Literature DB >> 29452417

Fruit production and branching density affect shoot and whole-tree wood to leaf biomass ratio in olive.

Adolfo Rosati1, Andrea Paoletti2, Raeed Al Hariri2, Franco Famiani2.   

Abstract

The amount of shoot stem (i.e., woody part of the shoot) dry matter per unit shoot leaf dry matter (i.e., the shoot wood to leaf biomass ratio) has been reported to be lower in short shoots than in long ones, and this is related to the greater and earlier ability of short shoots to export carbon. This is important in fruit trees, since the greater and earlier carbon export ability of shoots with a lower wood to leaf biomass ratio improves fruit production. This ratio may vary with cultivars, training systems or plant age, but no study has previously investigated the possible effect of fruit production. In this study on two olive cultivars (i.e., Arbequina, with low growth rate, and Frantoio, with high growth rate) subject to different fruit production treatments, we found that at increasing fruit production, shoot length and shoot wood to leaf biomass ratio were proportionally reduced in the new shoots growing at the same time as the fruit. Specifically, fruit production proportionally reduced total new-shoot biomass, length, leaf area and average shoot length. With decreasing shoot length, shoot diameter, stem mass, internode length, individual leaf area and shoot wood to leaf biomass ratio also decreased. This may be viewed as a plant strategy to better support fruit growth in the current year, given the greater and earlier ability of short shoots to export carbon. Moreover, at the whole-tree level, the percentage of total tree biomass production invested in leaves was closely correlated with branching density, which differed significantly across cultivars. By branching more, Arbequina concentrates more shoots (thus leaves) per unit of wood (trunk, branches and root) mass, decreasing wood to leaf biomass ratio at the whole-tree level. Therefore, while, at the shoot level, shoot length determines shoot wood to leaf biomass ratio, at the canopy level branching density is also an important determinant of whole-tree wood to leaf biomass ratio. Whole-tree wood to leaf biomass ratio is likely to affect the canopy's ability to export carbon (i.e., towards fruits), as shoot wood to leaf biomass ratio affects the carbon export ability of the shoot.

Entities:  

Mesh:

Year:  2018        PMID: 29452417     DOI: 10.1093/treephys/tpy009

Source DB:  PubMed          Journal:  Tree Physiol        ISSN: 0829-318X            Impact factor:   4.196


  3 in total

1.  Relationships between trunk radial growth and fruit yield in apple and pear trees on size-controlling rootstocks.

Authors:  Lenka Plavcová; Martin Mészáros; Karel Šilhán; Radek Jupa
Journal:  Ann Bot       Date:  2022-09-26       Impact factor: 5.040

Review 2.  Sugar Metabolism in Stone Fruit: Source-Sink Relationships and Environmental and Agronomical Effects.

Authors:  Rachele Falchi; Claudio Bonghi; María F Drincovich; Franco Famiani; María V Lara; Robert P Walker; Giannina Vizzotto
Journal:  Front Plant Sci       Date:  2020-11-13       Impact factor: 5.753

3.  Re.Ger.O.P.: An Integrated Project for the Recovery of Ancient and Rare Olive Germplasm.

Authors:  Monica Marilena Miazzi; Valentina di Rienzo; Isabella Mascio; Cinzia Montemurro; Sara Sion; Wilma Sabetta; Gaetano Alessandro Vivaldi; Salvatore Camposeo; Francesco Caponio; Giacomo Squeo; Graziana Difonzo; Guiliana Loconsole; Giovanna Bottalico; Pasquale Venerito; Vito Montilon; Antonella Saponari; Giuseppe Altamura; Giovanni Mita; Alessandro Petrontino; Vincenzo Fucilli; Francesco Bozzo
Journal:  Front Plant Sci       Date:  2020-02-20       Impact factor: 5.753

  3 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.