Integration of genomics, transcriptomics and metabolomics identifies candidate loci underlying fruit weight in loquat

Author:

Peng Ze1,Zhao Chongbin1,Li Shuqing1,Guo Yihan1,Xu Hongxia2,Hu Guibing1,Liu Zongli1,Chen Xiuping3,Chen Junwei2,Lin Shunquan1,Su Wenbing13,Yang Xianghui1

Affiliation:

1. South China Agricultural University State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources and Key Laboratory of Innovation and Utilization of Horticultural Crop Resources in South China (Ministry of Agriculture and Rural Affairs), College of Horticulture, , Guangzhou, Guangdong 510642, China

2. Zhejiang Academy of Agricultural Sciences Institute of Horticulture, , Hangzhou, Zhejiang 310021, China

3. Fujian Academy of Agricultural Sciences Fruit Research Institute, , Fuzhou, Fujian 350013, China

Abstract

AbstractFruit weight is an integral part of fruit quality and directly influences the commodity value and economic return of fruit crops. Despite the importance of fruit weight, its underlying molecular mechanisms remain understudied, especially for perennial fruit tree crops such as cultivated loquat (Eriobotrya japonica Lindl.). Auxin is known to regulate fruit development, but its role and metabolism during the development of loquat fruit remain obscure. In this study, we used a multi-omics approach, integrating whole-genome resequencing-based quantitative trait locus (QTL) mapping with an F1 population, population genomics analysis using germplasm accessions, transcriptome analysis, and metabolic profiling to identify genomic regions potentially associated with fruit weight in loquat. We identified three major loci associated with fruit weight, supported by both QTL mapping and comparative genomic analysis between small- and large-fruited loquat cultivars. Comparison between two genotypes with contrasting fruit weight performance by transcriptomic and metabolic profiling revealed an important role for auxin in the regulation of fruit development, especially at the fruit enlargement stage. The multi-omics approach identified homologs of ETHYLENE INSENSITIVE 4 (EjEIN4) and TORNADO 1 (EjTRN1) as promising candidates for the control of fruit weight. Three single nucleotide polymorphism (SNP) markers were also closely associated with fruit weight. Results from this study provide insights into the genetic and metabolic controls of fruit weight in loquat from multiple perspectives. The candidate genomic regions, genes, and sequence variants will facilitate our understanding of the molecular basis of fruit weight and lay a foundation for future breeding and manipulation of fruit weight in loquat.

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

Reference98 articles.

1. Complex cellular and molecular events determining fruit size;Mauxion;Trends Plant Sci,2021

2. Changes in cell number and cell size during pineapple (Ananas comosus L.) fruit development and their relationship with fruit size;Li;Aust J Bot,2010

3. Identification and characterization of QTLs for fruit quality traits in peach through a multi-family approach;Rawandoozi;BMC Genomics,2020

4. Hormonal interactions in fruit development;Ozga;J Plant Growth Regul,2003

5. Anatomical analysis of fruit development of different-sized ‘Hongro’and ‘Fuji’apple fruits;Zheng;Hortic Environ Biotechnol,2009

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