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有遗传学证据表明,油菜素内酯独立于茉莉酸途径抑制玉米雄穗中的雌蕊。

Genetic evidence that brassinosteroids suppress pistils in the maize tassel independent of the jasmonic acid pathway.

作者信息

Best Norman, Dilkes Brian

机构信息

Agriculture Research Service, Plant Genetics Research Unit USDA Columbia Missouri USA.

Department of Biochemistry Purdue University West Lafayette Indiana USA.

出版信息

Plant Direct. 2023 Jul 11;7(7):e501. doi: 10.1002/pld3.501. eCollection 2023 Jul.

Abstract

The developmental genetics of reproductive structure control in maize must consider both the staminate florets of the tassel and the pistillate florets of the ear synflorescences. Pistil abortion takes place in the tassel florets, and stamen arrest is affected in ear florets to give rise to the monoecious nature of maize. Gibberellin (GA) deficiency results in increased tillering, a dwarfed plant syndrome, and the retention of anthers in the ear florets of maize. The mutant results in suppression of silks in the ear. We demonstrate in this study that jasmonic acid (JA) and GA act independently and show additive phenotypes resulting in androecious double mutant plants. The persistence of pistils in the tassel can be induced by multiple mechanisms, including JA deficiency, GA excess, genetic control of floral determinacy, and organ identity. The mutant can suppress both silks in the ear and the silks in the tassel of JA-deficient and AP2 transcription factor mutants. We previously demonstrated that GA production was required for brassinosteroid (BR) deficiency to affect persistence of pistils in the tassel. We find that BR deficiency affects pistil persistence by an independent mechanism from the mutant and JA pathway. The mutant did not prevent the formation of pistils in the tassel by in double mutants. In addition, we demonstrate that there is more to the mutant than just a suppression of pistil growth. We document novel phenotypes of mutants including weakly penetrant ear fasciation and anther persistence in the ear florets. Thus, the JA/AP2 mechanism of pistil retention in the tassel and silk growth in the ear are similarly sensitive to loss of the SILKLESS1 protein, while the BR/GA mechanism is not.

摘要

玉米生殖结构控制的发育遗传学必须同时考虑雄穗的雄花小花和雌穗花序的雌花小花。雌蕊败育发生在雄穗小花中,雄蕊败育则影响雌穗小花,从而导致玉米的雌雄同株特性。赤霉素(GA)缺乏会导致分蘖增加、植株矮化综合征以及玉米雌穗小花中花药的保留。该突变体导致雌穗中花丝的抑制。我们在本研究中证明,茉莉酸(JA)和GA独立起作用,并表现出累加表型,从而产生雄性双突变植株。雄穗中雌蕊的持续存在可由多种机制诱导,包括JA缺乏、GA过量、花确定性的遗传控制和器官特性。该突变体可以抑制JA缺乏和AP2转录因子突变体的雌穗和雄穗中的花丝。我们之前证明,油菜素内酯(BR)缺乏影响雄穗中雌蕊的持续存在需要GA的产生。我们发现,BR缺乏通过与突变体和JA途径不同的独立机制影响雌蕊的持续存在。在双突变体中,该突变体并未阻止雄穗中雌蕊的形成。此外,我们证明该突变体不仅仅是抑制雌蕊生长。我们记录了该突变体的新表型,包括雌穗轻度的扁化和雌穗小花中花药的持续存在。因此,雄穗中雌蕊保留和雌穗中花丝生长的JA/AP2机制对SILKLESS1蛋白的缺失同样敏感,而BR/GA机制则不然。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23fd/10333885/490b05565d75/PLD3-7-e501-g001.jpg

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