A Review on the Challenges for Increased Production of Castor

Обзор проблем, связанных с увеличением производства клещевины
Olga Lima Tavares Machado, Stephen Morse, Grace Chen, J. B. Morris, Xiaohua He, Magno José Duarte Cândido, William L. Crosby, Mingliang Wang, L. S. Severino, D. L. Auld, Marco Baldanzi, Deyun Tan, P LAKSHMAMMA, C. Lavanya, Thomas Mielke, Máira Milani, Travis D. Miller, Alejandro A. Navas, D. J. Soares, Valdinei Sofiatti, Maurício Dutra Zanotto, Helge Zieler
2012-06-29

Castor (Ricinus communis L.)Castor meal toxin managementCastor oil productionDrought and saline toleranceRicinoleic acid
Castor (Ricinus communis L.) is one of the oldest cultivated crops, but currently it represents only 0.15% of the vegetable oil produced in the world. Castor oil is of continuing importance to the global specialty chemical industry because it is the only commercial source of a hydroxylated fatty acid. Castor also has tremendous future potential as an industrial oilseed crop because of its high seed oil content (more than 480 g kg−1), unique fatty acid composition (900 g kg−1 of ricinoleic acid), potentially high oil yields (1250–2500 L ha−1), and ability to be grown under drought and saline conditions. The scientific literature on castor has been generated by a relatively small global community of researchers over the past century. Much of this work was published in dozens of languages in journals that are not easily accessible to the scientific community. This review was conducted to provide a compilation of the most relevant historic research information and define the tremendous future potential of castor. The article was prepared by a group of 22 scientists from 16 institutions and eight countries. Topics discussed in this review include: (i) germplasm, genetics, breeding, biotic stresses, genome sequencing, and biotechnology; (ii) agronomic production practices, diseases, and abiotic stresses; (iii) management and reduction of toxins for the use of castor meal as both an animal feed and an organic fertilizer; (iv) future industrial uses of castor including renewable fuels; (v) world production, consumption, and prices; and (vi) potential and challenges for increased castor production.
1
Castor combines high seed oil content exceeding 480 g kg−1, approximately 900 g kg−1 ricinoleic acid, and potential oil yields of 1250–2500 L ha−1.
2
Castor currently contributes only 0.15% of global vegetable oil production despite its substantial industrial potential.
3
Castor oil is uniquely valuable to specialty chemicals because it is the only commercial source of a hydroxylated fatty acid.
4
The crop can be cultivated under drought and saline conditions, supporting its potential as a resilient industrial oilseed.
5
The review compiles historically fragmented research and identifies genetic, agronomic, toxin-management, industrial, market, and production challenges limiting expanded castor cultivation.

Castor (Ricinus communis L.) as an industrial oilseed crop and its production system

The potential and challenges of increasing castor production, including genetic resources, breeding, biotechnology, agronomic practices, stress and disease management, toxin reduction, industrial uses, and global production economics

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2012-06-29
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Authors
Olga Lima Tavares Machado
Stephen Morse
Grace Chen
J. B. Morris
Xiaohua He
Magno José Duarte Cândido
William L. Crosby
Mingliang Wang
L. S. Severino
D. L. Auld
Marco Baldanzi
Deyun Tan
P LAKSHMAMMA
C. Lavanya
Thomas Mielke
Máira Milani
Travis D. Miller
Alejandro A. Navas
D. J. Soares
Valdinei Sofiatti
Maurício Dutra Zanotto
Helge Zieler
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