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CsSPL 作为 HD-ZIP III 和 CsWUS 转录因子之间的衔接子,调节黄瓜(黄瓜)的花药和胚珠发育。

CsSPL functions as an adaptor between HD-ZIP III and CsWUS transcription factors regulating anther and ovule development in Cucumis sativus (cucumber).

机构信息

Department of Vegetable Sciences, Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, China Agricultural University, Beijing, 100193, China.

College of Horticulture, Northwest A&F University, Yangling, Shanxi, 712100, China.

出版信息

Plant J. 2018 May;94(3):535-547. doi: 10.1111/tpj.13877. Epub 2018 Mar 31.

Abstract

Anther and ovule genesis preconditions crop fertilization and fruit production; however, coordinative regulation of anther and ovule development and underlying molecular pathways remain largely elusive. Here, we found that SPOROCYTELESS (SPL)/NOZZLE (NZZ) expression was nearly abolished in a Cucumis sativus (cucumber) mutant with severely defective anther and ovule development. CsSPL was expressed specifically in the developing anthers and ovules. Knock-down of CsSPL reduced male and female fertility with malformed pollen and suppressed ovule development. Importantly, CsSPL directly interacted with CsWUS (WUSCHEL) in the nucellus and YABBY family genes in integuments, and positively regulated CsWUS expression, meanwhile the HD-ZIP III gene CsPHB (PHABULOSA), expressed specifically in the nucellus, promoted CsSPL expression by binding to the CsSPL promoter. Thus, CsSPL acts as an adaptor to link CsPHB and CsWUS functioning, underpinning a previously unidentified regulatory pathway orchestrating sex organ development in planta. In addition, auxin accumulation was reduced in the reproductive organs of CsSPL knock-down plants. Biochemical analyses further showed that CsSPL stimulated the expression of AUXIN RESPONSE FACTOR 3 (CsARF3), and was positively regulated by CsARF13 during reproductive organ development, indicating sequential interactions of CsSPL with auxin signaling components in orchestrating anther and ovule development.

摘要

花粉和胚珠的发生是作物受精和果实产生的前提条件;然而,花药和胚珠发育的协调调控及其潜在的分子途径在很大程度上仍难以捉摸。在这里,我们发现 SPOROCYTELESS(SPL)/NOZZLE(NZZ)在一个黄瓜突变体中的表达几乎被完全消除,该突变体的花药和胚珠发育严重缺陷。CsSPL 特异性表达于发育中的花药和胚珠。CsSPL 的敲低降低了雄性和雌性的育性,花粉畸形,并抑制了胚珠的发育。重要的是,CsSPL 直接与珠心细胞中的 CsWUS(WUSCHEL)和珠被中的 YABBY 家族基因相互作用,并正向调控 CsWUS 的表达,同时,HD-ZIP III 基因 CsPHB(PHABULOSA),特异性表达于珠心细胞,通过与 CsSPL 启动子结合促进 CsSPL 的表达。因此,CsSPL 作为一个衔接子,将 CsPHB 和 CsWUS 的功能联系起来,为植物性器官发育提供了一个以前未被识别的调控途径。此外,CsSPL 敲低植物生殖器官中的生长素积累减少。生化分析进一步表明,CsSPL 刺激 AUXIN RESPONSE FACTOR 3(CsARF3)的表达,并在生殖器官发育过程中受 CsARF13 的正向调控,表明 CsSPL 在协调花药和胚珠发育过程中与生长素信号成分的连续相互作用。

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