Molecular Mechanisms of Chlorophyll Deficiency in Ilex × attenuata ‘Sunny Foster’ Mutant

Author:

Zou Yiping123,Huang Yajian1,Zhang Donglin4,Chen Hong2ORCID,Liang Youwang1,Hao Mingzhuo13,Yin Yunlong12

Affiliation:

1. College of Forestry, Nanjing Forestry University, Nanjing 210037, China

2. Institute of Botany, Jiangsu Province and Chinese Academy of Sciences (Nanjing Botanical Garden Mem. Sun Yat-Sen), Nanjing 210014, China

3. Jiangsu Qinghao Landscape Horticulture Co., Ltd., Nanjing 211225, China

4. Department of Horticulture, University of Georgia, Athens, GA 30602, USA

Abstract

Ilex × attenuata ‘Sunny Foster’ represents a yellow leaf mutant originating from I. × attenuata ‘Foster#2’, a popular ornamental woody cultivar. However, the molecular mechanisms underlying this leaf color mutation remain unclear. Using a comprehensive approach encompassing cytological, physiological, and transcriptomic methodologies, notable distinctions were discerned between the mutant specimen and its wild type. The mutant phenotype displayed aberrant chloroplast morphology, diminished chlorophyll content, heightened carotenoid/chlorophyll ratios, and a decelerated rate of plant development. Transcriptome analysis identified differentially expressed genes (DEGs) related to chlorophyll metabolism, carotenoid biosynthesis and photosynthesis. The up-regulation of CHLD and CHLI subunits leads to decreased magnesium chelatase activity, while the up-regulation of COX10 increases heme biosynthesis—both impair chlorophyll synthesis. Conversely, the down-regulation of HEMD hindered chlorophyll synthesis, and the up-regulation of SGR enhanced chlorophyll degradation, resulting in reduced chlorophyll content. Additionally, genes linked to carotenoid biosynthesis, flavonoid metabolism, and photosynthesis were significantly down-regulated. We also identified 311 putative differentially expressed transcription factors, including bHLHs and GLKs. These findings shed light on the molecular mechanisms underlying leaf color mutation in I. × attenuata ‘Sunny Foster’ and provide a substantial gene reservoir for enhancing leaf color through breeding techniques.

Funder

Modern Agriculture Project of Jiangsu Province

Science and Technology Development Plan Project of Nanjing City

Jiangsu Provincial Innovation and Extension Project of Agricultural Science and Technology

Jiangsu Provincial Innovation and Extension Project of Forestry Science and Technology

Publisher

MDPI AG

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