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Article

Global Transcriptional Insights of Pollen-Pistil Interactions Commencing Self-Incompatibility and Fertilization in Tea [Camellia sinensis (L.) O. Kuntze]

1
Biotechnology Department, CSIR-Institute of Himalayan Bioresource Technology, Palampur, Himachal Pradesh 176061, India
2
Department of Biotechnology, Guru Nanak Dev University, Amritsar 143005, India
3
Academy of Scientific and Innovative Research, CSIR-Institute of Himalayan Bioresource Technology, Palampur, Himachal Pradesh 176061, India
*
Author to whom correspondence should be addressed.
Int. J. Mol. Sci. 2019, 20(3), 539; https://doi.org/10.3390/ijms20030539
Submission received: 26 November 2018 / Revised: 8 January 2019 / Accepted: 9 January 2019 / Published: 28 January 2019

Abstract

This study explicates molecular insights commencing Self-Incompatibility (SI) and CC (cross-compatibility/fertilization) in self (SP) and cross (CP) pollinated pistils of tea. The fluorescence microscopy analysis revealed ceased/deviated pollen tubes in SP, while successful fertilization occurred in CP at 48 HAP. Global transcriptome sequencing of SP and CP pistils generated 109.7 million reads with overall 77.9% mapping rate to draft tea genome. Furthermore, concatenated de novo assembly resulted into 48,163 transcripts. Functional annotations and enrichment analysis (KEGG & GO) resulted into 3793 differentially expressed genes (DEGs). Among these, de novo and reference-based expression analysis identified 195 DEGs involved in pollen-pistil interaction. Interestingly, the presence of 182 genes [PT germination & elongation (67), S-locus (11), fertilization (43), disease resistance protein (30) and abscission (31)] in a major hub of the protein-protein interactome network suggests a complex signaling cascade commencing SI/CC. Furthermore, tissue-specific qRT-PCR analysis affirmed the localized expression of 42 DE putative key candidates in stigma-style and ovary, and suggested that LSI initiated in style and was sustained up to ovary with the active involvement of csRNS, SRKs & SKIPs during SP. Nonetheless, COBL10, RALF, FERONIA-rlk, LLG and MAPKs were possibly facilitating fertilization. The current study comprehensively unravels molecular insights of phase-specific pollen-pistil interaction during SI and fertilization, which can be utilized to enhance breeding efficiency and genetic improvement in tea.
Keywords: gene expression; interactome; microscopy; fertilization; self-incompatibility; transcriptome; tea gene expression; interactome; microscopy; fertilization; self-incompatibility; transcriptome; tea
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MDPI and ACS Style

Seth, R.; Bhandawat, A.; Parmar, R.; Singh, P.; Kumar, S.; Sharma, R.K. Global Transcriptional Insights of Pollen-Pistil Interactions Commencing Self-Incompatibility and Fertilization in Tea [Camellia sinensis (L.) O. Kuntze]. Int. J. Mol. Sci. 2019, 20, 539. https://doi.org/10.3390/ijms20030539

AMA Style

Seth R, Bhandawat A, Parmar R, Singh P, Kumar S, Sharma RK. Global Transcriptional Insights of Pollen-Pistil Interactions Commencing Self-Incompatibility and Fertilization in Tea [Camellia sinensis (L.) O. Kuntze]. International Journal of Molecular Sciences. 2019; 20(3):539. https://doi.org/10.3390/ijms20030539

Chicago/Turabian Style

Seth, Romit, Abhishek Bhandawat, Rajni Parmar, Pradeep Singh, Sanjay Kumar, and Ram Kumar Sharma. 2019. "Global Transcriptional Insights of Pollen-Pistil Interactions Commencing Self-Incompatibility and Fertilization in Tea [Camellia sinensis (L.) O. Kuntze]" International Journal of Molecular Sciences 20, no. 3: 539. https://doi.org/10.3390/ijms20030539

APA Style

Seth, R., Bhandawat, A., Parmar, R., Singh, P., Kumar, S., & Sharma, R. K. (2019). Global Transcriptional Insights of Pollen-Pistil Interactions Commencing Self-Incompatibility and Fertilization in Tea [Camellia sinensis (L.) O. Kuntze]. International Journal of Molecular Sciences, 20(3), 539. https://doi.org/10.3390/ijms20030539

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