Sugarcane functional genomics: gene discovery for agronomic trait development.

M Menossi, M C Silva-Filho, M Vincentz, M-A Van-Sluys, G M Souza
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引用次数: 98

Abstract

Sugarcane is a highly productive crop used for centuries as the main source of sugar and recently to produce ethanol, a renewable bio-fuel energy source. There is increased interest in this crop due to the impending need to decrease fossil fuel usage. Sugarcane has a highly polyploid genome. Expressed sequence tag (EST) sequencing has significantly contributed to gene discovery and expression studies used to associate function with sugarcane genes. A significant amount of data exists on regulatory events controlling responses to herbivory, drought, and phosphate deficiency, which cause important constraints on yield and on endophytic bacteria, which are highly beneficial. The means to reduce drought, phosphate deficiency, and herbivory by the sugarcane borer have a negative impact on the environment. Improved tolerance for these constraints is being sought. Sugarcane's ability to accumulate sucrose up to 16% of its culm dry weight is a challenge for genetic manipulation. Genome-based technology such as cDNA microarray data indicates genes associated with sugar content that may be used to develop new varieties improved for sucrose content or for traits that restrict the expansion of the cultivated land. The genes can also be used as molecular markers of agronomic traits in traditional breeding programs.

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甘蔗功能基因组学:农艺性状发育的基因发现。
甘蔗是一种高产作物,几个世纪以来一直被用作糖的主要来源,最近又用于生产乙醇,一种可再生的生物燃料能源。由于迫切需要减少化石燃料的使用,人们对这种作物的兴趣越来越大。甘蔗具有高度多倍体基因组。表达序列标签(EST)测序对甘蔗基因功能相关的基因发现和表达研究做出了重大贡献。对草食、干旱和磷酸盐缺乏的调控事件的大量数据存在,这些调控事件对产量和内生细菌产生重要的限制,这是非常有益的。甘蔗螟虫的抗旱、缺磷、草食等措施对环境有负面影响。正在寻求提高对这些限制的容忍度。甘蔗积累蔗糖的能力高达其茎干重的16%,这对基因操纵来说是一个挑战。基于基因组的技术,如cDNA微阵列数据显示与糖含量相关的基因,可用于开发改良蔗糖含量的新品种或限制耕地扩张的性状。这些基因也可以作为传统育种项目中农艺性状的分子标记。
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