MORE FLORET1 controls anther development by negatively regulating key tapetal genes in both diploid and tetraploid rice

Author:

Lu Zijun12345ORCID,Zhu Lianjun1345,Liang Guobin1345,Li Xiaoxia134,Li Qihang1345,Li Yajing1ORCID,He Shengbo134ORCID,Wu Jinwen1345ORCID,Liu Xiangdong1345ORCID,Zhang Jingyi134ORCID

Affiliation:

1. State Key Laboratory for Conservation and Utilization of Subtropical Agro-Bioresources, Guangdong Laboratory for Lingnan Modern Agriculture, South China Agricultural University , Guangzhou 510642 , China

2. Henry Fok School of Biology and Agriculture, Shaoguan University , Shaoguan 512005 , China

3. Guangdong Provincial Key Laboratory of Plant Molecular Breeding, South China Agricultural University , Guangzhou 510642 , China

4. College of Agriculture, South China Agricultural University , Guangzhou 510642 , China

5. Guangdong Base Bank for Lingnan Rice Germplasm Resources , Guangzhou 510642 , China

Abstract

Abstract Polyploid hybrid rice (Oryza sativa) has great potential for increasing yields. However, hybrid rice depends on male fertility and its regulation, which is less well studied in polyploid rice than in diploid rice. We previously identified an MYB transcription factor, MORE FLORET1 (MOF1), whose mutation causes male sterility in neo-tetraploid rice. MOF1 expression in anthers peaks at anther Stage 7 (S7) and progressively decreases to low levels at S10. However, it remains unclear how the dynamics of MOF1 expression contribute to male fertility. Here, we carefully examined anther development in both diploid and tetraploid mof1 rice mutants, as well as lines ectopically expressing MOF1 in a temporal manner. MOF1 mutations caused delayed degeneration of the tapetum and middle layer of anthers and aberrant pollen wall organization. Ectopic MOF1 expression at later stages of anther development led to retarded cytoplasmic reorganization of tapetal cells. In both cases, pollen grains were aborted and seed production was abolished, indicating that precise control of MOF1 expression is essential for male reproduction. We demonstrated that 5 key tapetal genes, CYP703A3 (CYTOCHROME P450 HYDROXYLASE 703A3), OsABCG26 (O. sativa ATP BINDING CASSETTE G26), PTC1 (PERSISTENT TAPETAL CELL1), PKS2 (POLYKETIDE SYNTHASE 2), and OsABCG15 (O. sativa ATP BINDING CASSETTE G15), exhibit expression patterns opposite to those of MOF1 and are negatively regulated by MOF1. Moreover, DNA affinity purification sequencing (DAP-seq), luciferase activity assays, and electrophoretic mobility shift assays indicated that MOF1 binds directly to the PKS2 promoter for transcriptional repression. Our results provide a mechanistic basis for the regulation of male reproduction by MOF1 in both diploid and tetraploid rice. This study will facilitate the development of polyploid male sterile lines, which are useful for breeding of polyploid hybrid rice.

Funder

National Key R&D Program of China

China Postdoctoral Science Foundation

Laboratory of Lingnan Modern Agriculture Project

Guangdong Laboratory for Lingnan Modern Agriculture

Double First-Class Discipline Promotion Project of Guangdong province

Guangdong Provincial Pearl River Talent Plan

Publisher

Oxford University Press (OUP)

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