Ljung Karin, Hull Anna K, Celenza John, Yamada Masashi, Estelle Mark, Normanly Jennifer, Sandberg Göran
Umeå Plant Science Center, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, SE-901 83, Umeå, Sweden.
Plant Cell. 2005 Apr;17(4):1090-104. doi: 10.1105/tpc.104.029272. Epub 2005 Mar 16.
Auxin has been shown to be important for many aspects of root development, including initiation and emergence of lateral roots, patterning of the root apical meristem, gravitropism, and root elongation. Auxin biosynthesis occurs in both aerial portions of the plant and in roots; thus, the auxin required for root development could come from either source, or both. To monitor putative internal sites of auxin synthesis in the root, a method for measuring indole-3-acetic acid (IAA) biosynthesis with tissue resolution was developed. We monitored IAA synthesis in 0.5- to 2-mm sections of Arabidopsis thaliana roots and were able to identify an important auxin source in the meristematic region of the primary root tip as well as in the tips of emerged lateral roots. Lower but significant synthesis capacity was observed in tissues upward from the tip, showing that the root contains multiple auxin sources. Root-localized IAA synthesis was diminished in a cyp79B2 cyp79B3 double knockout, suggesting an important role for Trp-dependent IAA synthesis pathways in the root. We present a model for how the primary root is supplied with auxin during early seedling development.
生长素已被证明在根发育的许多方面都很重要,包括侧根的起始和出现、根顶端分生组织的模式形成、向重力性以及根的伸长。生长素生物合成发生在植物的地上部分和根中;因此,根发育所需的生长素可能来自任何一个来源,或两者皆有。为了监测根中生长素合成的假定内部位点,开发了一种具有组织分辨率的测量吲哚 - 3 - 乙酸(IAA)生物合成的方法。我们监测了拟南芥根0.5至2毫米切片中的IAA合成,并能够确定主根尖分生组织区域以及已出现侧根的根尖是重要的生长素来源。从根尖向上的组织中观察到较低但显著的合成能力,表明根含有多个生长素来源。在cyp79B2 cyp79B3双敲除植株中,根定位的IAA合成减少,这表明色氨酸依赖性IAA合成途径在根中起重要作用。我们提出了一个关于在幼苗早期发育过程中主根如何获得生长素的模型。