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Hydrotropism in abscisic acid, wavy, and gravitropic mutants of Arabidopsis thaliana

机译:拟南芥的脱落酸,波浪状和重力变种突变体中的亲溶性

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We have developed experimental systems to study hydrotropism in seedling roots of Arabidopsis thaliana (L.) Heynh. Arabidopsis roots showed a strong curvature in response to a moisture gradient, established by applying 1% agar and a saturated solution of KCl or K2CO3 in a closed chamber. In this system, the hydrotropic response overcame the gravitropic response. Hydrotropic curvature commenced within 30 min and reached 80–100 degrees within 24 h of hydrostimulation. When 1% agar and agar containing 1 MPa sorbitol were placed side-by-side in humid air, a water potential gradient formed at the border between the two media. Although the gradient changed with time, it still elicited a hydrotropic response in Arabidopsis roots. The roots curved away from 0.5–1.5 MPa of sorbitol agar. Various Arabidopsis mutants were tested for their hydrotropic response. Roots of aba1-1 and abi2-1 mutants were less sensitive to hydrotropic stimulation. Addition of abscisic acid restored the normal hydrotropic response in aba1-1 roots. In comparison, mutants that exhibit a reduced response to gravity and auxin, axr1-3 and axr2-1, showed a hydrotropic response greater than that of the wild type. Wavy mutants, wav2-1 and wav3-1, showed increased sensitivity to the induction of hydrotropism by the moisture gradient. These results suggest that auxin plays divergent roles in hydrotropism and gravitropism, and that abscisic acid plays a positive role in hydrotropism. Furthermore, hydrotropism and the wavy response may share part of a common molecular pathway controlling the directional growth of roots.
机译:我们已经开发了实验系统来研究拟南芥(L.)Heynh幼苗根部的水溶性。拟南芥根在湿度梯度下表现出很强的曲率,这种水分梯度是通过在密闭室内施用1%琼脂和KCl或K2 CO3 饱和溶液建立的。在该系统中,水溶响应克服了重力响应。水溶曲率在30分钟内开始,并在水刺激24小时内达到80–100度。当将1%琼脂和含有1 MPa山梨糖醇的琼脂并排放置在潮湿的空气中时,在两种介质之间的边界处会形成水势梯度。尽管梯度随时间变化,但它仍在拟南芥根中引起水溶反应。根部弯曲远离0.5–1.5 MPa的山梨醇琼脂。测试了各种拟南芥突变体的水溶反应。 aba1-1和abi2-1突变体的根对水溶刺激较不敏感。加入脱落酸可恢复aba1-1根的正常水溶反应。相比之下,对重力和植物生长素,axr1-3和axr2-1响应降低的突变体表现出比野生型更大的水溶响应。波浪形突变体wav2-1和wav3-1对水分梯度诱导的水溶诱导敏感性增强。这些结果表明,生长素在水溶和重力作用中起不同的作用,而脱落酸在水溶作用中起积极作用。此外,水溶和波浪响应可能共享控制根系定向生长的共同分子途径的一部分。

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