Transcriptomics Provide Insights into Early Responses to Sucrose Signaling in Lupinus albus, a Model Plant for Adaptations to Phosphorus and Iron Deficiency

被引:2
作者
Shammi, Tahmina [1 ]
Lee, Yishen [1 ]
Trivedi, Jayati [1 ]
Sierras, Dakota [1 ]
Mansoor, Aniqua [1 ]
Maxwell, Jason M. [1 ]
Williamson, Matthew [1 ]
McMillan, Mark [1 ]
Chakravarty, Indrani [1 ]
Uhde-Stone, Claudia [1 ]
机构
[1] Calif State Univ, Dept Biol Sci, Hayward, CA 94542 USA
关键词
iron deficiency; nanopore sequencing; phosphate deficiency; sucrose signaling; white lupin; CLUSTER-ROOT-FORMATION; LIPID-TRANSFER PROTEINS; INDUCED GENE-EXPRESSION; WHITE LUPIN; PROTEOID ROOTS; PHOSPHATE STARVATION; SUGAR; METABOLISM; ACCUMULATION; ACQUISITION;
D O I
10.3390/ijms25147692
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Phosphorus (P) and iron (Fe) deficiency are major limiting factors for plant productivity worldwide. White lupin (Lupinus albus L.) has become a model plant for understanding plant adaptations to P and Fe deficiency, because of its ability to form cluster roots, bottle-brush-like root structures play an important role in the uptake of P and Fe from soil. However, little is known about the signaling pathways involved in sensing and responding to P and Fe deficiency. Sucrose, sent in increased concentrations from the shoot to the root, has been identified as a long-distance signal of both P and Fe deficiency. To unravel the responses to sucrose as a signal, we performed Oxford Nanopore cDNA sequencing of white lupin roots treated with sucrose for 10, 15, or 20 min compared to untreated controls. We identified a set of 17 genes, including 2 bHLH transcription factors, that were up-regulated at all three time points of sucrose treatment. GO (gene ontology) analysis revealed enrichment of auxin and gibberellin responses as early as 10 min after sucrose addition, as well as the emerging of ethylene responses at 20 min of sucrose treatment, indicating a sequential involvement of these hormones in plant responses to sucrose.
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