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首页> 外文期刊>International Journal of Agronomy >Plasticity of Tiller Dynamics in Wild RiceOryza rufipogonGriff.: A Strategy for Resilience in Suboptimal Environments
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Plasticity of Tiller Dynamics in Wild RiceOryza rufipogonGriff.: A Strategy for Resilience in Suboptimal Environments

机译:野生稻分iller动力学的可塑性:次优环境中的复原力策略

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Rice cultivation in tropical Asia is susceptible to drought and flood and the need is high for stress resistant genes. Wild riceOryza rufipogonGriff., grows in close sympatric association with cultivated rice in various habitats across the globe and possesses traits for survival under challenging environments. The species adapts according to the level of soil moisture available and modifies phenology, biomass production and grain yield. Variation in tiller dynamics of the species between contrasting environments gives an estimate of the adaptation. The species possesses AA genome, which permits genetic compatibility for cross breeding with cultivated rice. Utility of the species as possible repository of stress resistant genes is evaluated in this review by examining variation in assimilate partitioning between different classes of tillers of ecotypes growing across a gradation of habitats against background knowledge available for cultivated rice. Models have been constructed to explain mechanisms of tillering and tiller dynamics, and reveal the genotypic permissibility for resilience in sub-optimal environments. It is concluded that environmentally cued alteration in assimilate production and partitioning mask genetic potential for tiller production and survival. Tiller number in excess of resource capacity is corrected by senescence of late-tillers possibly through an ethylene-mediated signal.
机译:亚洲热带地区的水稻种植易受干旱和洪水的影响,因此对抗逆基因的需求很高。野生稻Oryza rufipogonGriff。与全球各地不同生境的栽培稻有密切的同胞共生关系,并具有在恶劣环境下生存的特征。该物种根据可用土壤水分的水平进行适应,并改变物候,生物量生产和谷物产量。不同环境之间物种分till动态的变化给出了适应性的估计。该物种拥有AA基因组,可以与栽培水稻进行杂交。在本综述中,通过对照可耕种水稻提供的背景知识,研究了在不同生境等级上生长的不同类型生态类型分ers之间同化分配的差异,从而评估了该物种作为抗逆基因的可能贮藏库的可能性。已经构建了模型来解释分and和分dynamic动力学的机制,并揭示了在次优环境下恢复力的基因型允许性。结论是,同化生产和分配过程中的环境提示改变掩盖了分till生产和生存的遗传潜力。分iller数量超出资源能力时,可通过乙烯介导的信号通过后期分iller的衰老来纠正。

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