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结合分子和生理研究对向日葵早期叶片衰老过程中对比鲜明的基因型进行鉴定和表征(向日葵)

Identification and characterization of contrasting sunflower genotypes to early leaf senescence process combining molecular and physiological studies (Helianthus annuus L.).

作者信息

López Gialdi A I, Moschen S, Villán C S, López Fernández M P, Maldonado S, Paniego N, Heinz R A, Fernandez P

机构信息

Escuela de Ciencia y Tecnología, Universidad Nacional de San Martín, 25 de Mayo, San Martín, Buenos Aires, Argentina.

Consejo Nacional de Investigaciones Científicas y Técnicas, Av. Rivadavia 1917, Ciudad Autónoma de Buenos Aires, Argentina; Instituto de Biotecnología, Centro de Investigaciones en Ciencias Agronómicas y Veterinarias, Instituto Nacional de Tecnología Agropecuaria, Nicolás Repetto y de los Reseros, Hurlingham, Buenos Aires, Argentina.

出版信息

Plant Sci. 2016 Sep;250:40-50. doi: 10.1016/j.plantsci.2016.05.017. Epub 2016 May 27.

Abstract

Leaf senescence is a complex mechanism ruled by multiple genetic and environmental variables that affect crop yields. It is the last stage in leaf development, is characterized by an active decline in photosynthetic rate, nutrients recycling and cell death. The aim of this work was to identify contrasting sunflower inbred lines differing in leaf senescence and to deepen the study of this process in sunflower. Ten sunflower genotypes, previously selected by physiological analysis from 150 inbred genotypes, were evaluated under field conditions through physiological, cytological and molecular analysis. The physiological measurement allowed the identification of two contrasting senescence inbred lines, R453 and B481-6, with an increase in yield in the senescence delayed genotype. These findings were confirmed by cytological and molecular analysis using TUNEL, genomic DNA gel electrophoresis, flow sorting and gene expression analysis by qPCR. These results allowed the selection of the two most promising contrasting genotypes, which enables future studies and the identification of new biomarkers associated to early senescence in sunflower. In addition, they allowed the tuning of cytological techniques for a non-model species and its integration with molecular variables.

摘要

叶片衰老受多种影响作物产量的遗传和环境变量调控,是一种复杂的机制。它是叶片发育的最后阶段,其特征是光合速率、养分循环和细胞死亡的积极下降。这项工作的目的是鉴定在叶片衰老方面存在差异的向日葵自交系,并深化对向日葵这一过程的研究。通过生理、细胞学和分子分析,在田间条件下对先前从150个自交基因型中通过生理分析选出的10个向日葵基因型进行了评估。生理测量确定了两个衰老情况相反的自交系R453和B481 - 6,衰老延迟基因型的产量有所增加。使用TUNEL、基因组DNA凝胶电泳、流式分选和qPCR基因表达分析进行的细胞学和分子分析证实了这些发现。这些结果有助于选择两个最有前景的对比基因型,从而为未来的研究以及鉴定与向日葵早期衰老相关的新生物标志物提供可能。此外,它们还使得针对非模式物种的细胞学技术得到优化,并将其与分子变量相结合。

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