4.7 Article

Silencing of SlSPX1 and SlSPX2 promote growth and root mycorrhization in tomato (Solanum lycopersicum L.) seedlings

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PLANT SCIENCE
卷 333, 期 -, 页码 -

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ELSEVIER IRELAND LTD
DOI: 10.1016/j.plantsci.2023.111723

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Pi homeostasis; Solanum lycopersicum; SPX; PHR; Arbuscular mycorrhiza fungi; VIGS

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The SPX-PHR regulatory circuit not only controls the balance of inorganic phosphate, but also regulates the transcription of PSI genes by blocking PHR1 activity. A study on tomato identified 17 members containing the SPX domain, and found that SlSPX1 and SlSPX2 were induced during phosphate starvation and AM fungi colonization. Silencing of SlSPX1 and SlSPX2 enhanced phosphate accumulation and growth in tomato seedlings, and promoted AM fungi colonization in roots. This study suggests that SlSPX members may be promising candidates for improving AM fungi colonization potential in tomato.
Owing to the essential requirement of phosphorus (P) for growth and development, plants tightly control inorganic phosphate (Pi) homeostasis. SPX-PHR regulatory circuit not only control phosphate homeostasis re-sponses but also root mycorrhization by arbuscular mycorrhiza (AM) fungi. Besides sensing Pi deficiency, SPX (SYG1/Pho81/XPR1) proteins also control the transcription of P starvation inducible (PSI) genes by blocking the activity of PHR1 (PHOSPHATE STARVATION RESPONSE1) homologs in plants under Pi-sufficient conditions. However, the roles of SPX members in Pi homeostasis and AM fungi colonization remain to be fully recognized in tomato. In this study, we identified 17 SPX-domain containing members in the tomato genome. Transcript profiling revealed the high Pi-specific nature of their activation. Four SlSPX members have also induced in AM colonized roots. Interestingly, we found that SlSPX1 and SlSPX2 are induced by P starvation and AM fungi colonization. Further, SlSPX1 and SlSPX2 exhibited varying degrees of interaction with the PHR homologs in this study. Virus-induced gene silencing-based (VIGS) transcript inhibition of these genes alone or together promoted the accumulation of higher total soluble Pi in tomato seedlings and improved their growth. It also enhanced AM fungi colonization in the roots of SlSPX1 and SlSPX2 silenced seedlings. Overall, the present study provides evidence in support of SlSPX members being good candidates for improving AM fungi colonization potential in tomato.

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