通过对种子和幼苗性状的探索,确定耐厌氧萌发供体和直接播种水稻

A. Vinitha, D. Vijayalakshmi, M. Raveendran, V. Ravichandran, T. Parthipan
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引用次数: 0

摘要

背景:淹水土壤的厌氧条件会显著影响发芽率,降低水稻产量。在湿直接播种条件下,只有有限的水稻基因型适合厌氧萌发。因此,迫切需要确定水稻在缺氧胁迫下提高发芽的基因型。方法:实验在哥印拜陀泰米尔纳德邦农业大学作物生理学系玻璃室内进行。本研究对22个水稻种质进行了3个重复的种子和幼苗耐厌氧萌发特性评价。本研究的主要目的是探讨在缺氧胁迫下淀粉和糖的关系,并确定水稻直接播种栽培的耐受性基因型。结果:耐涝基因型在淹水条件下出苗期早,茎长和根长较高,淀粉降解率和糖积累量较高。聚类分析结果表明,Karuppukavuni、Kalanamak、CBMAS 14065和Kodavilayan均为抗性基因型,适合湿法直接播种。最后,较高的淀粉降解加上较高的葡萄糖和果糖积累是耐氧基因型耐厌氧萌发的关键性状。茎长、根长和蔗糖含量具有较高的基因型变异系数,表型变异系数和较高的遗传力表明提高厌氧萌发耐受性的范围。
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Identifying Donors for Anaerobic Germination Tolerance and Direct Seeded Rice Cultivation by Exploring Seed and Seedling Traits
Background: Anaerobic conditions in waterlogged soil affect germination rate significantly reducing rice yields. Under wet direct seeded condition, only limited availability of rice genotypes are suitable for anaerobic germination. So, there is an urgent need to identify rice genotypes for enhanced germination even under anoxic stress. Methods: Experiment was conducted in glass house, Department of Crop Physiology, Tamil Nadu Agricultural University, Coimbatore. In this study, 22 rice germplams with three replications were evaluated for seed and seedling traits underlying anaerobic germination tolerance. Main aim of this study is to explore the starch and sugar relation under anoxic stress and identifying tolerant genotypes for direct seeded rice cultivation. Result: Tolerant genotypes had early emergences, higher shoot and root length along with higher starch degradation and sugar accumulation under waterlogged condition. Cluster analysis revealed that Karuppukavuni, Kalanamak, CBMAS 14065 and Kodavilayan were identified as tolerant genotypes and suitable for wet direct seeded rice cultivation. Finally higher starch degradation coupled with higher accumulation of glucose and fructose were the key traits underlying anaerobic germination tolerance in tolerant genoytpes. Shoot length, root length and sucrose contents had higher genotypic coefficient of variance, phenotypic coefficient of variance coupled with high heritability indicating scope for enhancing anaerobic germination tolerance.
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