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作物转化与提高产量潜力的挑战。

Crop transformation and the challenge to increase yield potential.

作者信息

Sinclair Thomas R, Purcell Larry C, Sneller Clay H

机构信息

Agricultural Research Service, US Department of Agriculture, Agronomy Physiology Laboratory, University of Florida, Gainesville, FL 32611-0965, USA.

出版信息

Trends Plant Sci. 2004 Feb;9(2):70-5. doi: 10.1016/j.tplants.2003.12.008.

Abstract

Molecular transformation is commonly offered as a hope to overcome the apparent stagnation in crop yield potential. A basic understanding of the resource limits imposed on crops and the yield hierarchy going from gene expression to harvestable yield leads to a rather negative view that transformations of a few, or even of a complex of genes will result directly in major yield increases. Forty years of biochemical and physiological research illustrate the great difficulty in translating research at the basic level into improvements in crop yield. However, there are a few cases where physiological research has led to improved crop cultivars with increased yield. These successes are instructive in highlighting key elements required to achieve success in developing crop cultivars for increased yield.

摘要

分子转化通常被视为克服作物产量潜力明显停滞的一种希望。对作物所面临的资源限制以及从基因表达至可收获产量的产量层次结构有一个基本的了解后,会得出一种相当消极的观点,即少数基因甚至一组复杂基因的转化将直接导致产量大幅提高。四十年的生物化学和生理学研究表明,将基础层面的研究转化为作物产量的提高存在巨大困难。然而,在一些情况下,生理学研究已培育出了产量提高的优良作物品种。这些成功案例对于突出开发高产作物品种取得成功所需的关键要素具有指导意义。

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