miR171-targeted SCARECROW-LIKE genes CsSCL2 and CsSCL3 regulate somatic embryogenesis in citrus

Author:

Feng Meng-Qi1ORCID,Jiang Nan1ORCID,Wang Peng-Bo1ORCID,Liu Yue1,Xia Qiang-Ming1ORCID,Jia Hui-Hui1ORCID,Shi Qiao-Fang1ORCID,Long Jian-Mei1ORCID,Xiao Gong-Ao1ORCID,Yin Zhao-Ping1,Xie Kai-Dong1ORCID,Guo Wen-Wu12ORCID,Wu Xiao-Meng1ORCID

Affiliation:

1. National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Sciences, Huazhong Agricultural University , Wuhan 430070 , China

2. Hubei Hongshan Laboratory , Wuhan 430070 , China

Abstract

Abstract Somatic embryogenesis (SE) is a key regeneration pathway in various biotechnology approaches to crop improvement, especially for economically important perennial woody crops like citrus. However, maintenance of SE capability has long been a challenge and becomes a bottleneck in biotechnology-facilitated plant improvement. In the embryogenic callus (EC) of citrus, we identified 2 csi-miR171c–targeted SCARECROW-LIKE genes CsSCL2 and CsSCL3 (CsSCL2/3), which exert positive feedback regulation on csi-miR171c expression. Suppression of CsSCL2 expression by RNA interference (RNAi) enhanced SE in citrus callus. A thioredoxin superfamily protein CsClot was identified as an interactive protein of CsSCL2/3. Overexpression of CsClot disturbed reactive oxygen species (ROS) homeostasis in EC and enhanced SE. Chromatin immunoprecipitation sequencing (ChIP-Seq) and RNA-Seq identified 660 genes directly suppressed by CsSCL2 that were enriched in biological processes including development-related processes, auxin signaling pathway, and cell wall organization. CsSCL2/3 bound to the promoters of regeneration-related genes, such as WUSCHEL-RELATED HOMEOBOX 2 (CsWOX2), CsWOX13, and Lateral Organ Boundaries Domain 40 (LBD40), and repressed their expression. Overall, CsSCL2/3 modulate ROS homeostasis through the interactive protein CsClot and directly suppress the expression of regeneration-related genes, thus regulating SE in citrus. We uncovered a regulatory pathway of miR171c-targeted CsSCL2/3 in SE, which shed light on the mechanism of SE and regeneration capability maintenance in citrus.

Funder

Ministry of Science and Technology of China

National Natural Science Foundation of China

Natural Science Foundation of Hubei Province

Foundation of Hubei Hongshan Laboratory

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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