp2 mutants displayed altered auxin perception, biosynthesis, or transport, suggesting that auxin metabolism is not generally affected in these mutants.
植物通过一个复杂的维管网络运输水分和养分,该网络由相互连接的、专门的细胞类型组成,这些细胞类型以离散的束状排列。为了确定维管组织模式的遗传决定因素,我们对拟南芥子叶中维管束组织改变的突变体进行了筛选。两个基因CVP1和CVP2(子叶维管模式)的突变特异性地破坏了子叶、成熟叶和花序茎中维管束的正常模式。在cvp1和cvp2胚胎中,成熟维管组织的前体原形成层的空间分布发生了改变,这表明CVP1和CVP2在维管模式形成的非常早期阶段起作用。同样,在cvp1的发育茎和cvp2的叶中,维管分化模式存在缺陷,但单个维管细胞的成熟似乎正常。cvp2突变体的细胞形态没有明显改变。相比之下,cvp1突变体在原形成层束的定向排列上存在缺陷,导致无法建立均匀排列的维管细胞,并且它们还表现出维管细胞伸长的减少。cvp1和cvp2突变体均未表现出生长素感知、生物合成或运输的改变,这表明生长素代谢在这些突变体中通常不受影响。