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Cellular Mechanical Phenotypes of Drought-Resistant and Drought-Sensitive Rice Species Distinguished by Double-Resonator Piezoelectric Cytometry Biosensors

文献类型: 外文期刊

作者: Tang, Ding 1 ; Zhou, Tiean 1 ; Pan, Weisong 1 ; Wang, Shimei 3 ; Hassan, Muhammad Ahmad 3 ;

作者机构: 1.Hunan Agr Univ, Coll Biosci & Biotechnol, Changsha 410128, Peoples R China

2.Hunan Engn Technol Res Ctr Cell Mech & Funct Anal, Changsha 410128, Peoples R China

3.Anhui Acad Agr Sci, Rice Res Inst, Hefei 230031, Peoples R China

关键词: cellular phenotypes under drought stress; rice cells; double resonator piezoelectric cytometry; cell-generated surface stress; cell viscoelasticity

期刊名称:BIOSENSORS-BASEL ( 影响因子:5.6; 五年影响因子:5.7 )

ISSN:

年卷期: 2025 年 15 卷 6 期

页码:

收录情况: SCI

摘要: Various high-throughput screening methods have been developed to explore plant phenotypes, primarily at the organ and whole plant levels. There is a need to develop phenomics methods at the cellular level to narrow down the genotype to phenotype gap. This study used double-resonator piezoelectric cytometry biosensors to capture the dynamic changes in mechanical phenotypes of living cells of two rice species, drought-resistant Lvhan No. 1 and drought-sensitive 6527, under PEG6000 drought stress. In rice cells of Lvhan No. 1 and 6527, mechanomics parameters, including cell-generated surface stress (Delta S) and viscoelastic parameters (G ', G '', G ''/G '), were measured and compared under 5-25% PEG6000. Lvhan No. 1 showed larger viscoelastic but smaller surface stress changes with the same concentration of PEG6000. Moreover, Lvhan No. 1 cells showed better wall-plasma membrane-cytoskeleton continuum structure maintaining ability under drought stress, as proven by transient tension stress (Delta S > 0) and linear G 'similar to Delta S, G ''similar to Delta S relations at higher 15-25% PEG6000, but not for 6527 cells. Additionally, two distinct defense and drought resistance mechanisms were identified through dynamic G ''/G ' responses: (i) transient hardening followed by softening recovery under weak drought, and (ii) transient softening followed by hardening recovery under strong drought. The abilities of Lvhan No. 1 cells to both recover from transient hardening to softening and to recover from transient softening to hardening are better than those of 6527 cells. Overall, the dynamic mechanomics phenotypic patterns (Delta S, G ', G '', G ''/G ', G 'similar to Delta S, G ''Delta S) verified that Lvhan No. 1 has better drought resistance than that of 6527, which is consistent with the field data.

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