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利用核因子-Y 转录因子构建谷子模型以提高植物的抗逆性:当前的知识和新兴范式。

"Millet Models" for harnessing nuclear factor-Y transcription factors to engineer stress tolerance in plants: current knowledge and emerging paradigms.

机构信息

Department of Biotechnology, Deen Dayal Upadhyaya Gorakhpur University, Gorakhpur, Uttar Pradesh, 273009, India.

ICAR-Vivekananda Institute of Hill Agriculture, Almora, Uttarakhand, 263601, India.

出版信息

Planta. 2023 Jun 26;258(2):29. doi: 10.1007/s00425-023-04186-0.

Abstract

The main purpose of this review is to shed light on the role of millet models in imparting climate resilience and nutritional security and to give a concrete perspective on how NF-Y transcription factors can be harnessed for making cereals more stress tolerant. Agriculture faces significant challenges from climate change, bargaining, population, elevated food prices, and compromises with nutritional value. These factors have globally compelled scientists, breeders, and nutritionists to think of some options that can combat the food security crisis and malnutrition. To address these challenges, mainstreaming the climate-resilient and nutritionally unparalleled alternative crops like millet is a key strategy. The C4 photosynthetic pathway and adaptation to low-input marginal agricultural systems make millets a powerhouse of important gene and transcription factor families imparting tolerance to various kinds of biotic and abiotic stresses. Among these, the nuclear factor-Y (NF-Y) is one of the prominent transcription factor families that regulate diverse genes imparting stress tolerance. The primary purpose of this article is to shed light on the role of millet models in imparting climate resilience and nutritional security and to give a concrete perspective on how NF-Y transcription factors can be harnessed for making cereals more stress tolerant. Future cropping systems could be more resilient to climate change and nutritional quality if these practices were implemented.

摘要

本文的主要目的是阐明谷子模型在赋予气候抗性和营养安全性方面的作用,并具体探讨如何利用 NF-Y 转录因子使谷类作物更能耐受胁迫。农业正面临气候变化、讨价还价、人口增长、食品价格上涨以及与营养价值妥协等重大挑战。这些因素迫使全球范围内的科学家、培育者和营养学家考虑一些选择,以应对粮食安全危机和营养不良问题。为了应对这些挑战,将谷子等具有气候抗性和无与伦比的营养替代作物主流化是一项关键战略。C4 光合作用途径和适应低投入边缘农业系统使谷子成为赋予各种生物和非生物胁迫耐受性的重要基因和转录因子家族的强大力量。其中,核因子-Y(NF-Y)是调节赋予胁迫耐受性的多种基因的突出转录因子家族之一。本文的主要目的是阐明谷子模型在赋予气候抗性和营养安全性方面的作用,并具体探讨如何利用 NF-Y 转录因子使谷类作物更能耐受胁迫。如果实施这些做法,未来的种植系统可能会更能适应气候变化和提高营养质量。

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