Plum
Reference · Crops

Plum

Prunus L.

Planting plum trees, which belong to the Prunus genus and Rosaceae family, is typically done using saplings. The ideal time for planting is early spring before bud break or during early autumn, allowing the root system to establish before harsh winter frosts occur.

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Hybrids of sand cherry, Japanese plum and cherry plum Hybrids between Prunus pumila, Prunus salicina and Prunus cerasifera Hybrids of sweet cherry and Prunus pseudocerasus hybrids between Prunus avium and Prunus pseudocerasus Interspecific hybrids of stone fruits Hybrids between Prunus salicina, P. armeniaca and P. persica Interspecific plum hybrids hybrids between Prunus cerasifera Ehrh., Prunus domestica L. and Prunus salicina Lindl. Japanese apricot Prunus mume Siebold & Zucc. Japanese cherry Prunus serrulata Lindl. Japanese plum Prunus salicina x P. americana Japanese plum Prunus salicina Lindl. Japanese plum Prunus salicina x Prunus mume Japanese plum Prunus salicina x Prunus spinosa Japanese plum Prunus salicina x Prunus avium x Prunus persica Limeixing Prunus x limeixing (J. Y. Zhang & Z. M. Wang) Y. H. Tong & N. H. Xia x Prunus avium (L.) L. x Prunus persica (L.) Batsch Limeixing Plum Prunus x limeixing (J. Y. Zhang & Z. M. Wang) Y. H. Tong & N. H. Xia Mahaleb cherry Prunus mahaleb L. Mariana Plum Prunus mariana Maximowicz's cherry Prunus maximowiczii Rupr. Mirabelle plum Prunus domestica L. subsp. syriaca (Borkh.) Janch. ex Mansf. Mountain cherry Prunus prostrata Labill. Munson plum Prunus munsoniana W. Wight & Hedrick Nanking cherry Prunus tomentosa thunb x P. cerasifera Nanking cherry Prunus tomentosa Thunb. Nectacotum hybrids between Prunus domestica and Prunus persica Nectacotum hybrids between Prunus salicina Lindl. and Prunus persica (L.) Batsch Nectarine Prunus persica (L.) Batsch var. nucipersica (Suckow) C. K. Schneid. Peach Prunus persica (L.) Batsch x Prunus dulcis x Prunus blireiana Peach Prunus persica (L.) Batsch var. persica Plum hybrids Prunus hybr. Plumcot hybrids between Prunus armeniaca and Prunus domestica Plumcot Hybrids between Prunus salicina Lindl. and Prunus avium (L.) L. Portuguese laurel Prunus lusitanica L. Prunus canescens Prunus canescens Bois Prunus canescens × Prunus incisa Prunus canescens L. x Prunus incisia L. Prunus incisa x yedoensis hybrids between Prunus incisa Thunb. and Prunus x yedoensis Matsum. Purple-leaf sand cherry Prunus x cistena (N. E. Hansen) Koehne Russian plum Prunus x rossica Eremin Sand cherry Prunus pumila L. Sargent's cherry Prunus sargentii Rehder Saturn peach Prunus persica (L.) Batsch forma compressa (Loudon) Rehder Schmitt's plum Prunus x schmittii Rehder Simmler plum Prunus x simmleri Palez. Smooth-pit plum Prunus mira Koehne Sour cherry Prunus cerasus L. x (Prunus avium L. x Prunus canescens Bois) Sour cherry Prunus cerasus x Prunus schmittii Sour cherry Prunus cerasus L. Tkemali Prunus cerasifera x Prunus davidiana Tkemali Prunus cerasifera x Prunus domestica Tkemali Prunus cerasifera x Prunus dulcis Tkemali Prunus cerasifera x Prunus munsoniana Tree cherry Prunus arborea (Blume) Kalkman White cherry Prunus cerasia Blanche Wild Himalayan cherry Prunus cerasoides D. Don Yama-zakura Prunus serrulata Lindl. var. lannesiana (Carrière) Makino Yama-zakura Prunus jamasakura Siebold ex Koidz. Yoshino cherry Prunus x yedoensis Matsum.

Plum

Select healthy one-year or two-year-old saplings with a well-developed root structure. Depending on the rootstock vigor, trees should be spaced 3 to 5 meters apart to ensure proper light penetration and airflow throughout the canopy.

Prepare planting holes in advance, incorporating organic matter and fertilizers. It is crucial to ensure the graft union remains above the soil surface after the earth settles to prevent bark rot and other physiological issues.

In commercial orchards, propagation is commonly achieved through grafting (budding) onto clonal or seedling rootstocks to preserve specific cultivar characteristics and ensure vigor.

Immediately after planting, water the trees thoroughly and apply mulch around the base. This practice helps conserve soil moisture and suppresses weed growth, which is essential for young trees.

Plums thrive in fertile, well-drained loamy soils with a neutral pH. They are sensitive to waterlogging, so orchards located in areas with high water tables must have adequate drainage systems installed.

These trees require a sunny location protected from strong prevailing winds. While plums have moderate cold tolerance, selecting cultivars suited to the specific climatic zone is vital for consistent production.

Regular irrigation is critical during the fruit development stage and active vegetative growth. Water stress can lead to premature fruit drop and poor fruit quality at harvest time.

Pruning is a mandatory practice for plum trees. Regular thinning of the canopy and removal of diseased or crossing branches improve structural integrity and expose the interior to sunlight.

A balanced fertilization program is essential: nitrogen-based fertilizers in spring promote vegetative growth, while potassium and phosphorus applied in late summer support winter hardening.

Yield potential depends on the specific cultivar, tree age, and site management. Generally, plum trees begin to produce a significant harvest between 3 and 5 years after planting.

An average mature tree can yield between 30 and 100 kg of fruit, depending on the rootstock and cultivation intensity. High-density orchards can achieve higher outputs per hectare.

Plums have diverse culinary applications, ranging from fresh consumption to processing into prunes, jams, jellies, juices, and various distilled beverages or fermented products.

To avoid alternate bearing, fruit thinning is recommended for high-yielding years. This helps maintain tree health and improves the overall size and quality of the remaining fruit.

Harvesting is typically done in multiple passes, as plums do not always ripen uniformly. Timing the harvest based on the intended use—fresh market or processing—is key to economic success.

Key fungal threats include brown rot (Monilinia), shot-hole disease (Stigmina carpophila), and plum leaf scald. These diseases can devastate orchard productivity if not managed effectively.

Pest pressure is primarily dominated by the plum fruit moth, which infests the fruit, and various species of aphids that curl leaves and stunt growth, potentially transmitting viruses.

Disease management relies on a combination of copper-based fungicides, strict orchard hygiene—such as removing mummified fruits—and the selection of resistant or tolerant cultivars.

Integrated Pest Management (IPM) techniques, including pheromone monitoring traps and targeted insecticide applications, help reduce pest populations while minimizing environmental impact.

Maintaining tree vigor through proper pruning and nutrition naturally improves the plant's ability to withstand minor pest and disease pressures throughout the growing season.

Plums should be harvested during dry weather to minimize the risk of post-harvest rot. For commercial supply chains, fruit is picked with the pedicel attached to prevent juice leakage.

Handling fruit with care is essential, as the skin is delicate and susceptible to bruising. Mechanical damage is the leading cause of secondary infections during storage and transit.

Post-harvest sorting is necessary to separate fruit by size and maturity level. Premium fruits are packed for fresh consumption, while those with minor imperfections are sent for processing.

Rapid cooling to 0°C–2°C immediately after harvest significantly extends the shelf life of fresh plums. This allows growers to distribute produce over a longer period.

For home use, plums are highly versatile and can be dried, frozen, or canned, ensuring that the nutritional benefits of the fruit remain accessible throughout the year.