水溶性碳水化合物在提高小麦抗旱性中的作用综述

Arpit Gaur, Deepti Sharma, S. Sheoran, Sulekha Chahal, K. Chaudhary, Gyanendra Singh, Gyanendra Singh
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引用次数: 0

摘要

摘要干旱和热胁迫等非生物因素损害了光合同化产物,缩短了发育中的籽粒的碳供应,导致产量损失。水分胁迫下,以果聚糖为主的茎秆水溶性碳水化合物在小麦灌浆期的缓冲产量中起着重要作用。在灌溉条件下,茎秆WSCs可贡献籽粒总干重的20%,在干旱胁迫下可贡献籽粒干物质的70%。此外,它还作为各种植物化学物质和激素的信号分子,在缺水条件下维持生理平衡。因此,这种干旱适应性状可以作为小麦可持续生产的潜在育种目标,特别是在水分限制条件下。尽管茎秆WSCs对小麦耐水分胁迫和补偿籽粒产量的贡献已被证实,但对这一性状的全面综述在文献中仍然缺失。本文综述了茎秆WSCs积累和再动员的生理、遗传和分子方面的研究进展,以期引起植物学家对这一特性的重视。此外,利用GWAS、QTL或meta-QTL研究鉴定出的稳定位点,如KASP等有效的分子标记系统可以提高选择的准确性,加快WSCs小麦育种计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of Water Soluble Carbohydrates in Improving Drought Stress Tolerance in Wheat: An Overview
Role of Water Soluble Carbohydrates in Improving Drought Stress Tolerance in Abstract Abiotic factors such as drought and heat stress impairs photosynthetic assimilates, shortening the carbon supply to the developing grains leads to yield loss. Under water stress, stem water-soluble carbohydrates (WSCs) mainly fructans, play an important role in buffering yield during the grain filling period in wheat. The stem WSCs may contribute up to 20% of the total dry weight of grain under irrigated conditions and upto 70% of grain dry matter under drought stress. Additionally, it maintains physiological balance under water-stressed conditions by acting as signalling molecules to various phytochemicals and hormones. Therefore, this drought adaptive trait can be a potential breeding target for sustainable wheat production, especially for water limiting conditions. Despite the proven contribution of stem WSCs to water-stress tolerance in wheat and compensating grain yield, a comprehensive review on this trait is still missing in the literature. With this review, efforts are made to compile the available information on the physiological, genetic and molecular aspects of accumulation and remobilisation of stem WSCs to bring more attention of plant scientists to this trait. Furthermore, effective molecular marker systems such as KASP to target stable loci identified using GWAS, QTL or meta-QTL studies may bring precision to the selection and accelerate the WSCs based wheat breeding program.
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