A microRNA396b-growth regulating factor module controls castor seed size by mediating auxin synthesis

Author:

Wang Xinyu12ORCID,Yu Song12,Li Baoxin13,Liu Yueying12ORCID,He Zhibiao4,Zhang Qingzhu125ORCID,Zheng Zhimin12ORCID

Affiliation:

1. State Key Laboratory of Tree Genetics and Breeding, College of Forestry, Northeast Forestry University , Harbin 150040 , China

2. The Center for Basic Forestry Research, College of Forestry, Northeast Forestry University , Harbin 150040 , China

3. State Key Laboratory of Tree Genetics and Breeding, Key Laboratory of Tree Breeding and Cultivation of the State Forestry and Grassland Administration, Research Institute of Forestry, Chinese Academy of Forestry , Beijing 100091 , P. R. China

4. Tongliao Academy of Agricultural Sciences , Tongliao 028015 , China

5. College of Life Science, Northeast Forestry University , Harbin 150040 , China

Abstract

Abstract Castor (Ricinus communis L.) is an importance crop cultivated for its oil and economic value. Seed size is a crucial factor that determines crop yield. Gaining insight into the molecular regulatory processes of seed development is essential for the genetic enhancement and molecular breeding of castor. Here, we successfully fine-mapped a major QTL related to seed size, qSS3, to a 180 kb interval on chromosome 03 using F2 populations (DL01×WH11). A 17.6-kb structural variation (SV) was detected through genomic comparison between DL01 and WH11. Analysis of haplotypes showed that the existence of the complete 17.6 kb structural variant may lead to the small seed characteristic in castor. In addition, we found that qSS3 contains the microRNA396b (miR396b) sequence, which is situated within the 17.6 kb SV. The results of our experiment offer additional evidence that miR396-Growth Regulating Factor 4 (GRF4) controls seed size by impacting the growth and multiplication of seed coat and endosperm cells. Furthermore, we found that RcGRF4 activates the expression of YUCCA6 (YUC6), facilitating the production of IAA in seeds and thereby impacting the growth of castor seeds. Our research has discovered a crucial functional module that controls seed size, offering a fresh understanding of the mechanism underlying seed size regulation in castor.

Funder

State Key Laboratory of Tree Genetics and Breeding

Northeast Forestry University

Publisher

Oxford University Press (OUP)

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