4.7 Article

Lodging resistance of rice plants studied from the perspective of culm mechanical properties, carbon framework, free volume, and chemical composition

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SCIENTIFIC REPORTS
卷 12, 期 1, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/s41598-022-24714-4

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资金

  1. National Natural Science Foundation of China (NSFC) [12105027, 11875209]
  2. Natural Science Foundation of Hunan Province [2021JJ40560, 2020JJ4094]
  3. Scientific Research Funds of Hunan Provincial Education Department [21B0343]
  4. Guangdong Basic and Applied Basic Research Foundation [2020A1515110817]

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In this study, it was found that four varieties of rice cultivated under the same conditions and duration showed different lodging resistance. Three key factors influencing lodging resistance were identified: the thickness of the depressed region of the culm wall, the flexibility of the culm, and the nitrogen element content in the basal culm.
In this study, four varieties of rice were cultivated on the same farmland under same conditions and for same duration. However, their lodging resistance was found to be obviously different from each other. Herein, three key factors that highly influenced the lodging resistance were identified. First, in terms of morphological trait, in contrast to the generally believed theory that the overall thickness of the fresh culm wall governs the strength, the thickness of the depressed region of the dried basal culm wall largely determined the mechanical properties by acting as the weak link. This depressed region represents the vulnerable part with high syneresis rate. Second, the culm and its carbon framework exhibited sufficient strength and rigidity for both support and stability of the rice stem. The constraint of high lodging resistance of rice plants is attributed to the culm flexibility. Furthermore, the results of the positron annihilation lifetime spectroscopy corroborate that the most amorphous part and the highest-fraction free volume in the culm carbon framework were found for samples that exhibited high lodging resistance. This result confirmed the significant influence of the culm flexibility on lodging resistance. Third, a higher level of nitrogen element content in the basal culm can benefit its growth and development, which may contribute to an increase in lodging resistance of rice plants.

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