Conservation of the Bird Cherry (Padus Mill.) Germplasm by Cold Storage and Cryopreservation of Winter Cuttings

Author:

Verzhuk Vladimir1ORCID,Murashev Sergey2,Novikova Liubov1ORCID,Kiru Stepan3,Orlova Svetlana1

Affiliation:

1. N.I. Vavilov Institute of Plant Genetic Resources, 190000 Saint-Petersburg, Russia

2. Department of Storage Technology and Processing of Agricultural Products, Saint-Petersburg State Agrarian University, 196605 Saint-Petersburg, Russia

3. Department of Crop Production named I.A. Stebut, Saint-Petersburg State Agrarian University, 196605 Saint-Petersburg, Russia

Abstract

Conservation at cryogenic temperatures, usually in liquid nitrogen (LN) or in its vapor, is the only reliable method for the long-term ex situ conservation of fruit and berry crops with vegetative reproduction. In this study, five bird cherry (Padus Mill.) varieties of different genetic origin from the bird cherry genebank at the N.I. Vavilov All-Russian Institute of Plant Genetic Resources (VIR, Russia) were tested for their response to cryopreservation in LN vapor (−183–−185 °C). The response included viability under laboratory and field conditions, morphological assessment of the developed plants and biochemical analysis of fruits produced during three consecutive years by plants developed from cryopreserved cuttings. All parameters were compared to those recorded after cold storage of cuttings (−5 °C), a routine mid-term conservation method currently used at the VIR genebank. The initial viability of winter cuttings varied from 86.7% to 93.3%. Six-month cold storage and cryopreservation reduced viability to 53.3–86.7% and 43.3–60.0%, respectively, which was above the 40% viability threshold in all varieties tested. Cuttings after cold storage showed better viability when recovered in the laboratory (80% mean viability) than in the field (58% mean viability); viability of cryopreserved cuttings was not affected by recovery conditions. The results of a two-way analysis of covariance suggested that storage and recovery conditions had the most significant effect on viability (p < 0.0001), while the effects of genotype (p = 0.062) and factor interactions (p = 0.921) were minor. Cryopreservation had little or no influence on morphological parameters of the plants recovered in the field, including plant height, number of shoots, internodes and roots, and root length. Similarly, no effect of cryopreservation was recorded on dry matter content, total sugar content and ascorbic acid concentration in fruits produced by plants developed from the cryopreserved cuttings. These results suggest that cryopreservation in LN vapor is a reliable method for conservation of the bird cherry genetic collection and is worth testing with a broader variety of genotypes.

Funder

Ministry of Science and Higher Education of the Russian Federation in accordance with Agreement

Publisher

MDPI AG

Subject

General Agricultural and Biological Sciences,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology

Reference43 articles.

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2. Shubin, N.A. (2008). Cell Culture Methods, (In Russian).

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4. James, E. (1987). Biotechnology of Agricultural Plants, Agropromizdat. (In Russian).

5. Development of a System for Low-Temperature Storage and Cryopreservation of the Plant Gene Pool at the N.Vavilov Institute of plant Genetic Resources (VIR);Filipenko;Proc. Appl. Bot. Genet. Breed.,2007

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