3‐ketoacyl‐CoA synthase 19 contributes to the biosynthesis of seed lipids and cuticular wax in Arabidopsis and abiotic stress tolerance

Author:

Luo Na1234,Wang Yulu3,Liu Yu134,Wang Yuxin134,Guo Yanjun25,Chen Chunjie134,Gan Qiaoqiao134,Song Yuyang124,Fan Yongxin124,Jin Shurong3,Ni Yu134ORCID

Affiliation:

1. College of Agronomy Qingdao Agricultural University Qingdao China

2. Qingdao Key Laboratory of Specialty Plant Germplasm Innovation and Utilization in Saline Soils of Coastal Beach Qingdao Agricultural University Qingdao China

3. College of Agronomy and Biotechnology Southwest University Chongqing China

4. Dongying Key Laboratory of Germplasm Resources Identification and Application of Oil Crops in Saline alkali Land Academy of Dongying Efficient Agricultural Technology and Industry on Saline and Alkaline Land in Collaboration with Qingdao Agricultural University Dongying China

5. College of Grassland Science Qingdao Agricultural University Qingdao China

Abstract

AbstractVery‐long‐chain fatty acids (VLCFAs) are essential precursors for plant membrane lipids, cuticular waxes, suberin, and storage oils. Integral to the fatty acid elongase (FAE) complex, 3‐ketoacyl‐CoA synthases (KCSs) function as crucial enzymes in the VLCFA pathway, determining the chain length of VLCFA. This study explores the in‐planta role of the KCS19 gene. KCS19 is predominantly expressed in leaves and stem epidermis, sepals, styles, early silique walls, beaks, pedicels, and mature embryos. Localized in the endoplasmic reticulum, KCS19 interacts with other FAE proteins. kcs19 knockout mutants displayed reduced total wax and wax crystals, particularly alkanes, while KCS19 overexpression increased these components and wax crystals. Moreover, the cuticle permeability was higher for the kcs19 mutants compared to the wild type, rendering them more susceptible to drought and salt stress, whereas KCS19 overexpression enhanced drought and salt tolerance. Disrupting KCS19 increased C18 species and decreased C20 and longer species in seed fatty acids, indicating its role in elongating C18 to C20 VLCFAs, potentially up to C24 for seed storage lipids. Collectively, KCS19‐mediated VLCFA synthesis is required for cuticular wax biosynthesis and seed storage lipids, impacting plant responses to abiotic stress.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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