Literature DB >> 28710129

Manipulation of a Senescence-Associated Gene Improves Fleshy Fruit Yield.

Bruno S Lira1, Giovanna Gramegna1, Bruna A Trench1, Frederico R R Alves1, Eder M Silva2, Geraldo F F Silva2, Venkatesh P Thirumalaikumar3, Alessandra C D Lupi1, Diego Demarco1, Eduardo Purgatto4, Fabio T S Nogueira2, Salma Balazadeh3, Luciano Freschi1, Magdalena Rossi5.   

Abstract

Senescence is the process that marks the end of a leaf's lifespan. As it progresses, the massive macromolecular catabolism dismantles the chloroplasts and, consequently, decreases the photosynthetic capacity of these organs. Thus, senescence manipulation is a strategy to improve plant yield by extending the leaf's photosynthetically active window of time. However, it remains to be addressed if this approach can improve fleshy fruit production and nutritional quality. One way to delay senescence initiation is by regulating key transcription factors (TFs) involved in triggering this process, such as the NAC TF ORESARA1 (ORE1). Here, three senescence-related NAC TFs from tomato (Solanum lycopersicum) were identified, namely SlORE1S02, SlORE1S03, and SlORE1S06. All three genes were shown to be responsive to senescence-inducing stimuli and posttranscriptionally regulated by the microRNA miR164 Moreover, the encoded proteins interacted physically with the chloroplast maintenance-related TF SlGLKs. This characterization led to the selection of a putative tomato ORE1 as target gene for RNA interference knockdown. Transgenic lines showed delayed senescence and enhanced carbon assimilation that, ultimately, increased the number of fruits and their total soluble solid content. Additionally, the fruit nutraceutical composition was enhanced. In conclusion, these data provide robust evidence that the manipulation of leaf senescence is an effective strategy for yield improvement in fleshy fruit-bearing species.
© 2017 American Society of Plant Biologists. All Rights Reserved.

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Year:  2017        PMID: 28710129      PMCID: PMC5580748          DOI: 10.1104/pp.17.00452

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  57 in total

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9.  Spider Mites Cause More Damage to Tomato in the Dark When Induced Defenses Are Lower.

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Authors:  Enriqueta Moyano; Félix J Martínez-Rivas; Rosario Blanco-Portales; Francisco Javier Molina-Hidalgo; Pablo Ric-Varas; Antonio J Matas-Arroyo; José Luis Caballero; Juan Muñoz-Blanco; Antonio Rodríguez-Franco
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