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提高整精米率及碾磨品质:现状与未来展望

Improving Head Rice Yield and Milling Quality: State-of-the-Art and Future Prospects.

作者信息

Butardo Vito M, Sreenivasulu Nese

机构信息

Faculty of Science, Engineering and Technology, Swinburne University of Technology, Hawthorn, VIC, Australia.

International Rice Research Institute, Los Baños, Laguna, Philippines.

出版信息

Methods Mol Biol. 2019;1892:1-18. doi: 10.1007/978-1-4939-8914-0_1.

Abstract

Increasing paddy yield in rice does not directly translate to enhancing food security because significant decrease in grain yield can happen during postharvest processing of the rice paddy. In parallel with enhancing paddy yield, improving the milling quality of rice is essential in ensuring food security by mitigating the impact of significant losses during the postharvest processing of rice grains. From an industrial standpoint, maximizing the milling recovery of whole grain polished rice is crucial in fetching higher revenues to rice farmers. Significant advances in rice postharvest processing technology have been achieved which are geared toward reducing the incidence of fissures and chalkiness to increase head rice yield (HRY) in rice. The genetic bases of kernel development and grain dimension are also characterized. In addition to these advancements, an integrated phenotyping suite to simultaneously characterize phenotypes related to milling quality will help in screening for breeding lines with high HRY. Toward this goal, modern imaging tools and computer algorithms are currently being developed for high-throughput characterization of rice milling quality. With the availability of more sophisticated, affordable, automated, and nondestructive phenotyping methods of milling quality, it is envisioned that significant improvement in HRY will be made possible to ensure rice food security in the future.

摘要

提高水稻产量并不能直接转化为增强粮食安全,因为在稻谷收获后的加工过程中,粮食产量可能会大幅下降。在提高稻谷产量的同时,改善大米的碾磨品质对于确保粮食安全至关重要,因为这可以减轻稻谷收获后加工过程中重大损失的影响。从产业角度来看,最大限度地提高整粒精米的碾磨回收率对于提高稻农收入至关重要。稻谷收获后加工技术已经取得了重大进展,这些进展旨在减少裂纹和垩白的发生率,以提高大米的整精米率(HRY)。谷粒发育和粒型的遗传基础也已得到表征。除了这些进展之外,一套用于同时表征与碾磨品质相关表型的综合表型分析工具将有助于筛选具有高整精米率的育种系。为了实现这一目标,目前正在开发现代成像工具和计算机算法,用于对水稻碾磨品质进行高通量表征。随着更先进、更经济实惠、自动化且无损的碾磨品质表型分析方法的出现,预计未来整精米率将得到显著提高,从而确保水稻粮食安全。

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