Department of Plant Biology, Carnegie Institution of Washington, 290 Panama Street, Stanford, CA 94305.
Proc Natl Acad Sci U S A. 1987 May;84(9):2747-51. doi: 10.1073/pnas.84.9.2747.
The effect of auxin (indole-3-acetic acid; IAA) on growth and incorporation of myo-[2-(3)H(N)]inositol ([(3)H]Ins) into noncellulosic polysaccharides in the cell walls of third internode sections from red light-grown pea seedlings (Pisum sativum L. cv. Alaska) was investigated. Intact sections were incubated on [(3)H]Ins for 4 hr to permit uptake of the tracer and then IAA was added. Growth started after a lag phase of 15 min under these conditions. The sections were removed from the tracer and separated into epidermis and cortical cylinder (cortex plus vascular tissue). In the epidermis, IAA-induced stimulation of [(3)H]Ins incorporation started after a lag of 15 min. The amount of incorporation was 15% higher after 30 min and 24% higher after 2 hr than in the control. In the cortical cylinder, IAA-induced stimulation of [(3)H]Ins incorporation started only approximately 1 hr after adding IAA. The ionophore monensin (20 muM) inhibited the IAA-induced growth by 95%. Under these conditions, the IAA-induced stimulation of [(3)H]Ins incorporation and the IAA-induced increase in in vivo extensibility of the sections was almost completely inhibited, although oxygen uptake was unaffected. We suggest that wall synthesis (as represented by [(3)H]Ins incorporation) and wall loosening (increase in in vivo extensibility) are related processes. The results support the hypothesis that IAA induces growth by rapid stimulation of cell wall synthesis in the growth-limiting epidermal cell layer.
生长素(吲哚-3-乙酸;IAA)对红光下生长的豌豆幼苗(Pisum sativum L. cv. Alaska)第三节间段细胞壁中非纤维素多糖的生长和掺入[3H]肌醇([3H]Ins)的影响进行了研究。完整的切片在[3H]Ins 中孵育 4 小时以允许示踪剂摄取,然后添加 IAA。在这些条件下,经过 15 分钟的滞后期后,生长开始。将切片从示踪剂中取出并分离为表皮和皮质圆柱(皮层加维管束组织)。在表皮中,IAA 诱导的[3H]Ins 掺入的刺激作用在 15 分钟的滞后期后开始。与对照相比,30 分钟后掺入量增加 15%,2 小时后增加 24%。在皮质圆柱中,IAA 诱导的[3H]Ins 掺入的刺激作用仅在添加 IAA 后约 1 小时开始。离子载体莫能菌素(20 μM)抑制 IAA 诱导的生长 95%。在这些条件下,IAA 诱导的[3H]Ins 掺入的刺激作用和 IAA 诱导的切片体内延伸性增加几乎完全被抑制,尽管氧摄取不受影响。我们认为细胞壁合成(如[3H]Ins 掺入所代表)和细胞壁松弛(体内延伸性增加)是相关的过程。结果支持这样的假设,即 IAA 通过快速刺激生长限制的表皮细胞层中的细胞壁合成来诱导生长。