Ajala Chitra, Hasenstein Karl H
Biology Department, University of Louisiana at Lafayette, Lafayette, LA 70504, USA.
Cemvita Factory, 9350 Kirby Drive, Suite 100, Houston, TX 77054, USA.
Plants (Basel). 2022 Apr 28;11(9):1191. doi: 10.3390/plants11091191.
Unlike typical negative gravitropic curvature, young hypocotyls of and other dicots exhibit positive gravitropism. This positive curvature occurs at the base of the hypocotyl and is followed by the typical negative gravity-induced curvature. We investigated the role of auxin in both positive and negative hypocotyl curvature by examining the transcription of , , and in curving tissue. We compared tissue extraction of the convex and concave flank with Solid Phase Gene Extraction (SPGE). Based on Ubiquitin1 () as a reference gene, the log (2) fold change of all examined genes was determined. Transcription of the examined genes varied during the graviresponse suggesting that these genes affect differential elongation. The transcription of all genes was upregulated in the lower flank and downregulated in the upper flank during the initial downward curving period. After 48 h, the transcription profile reversed, suggesting that the ensuing negative gravicurvature is controlled by the same genes as the positive gravicurvature. High-spatial resolution profiling using SPGE revealed that the transcription profile of the examined genes was spatially distinct within the curving tissue. The comparison of the hypocotyl transcription profile with the root tip indicated that the tip tissue is a suitable reference for curving hypocotyls and that root and hypocotyl curvature are controlled by the same physiological processes.
与典型的负向重力性弯曲不同,拟南芥和其他双子叶植物的幼嫩下胚轴表现出正向重力性。这种正向弯曲发生在下胚轴基部,随后是典型的负向重力诱导弯曲。我们通过检测弯曲组织中生长素相关基因的转录情况,研究了生长素在正向和负向下胚轴弯曲中的作用。我们使用固相基因提取(SPGE)技术比较了凸面和凹面侧翼的组织提取物。以泛素1(Ubiquitin1)作为参考基因,测定了所有检测基因的log(2)倍数变化。在重力响应过程中,检测基因的转录发生变化,表明这些基因影响差异伸长。在最初的向下弯曲阶段,所有基因在下侧侧翼上调表达,在上侧侧翼下调表达。48小时后,转录谱发生逆转,表明随后的负向重力弯曲与正向重力弯曲受相同基因控制。使用SPGE进行的高空间分辨率分析表明,检测基因的转录谱在弯曲组织内具有空间差异。下胚轴转录谱与根尖的比较表明,根尖组织是弯曲下胚轴的合适参考,并且根和下胚轴的弯曲受相同的生理过程控制。