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Integrative Metabolomic and Transcriptomic Analysis Elucidates That the Mechanism of Phytohormones Regulates Floral Bud Development in Alfalfa

10

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55

References

2024

Year

Abstract

Floral bud growth influences seed yield and quality; however, the molecular mechanism underlying the development of floral buds in alfalfa (<i>Medicago sativa</i>) is still unclear. Here, we comprehensively analyzed the transcriptome and targeted metabolome across the early, mid, and late bud developmental stages (D1, D2, and D3) in alfalfa. The metabolomic results revealed that gibberellin (GA), auxin (IAA), cytokinin (CK), and jasmonic acid (JA) might play an essential role in the developmental stages of floral bud in alfalfa. Moreover, we identified some key genes associated with GA, IAA, CK, and JA biosynthesis, including <i>CPS</i>, <i>KS</i>, <i>GA20ox</i>, <i>GA3ox</i>, <i>GA2ox</i>, <i>YUCCA6</i>, <i>amid</i>, <i>ALDH</i>, <i>IPT</i>, <i>CYP735A</i>, <i>LOX</i>, <i>AOC</i>, <i>OPR</i>, <i>MFP2</i>, and <i>JMT</i>. Additionally, many candidate genes were detected in the GA, IAA, CK, and JA signaling pathways, including <i>GID1</i>, <i>DELLA</i>, <i>TF</i>, <i>AUX1</i>, <i>AUX</i>/<i>IAA</i>, <i>ARF</i>, <i>GH3</i>, <i>SAUR</i>, <i>AHP</i>, <i>B-ARR</i>, <i>A-ARR</i>, <i>JAR1</i>, <i>JAZ</i>, and <i>MYC2</i>. Furthermore, some TFs related to flower growth were screened in three groups, such as <i>AP2</i>/<i>ERF</i>-<i>ERF</i>, <i>MYB</i>, <i>MADS</i>-<i>M</i>-<i>type</i>, <i>bHLH</i>, <i>NAC</i>, <i>WRKY</i>, <i>HSF,</i> and <i>LFY</i>. The findings of this study revealed the potential mechanism of floral bud differentiation and development in alfalfa and established a theoretical foundation for improving the seed yield of alfalfa.

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