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Field Screening of Rice Germplasm (Oryza sativa L. ssp. japonica) Based on Days to Flowering for Drought Escape

机译:基于抗旱开花天数的水稻种质田间筛选

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摘要

Terminal drought stress is one of the restrictive factors in rice production and is expected to upsurge under the current situation of climate change. The study evaluated the performance of 2030 rice genotypes under continuous drought stress conditions based on days to flowering (DF). The genotypes under augmented randomized complete block design were sown in May/June of 2017 and 2018 in the field with movable rainout that resulted in huge genetic diversity among the accessions. Descriptive statistics confirmed clear variation among accessions on growth duration, plant height to leaf, plant height to panicle, and germination percentage. Correlation, chemometric, and agglomerative hierarchical cluster analyses were performed that categorized the germplasm into 10 groups. Genotypes in clusters VIII and IX (drought-resistant) revealed better agronomic performance in terms of reduced days to flowering, but conversely taller plant height and higher maturity (%) under severe stress. Genotypes in clusters IV, V, and X were discovered to be drought-susceptible. The screened genotypes like Longjing 12, Longdun 102, Yanjing 22, Liaojing 27, Xiaohongbandao, Songjing 17, and Zaoshuqingsen can be utilized in rice breeding improvement programs for drought tolerance in terms of severe continuous drought, as well as terminal drought stress.
机译:终端干旱胁迫是水稻生产的制约因素之一,在当前的气候变化形势下,预计干旱将激增。该研究基于持续开花的天数(DF)评估了2030种水稻基因型在连续干旱胁迫条件下的表现。在2017年5月/ 6月和2018年5月/ 6月在田间播种了增强随机完整块设计下的基因型,可移动的降雨导致了种质间巨大的遗传多样性。描述性统计证实,种质在生长持续时间,株高至叶高,株高至穗高和发芽率之间存在明显差异。进行了相关性,化学计量学和附聚的层次聚类分析,将种质分为10组。 VIII和IX集群中的基因型(抗旱)表现出更好的农艺性状,减少了开花的天数,但相反,在严重胁迫下,株高更高,成熟度更高(%)。发现簇IV,V和X中的基因型对干旱敏感。筛选的基因型如龙粳12号,龙墩102号,燕京22号,辽粳27号,小红带ao,松井17号和枣树青森等基因型可用于水稻育种改良计划中,以应对严重连续干旱和终末干旱胁迫。

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