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番茄 microRNA164 基因的 CRISPR/Cas9 突变体揭示了它们在发育中的功能特化。

CRISPR/Cas9 mutants of tomato MICRORNA164 genes uncover their functional specialization in development.

机构信息

Institute of Plant Sciences, ARO, Volcani Center, Rishon LeZion 7505101, Israel.

Department of Plant Science, The Robert H. Smith Faculty of Agriculture, Food and Environment, The Hebrew University of Jerusalem, Rehovot 7610001, Israel.

出版信息

Plant Physiol. 2021 Nov 3;187(3):1636-1652. doi: 10.1093/plphys/kiab376.

Abstract

Plant MICRORNA164 (miR164) plays diverse regulatory functions by post-transcriptional repression of certain NAM/ATAF/CUC-domain transcription factors. However, the involvement of miR164 in fleshy fruit development and ripening remains poorly understood. Here, de novo prediction of tomato (Solanum lycopersicum) MIR164 genes identified four genes (SlMIR164a-d), of which SlMIR164d has an atypically long pre-miRNA. The roles of the fruit expressed SlMIR164a, b, and d were studied by analysis of their Clustered Regularly Interspaced Short Palindromic Repeats mutants. The slmir164bCR mutant plants exhibited shoot and flower abnormalities characteristic of ectopic boundary specification, whereas the shoot and flower development of slmir164aCR and slmir164dCR mutants were indistinguishable from wild-type. Strikingly, the knockout of SlMIR164a practically eliminated sly-miR164 from the developing and ripening fruit pericarp. The sly-miR164-deficient slmir164aCR fruits were smaller than the wild-type, due to reduced pericarp cell division and expansion, and displayed intense red color and matte, instead of glossy appearance, upon ripening. We found that the fruit skin phenotypes were associated with morphologically abnormal outer epidermis and thicker cuticle. Quantitation of sly-miR164 target transcripts in slmir164aCR ripening fruits demonstrated the upregulation of SlNAM3 and SlNAM2. Specific expression of their miR164-resistant versions in the pericarp resulted in the formation of extremely small fruits with abnormal epidermis, highlighting the importance of their negative regulation by sly-miR164a. Taken together, our results demonstrate that SlMIR164a and SlMIR164b play specialized roles in development: SlMIR164b is required for shoot and flower boundary specification, and SlMIR164a is required for fruit growth including the expansion of its outer epidermis, which determines the properties of the fruit skin.

摘要

植物 microRNA164(miR164)通过转录后抑制某些 NAM/ATAF/CUC 结构域转录因子来发挥多种调节功能。然而,miR164 参与肉质果实发育和成熟的机制仍知之甚少。本研究通过从头预测番茄(Solanum lycopersicum)MIR164 基因,鉴定出 4 个基因(SlMIR164a-d),其中 SlMIR164d 具有异常长的前体 miRNA。通过分析其 CRISPR/Cas9 突变体,研究了果实特异性表达的 SlMIR164a、b 和 d 的作用。slmir164bCR 突变体植株表现出异位边界特化的茎和花异常,而 slmir164aCR 和 slmir164dCR 突变体的茎和花发育与野生型无明显差异。引人注目的是,SlMIR164a 的敲除几乎消除了发育中和成熟果皮中的 sly-miR164。由于果皮细胞分裂和扩张减少,sly-miR164 缺失的 slmir164aCR 果实比野生型小,并且在成熟时表现出强烈的红色和哑光,而不是有光泽的外观。我们发现果皮表型与形态异常的外表皮和更厚的角质层有关。在 slmir164aCR 成熟果实中定量 sly-miR164 靶标转录本表明 SlNAM3 和 SlNAM2 的上调。它们在果皮中的 miR164 抗性版本的特异性表达导致形成具有异常表皮的极小果实,突出了 sly-miR164a 对它们的负调控的重要性。总之,我们的研究结果表明 SlMIR164a 和 SlMIR164b 在发育中发挥专门作用:SlMIR164b 是芽和花边界特化所必需的,SlMIR164a 是果实生长所必需的,包括其外表皮的扩张,这决定了果实表皮的特性。

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