Roles of very long-chain fatty acids in compound leaf patterning inMedicago truncatula

Author:

Wang Hongfeng1ORCID,Lu Zhichao1ORCID,Xu Yiteng1ORCID,Zhang Jing1ORCID,Han Lu1ORCID,Chai Maofeng2ORCID,Wang Zeng-Yu2ORCID,Yang Xianpeng3ORCID,Lu Shiyou4ORCID,Tong Jianhua5ORCID,Xiao Langtao5ORCID,Wen Jiangqi6ORCID,Mysore Kirankumar S6ORCID,Zhou Chuanen1ORCID

Affiliation:

1. The Key Laboratory of Plant Development and Environmental Adaptation Biology, Ministry of Education, School of Life Sciences, Shandong University , Qingdao 266101 , China

2. Grassland Agri-Husbandry Research Center, Qingdao Agricultural University , Qingdao 266109 , China

3. College of Life Sciences, Shandong Normal University , Jinan 250014 , China

4. State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University , Wuhan 430062 , China

5. Hunan Provincial Key Laboratory of Phytohormones and Growth Development, Hunan Provincial Key Laboratory for Crop Germplasm Innovation and Utilization, Hunan Agricultural University , Changsha 410128 , China

6. Institute of Agricultural Biosciences, Oklahoma State University , 3210 Sam Noble Parkway, Ardmore, Oklahoma 73401 , USA

Abstract

AbstractPlant cuticles are composed of hydrophobic cuticular waxes and cutin. Very long-chain fatty acids (VLCFAs) are components of epidermal waxes and the plasma membrane and are involved in organ morphogenesis. By screening a barrelclover (Medicago truncatula) mutant population tagged by the transposable element of tobacco (Nicotiana tabacum) cell type1 (Tnt1), we identified two types of mutants with unopened flower phenotypes, named unopened flower1 (uof1) and uof2. Both UOF1 and UOF2 encode enzymes that are involved in the biosynthesis of VLCFAs and cuticular wax. Comparative analysis of the mutants indicated that the mutation in UOF1, but not UOF2, leads to the increased number of leaflets in M. truncatula. UOF1 was specifically expressed in the outermost cell layer (L1) of the shoot apical meristem (SAM) and leaf primordia. The uof1 mutants displayed defects in VLCFA-mediated plasma membrane integrity, resulting in the disordered localization of the PIN-FORMED1 (PIN1) ortholog SMOOTH LEAF MARGIN1 (SLM1) in M. truncatula. Our work demonstrates that the UOF1-mediated biosynthesis of VLCFAs in L1 is critical for compound leaf patterning, which is associated with the polarization of the auxin efflux carrier in M. truncatula.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Shandong Province

China Postdoctoral Science Foundation

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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