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Potential of Oryza officinalis to augment the cold tolerance genetic mechanisms of Oryza sativa by network complementation

机译:通过网络互补提高稻米抗寒遗传机制的潜力

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摘要

Oryza officinalis is an accessible alien donor for genetic improvement of rice. Comparison across a representative panel of Oryza species showed that the wild O. officinalis and cultivated O. sativa ssp. japonica have similar cold tolerance potentials. The possibility that either distinct or similar genetic mechanisms are involved in the low temperature responses of each species was addressed by comparing their transcriptional networks. General similarities were supported by shared transcriptomic signatures indicative of equivalent metabolic, hormonal, and defense status. However, O. officinalis has maintained an elaborate cold-responsive brassinosteroid-regulated BES1-network that appeared to have been fragmented in O. sativa. BES1-network is potentially important for integrating growth-related responses with physiological adjustments and defenses through the protection of photosynthetic machinery and maintenance of stomatal aperture, oxidative defenses, and osmotic adjustment. Equivalent physiological processes are functional in O. sativa but their genetic mechanisms are under the direct control of ABA-dependent, DREB-dependent and/or oxidative-mediated networks uncoupled to BES1. While O. officinalis and O. sativa represent long periods of speciation and domestication, their comparable cold tolerance potentials involve equivalent physiological processes but distinct genetic networks. BES1-network represents a novel attribute of O. officinalis with potential applications in diversifying or complementing other mechanisms in the cultivated germplasm.
机译:Oryza officinalis是可用于水稻遗传改良的外来供体。在代表性的稻属物种中进行的比较表明,野生的O. officinalis和栽培的O. sativa ssp。粳稻具有相似的耐寒潜力。通过比较它们的转录网络,解决了每种物种的低温反应涉及不同或相似遗传机制的可能性。一般相似性由共享的转录组签名支持,这些签名表示同等的代谢,激素和防御状态。但是,O。officinalis维持了精心设计的冷应答油菜素类固醇调节的BES1网络,该网络似乎已在O. sativa中破碎。 BES1网络对于通过保护光合机械和维持气孔孔径,氧化防御和渗透调节,将与生长相关的反应与生理调节和防御相结合具有潜在的重要性。等效的生理过程在稻中起作用,但它们的遗传机制受不依赖于BES1的ABA依赖,DREB依赖和/或氧化介导的网络的直接控制。而O. officinalis O 苜蓿代表了长期的物种形成和驯化,其可比的耐寒性潜力涉及相同的生理过程,但具有独特的遗传网络。 BES1 -网络代表了 O 的新属性。 officinalis 在培养种质的其他机制的多样化或互补方面具有潜在的应用前景。

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