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首页> 外文期刊>Plant molecular biology reporter >Depiction of Grapevine Phenology by Gene Expression Information and a Test of its Workability in Guiding Fertilization
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Depiction of Grapevine Phenology by Gene Expression Information and a Test of its Workability in Guiding Fertilization

机译:基因表达信息描述葡萄的物候特性及其在指导受精过程中的可行性

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摘要

The development of precision agriculture calls for the emergence of new approaches to more accurately depict plant phenology. Gene expression data can predict and indicate plant growth state and phenological events accurately at the molecular level, and thus could be developed as a novel means of describing crop phenophase. Here, we analyzed the expression profiles of nine genes involved in grapevine flower and berry development, and screened the most informative genes for use in depicting grapevine phenology. Of the genes tested, VvAP1, VvAP3, VvFLC were found to be best suited to depicting grapevine phenology. The feasibility and efficiency of using the genetically depicted grapevine phenology was further tested in fertilization trials. The results showed that fertilization could be used to decrease flower and berry drop ratio and increase berry weight and size to a greater extent when taking into account variations in the activity of specific genes. Thus, phenologies predicted by a knowledge of gene activity can definitely be formed, and can be regarded as "genetic phenology". A first grapevine genetic phenology profile was completed, and used to pre-depict grapevine phenophases to accurately guide the timing of grapevine farming activities and in the pre-diagnosis of the influence of some stresses on grapevines. Genetic phenology could be developed into a simple, low-cost and highly effective technology for accurate prediction of traditional crop phenology at the molecular level that is well suited to precision agriculture
机译:精准农业的发展要求出现新方法以更准确地描绘植物物候。基因表达数据可以在分子水平上准确地预测和指示植物的生长状态和物候事件,因此可以作为描述作物表相的新手段而发展。在这里,我们分析了涉及葡萄花和浆果发育的9个基因的表达谱,并筛选出最有信息的基因,用于描述葡萄的物候。在测试的基因中,发现VvAP1,VvAP3,VvFLC最适合描绘葡萄的物候。在受精试验中进一步测试了使用遗传学描述的葡萄学物候学的可行性和效率。结果表明,考虑到特定基因活性的变化,施肥可以降低花和浆果的落果率,并最大程度地增加浆果的重量和大小。因此,可以肯定地形成通过基因活性的知识预测的物候,并且可以将其视为“遗传物候”。完成了第一个葡萄遗传物候学概况,并用于预先描述了葡萄的物候期,以准确地指导葡萄种植活动的时间安排以及某些压力对葡萄的影响的预诊断。遗传物候学可以发展成为一种简单,低成本,高效的技术,以便在分子水平上准确预测传统农作物物候,非常适合精密农业。

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