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Dive into the research topics where A. Campanelli is active.

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Featured researches published by A. Campanelli.


Symbiosis | 2013

The role of arbuscular mycorrhizal fungi in alleviating salt stress in Medicago sativa L. var. icon

A. Campanelli; C. Ruta; Giuseppe De Mastro; Irene Morone-Fortunato

Medicago sativa L. is the most important forage crop in arid and semi-arid areas, where increased salinity is a major factor limiting plant growth and crop productivity. The role of arbuscular mycorrhizal (AM) fungus Glomus viscosum H.T. Nicolson strain A6 in protecting alfalfa plants from salt stress, induced by sodium chloride (NaCl), was studied in two ways. Firstly, the root systems of 3-month old M. sativa plants, both mycorrhizal (AM+) and non-mycorrhizal (non-AM) (M. sativa L. var. icon), were placed in solutions of increasing salt concentrations (0, 50, 100, 150, 200 mM NaCl) to study the wilting response. G. viscosum improved the tolerance to salinity stress and the benefit was expressed in terms of the time required to reach the T4 stage in the wilting experiment. Secondly, to evaluate the ability of the Glomus-alfalfa symbiosis to tolerate salt, a pot experiment was set up in a glasshouse in which 3-month old alfalfa plants (M. sativa var. icon) were grown in a peat substratum at three salinity levels (0, 100, 150 mM NaCl). The AM symbiosis stimulated plant height, leaf area, root density, fresh and dry plant weight under saline conditions. Furthermore, proline accumulation was higher in mycorrhizal M. sativa plants than in non-mycorrhizal plants under conditions of salt stress. These and other results indicated that the micropropagated selected clone of M. sativa var. icon, when in symbiosis with G. viscosum H.T. Nicolson strain A6, exhibited better growth and physiological activities under saline conditions than non-AM plants. The AM+ plants also had lower sodium and chloride concentrations in tissues than non-AM plants.


Central European Journal of Biology | 2013

Alfalfa (Medicago sativa L.) clones tolerant to salt stress: in vitro selection

A. Campanelli; C. Ruta; Irene Morone-Fortunato; Giuseppe De Mastro

In order to quickly and efficiently evaluate the salt tolerance of alfalfa, salinity tests were conducted on Medicago sativa L. var. australis, var. icon, var. loi, and var. gea, under in vitro conditions. Pregerminated seeds of four varieties were subjected to five different NaCl concentrations (0, 50, 100, 150, 200 mM). The influence of saline stress was estimated on the basis of survival percentage, growth parameters, and electrolyte leakage. The seedlings surviving on the medium enriched with salt at the highest concentration were presumed to be tolerant and represented the mother plants for the production of in vitro clones. In the following step, the clones were evaluated in vitro to confirm the salt tolerance. The influence of mild salt stress (75 mM NaCl) on the growth parameters of selected clones was examined. At the end of this trial, the proline accumulation and sodium content in alfalfa shoots were also quantified. The results suggest an increased level of proline promotes salt tolerance. Medicago sativa L. var. icon is highly tolerant in comparison with the other varieties tested. In vitro selection of M. sativa L. varieties on salt-containing media allowed us to obtain clones with increased salinity tolerance.


Journal of Plant Interactions | 2014

Effectiveness of mycorrhizal fungi on globe artichoke (Cynara cardunculus L. var. scolymus) micropropagation

A. Campanelli; C. Ruta; A. Tagarelli; Irene Morone-Fortunato; Giuseppe De Mastro

The effectiveness of two arbuscular mycorrhizal (AM) fungal isolates (Glomus intraradices and Glomus viscosum) in sustaining plant growth and the physiological activities of the micropropagated globe artichoke (Cynara cardunculus L. var. scolymus (L.) Fiori) were investigated during acclimatization and 90 days after plant establishment. All the mycorrhizal microplants survived transplant shock thus confirming the positive role of AM fungi colonization on ex vitro establishment. The growth increased in mycorrhizal plants, especially in plants inoculated with Glomus viscosum. Mycorrhizal plantlets showed higher stomatal conductance, which is probably necessary to supply the carbon needs of fungal symbionts. The SPAD (soil plant analysis development) data could be useful for plant management as a predictor for tissue nitrogen levels. The higher SPAD values in mycorrhizal plants are strictly related to a higher photosynthetic potential, and consequently to their better nitrogen nutrient status due to the symbiotic relationship. Regardless of the mycorrhizal performance in the host–fungus combination, the most efficient fungus for the artichoke microplants was Glomus viscosum.


Italian Journal of Agronomy | 2011

Nursery inoculation with the arbuscular mycorrhizal fungus Glomus viscosum and its effect on the growth and physiology of hybrid artichoke seedlings

A. Campanelli; C. Ruta; A. Tagarelli; Irene Morone-Fortunato


Acta Horticulturae | 2013

INNOVATIVE LARGE-SCALE PRODUCTION OF EARLY ARTICHOKE TRANSPLANTS

A. Campanelli; A. Tagarelli; G. De Mastro; Irene Morone-Fortunato; C. Ruta


European Journal of Agronomy | 2018

Field performance of micropropagated and mycorrhizal early globe artichoke plants

C. Ruta; A. Tagarelli; A. Campanelli; Giuseppe De Mastro


Acta Horticulturae | 2017

An efficient in vitro propagation for faba bean (Vicia faba L.) ecotypes

C. Ruta; A. Campanelli; A. Tagarelli; G. De Mastro; C. Vancini


VIII International Symposium on Artichoke, Cardoon and their Wild Relatives, Viterbo, Italy. | 2013

Callogenesis capability of artichoke (Cynara cardunculus var. scolymus L. Fiori).

C. Ruta; A. Tagarelli; A. Campanelli; G. de Mastro; Irene Morone-Fortunato


Archive | 2012

Esperienze di coltivazione della Stevia rebaudiana

Luigi Tedone; C. Ruta; D. Negro; A. Campanelli; A. Tagarelli; G. De Mastro


Archive | 2012

Concimazione fosfatica e inoculazione micorrizica in tre Lamiaceae

Waed Tarraf; C. Ruta; A. Tagarelli; A. Campanelli; G. De Mastro

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