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Physiological and Transcriptomic Analyses Reveal the Mechanisms of Compensatory Growth Ability for Early Rice after Low Temperature and Weak Light Stress.

Plants (Basel) · 2022 · PMC9570567 · PMID 36235390

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a decreasing trendno p-value reported
an increasing trendno p-value reported
On day 6, the Rubisco activity for all three materials in T showed a large increase compared to the CK, with the difference being that B116 and B144 showed an increasing trend and only B811 showed a decreasing trend.

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showed a trendno p-value reported
The identified differentially expressed genes (DEGs) indicated that there were large differences in POD-related genes and gibberellin metabolism between B116 and B144 after stress; RT-PCR quantification also showed a trend consistent with RNA-seq, which may be an important reason for the differences in compensatory growth ability. rice genotype combined low temperature and weak light stress compensatory growth antioxidant enzymes nitrogen metabolizing enzymes endogenous hormones transcriptome Academic and technical l

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Quoted from the open-access full text in Europe PMC under the licence the publisher applied. The sentence is reproduced exactly as published; the emphasis is ours.