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生长素通过GhPIN介导的生长素运输调控棉花纤维起始。

Auxin Regulates Cotton Fiber Initiation via GhPIN-Mediated Auxin Transport.

作者信息

Zhang Mi, Zeng Jian-Yan, Long Hui, Xiao Yue-Hua, Yan Xing-Ying, Pei Yan

机构信息

Biotechnology Research Center, Southwest University, Tiansheng Road, Beibei, Chongqing, PR China.

出版信息

Plant Cell Physiol. 2017 Feb 1;58(2):385-397. doi: 10.1093/pcp/pcw203.

Abstract

Cotton fibers are seed trichomes that make cotton unique compared with other plants. At anthesis, IAA, a major auxin in plants, accumulates in the fiber cell to promote cell initiation. However, many important aspects of this process are not clear. Here, auxin distribution patterns indicated by auxin-dependent DR5::GUS (β-glucuronidase) expression in cotton ovules were studied during fiber cell differentiation and cell initiation [-2 to 2 DPA (days post-anthesis)]. The nucellus and fiber cell were two major sites where auxin accumulates. The accumulation in the nucellus started from -1 DPA, and that in fiber cells from 0 DPA. Immunolocalization analysis further suggests that the IAA accumulation in fiber initials began before flower opening. Furthermore, we demonstrate that accumulated IAA in fiber initials was mainly from efflux transport and not from in situ synthesis. Eleven auxin efflux carrier (GhPIN) genes were identified, and their expression during ovule and fiber development was investigated. Ovule-specific suppression of multiple GhPIN genes in transgenic cotton inhibited both fiber initiation and elongation. In 0 DPA ovules, GhPIN3a, unlike other GhPIN genes, showed additional localization of the transcript in the outer integument. Collectively, these results demonstrate the important role of GhPIN-mediated auxin transport in fiber-specific auxin accumulation for fiber initiation.

摘要

棉纤维是种毛,这使得棉花与其他植物相比具有独特性。在开花期,植物中的主要生长素吲哚乙酸(IAA)在纤维细胞中积累以促进细胞起始。然而,这一过程的许多重要方面尚不清楚。在此,研究了在纤维细胞分化和起始过程中(开花后-2至2天),棉花胚珠中由生长素依赖性DR5::GUS(β-葡萄糖醛酸酶)表达所指示的生长素分布模式。珠心和纤维细胞是生长素积累的两个主要部位。珠心中的积累从开花前1天开始,而纤维细胞中的积累从开花当天开始。免疫定位分析进一步表明,纤维起始细胞中的IAA积累在开花前就已开始。此外,我们证明纤维起始细胞中积累的IAA主要来自外排运输而非原位合成。鉴定出11个生长素外排载体(GhPIN)基因,并研究了它们在胚珠和纤维发育过程中的表达。转基因棉花中多个GhPIN基因的胚珠特异性抑制抑制了纤维起始和伸长。在开花当天的胚珠中,与其他GhPIN基因不同,GhPIN3a在外珠被中显示出转录本的额外定位。总体而言,这些结果证明了GhPIN介导的生长素运输在纤维特异性生长素积累以起始纤维过程中的重要作用。

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