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水分限制条件下普通豆荚总状花序中与细胞壁转化酶相关的糖浓度的表型、解剖学和昼夜变化

Phenotypic, Anatomical, and Diel Variation in Sugar Concentration Linked to Cell Wall Invertases in Common Bean Pod Racemes under Water Restriction.

作者信息

Chavez Mendoza Karla, Peña-Valdivia Cecilia Beatriz, Hernández Rodríguez Martha, Vázquez Sánchez Monserrat, Morales Elías Norma Cecilia, Jiménez Galindo José Cruz, García Esteva Antonio, Padilla Chacón Daniel

机构信息

Programa de Posgrado en Botánica, Colegio de Postgraduados, Carretera México-Texcoco, km 36.5, Montecillo 56230, Mexico.

Postgrado en Recursos Genéticos y Productividad-Genética, Colegio de Postgraduados, Carretera México-Texcoco, km 36.5, Montecillo 56230, Mexico.

出版信息

Plants (Basel). 2022 Jun 21;11(13):1622. doi: 10.3390/plants11131622.

Abstract

The common bean ( L.) pod wall is essential for seed formation and to protect seeds. To address the effect of water restriction on sugar metabolism in fruits differing in sink strength under light-dark cycles, we used plants of cv. OTI at 100% field capacity (FC) and at 50% FC over 10 days at the beginning of pod filling. Water restriction intensified the symptoms of leaf senescence. However, pods maintained a green color for several days longer than leaves did. In addition, the functionality of pods of the same raceme was anatomically demonstrated, and no differences were observed between water regimes. The glucose and starch concentrations were lower than those of sucrose, independent of pod wall size. Remarkably, the fructose concentration decreased only under water restriction. The cell wall invertase activity was twofold higher in the walls of small pods than in those of large ones in both water regimes; similar differences were not evident for cytosolic or vacuolar invertase. Using bioinformatics tools, six sequences of invertase genes were identified in the genome. The PvINVCW4 protein sequence contains substitutions for conserved residues in the sucrose-binding site, while qPCR showed that transcript levels were induced in the walls of small pods under stress. The findings support a promising strategy for addressing sink strength under water restriction.

摘要

菜豆(L.)的豆荚壁对于种子形成和保护种子至关重要。为了研究在光暗周期下,水分限制对不同库强度果实中糖代谢的影响,我们在菜豆荚果充实初期,对cv. OTI植株分别在100%田间持水量(FC)和50% FC条件下处理10天。水分限制加剧了叶片衰老症状。然而,豆荚保持绿色的时间比叶片长几天。此外,从解剖学上证明了同一总状花序中豆荚的功能,且在不同水分处理之间未观察到差异。葡萄糖和淀粉浓度低于蔗糖,与豆荚壁大小无关。值得注意的是,仅在水分限制条件下果糖浓度降低。在两种水分处理下,小荚壁中的细胞壁转化酶活性均比大荚壁中的高两倍;胞质或液泡转化酶则没有明显的类似差异。利用生物信息学工具,在基因组中鉴定出6个转化酶基因序列。PvINVCW4蛋白序列在蔗糖结合位点的保守残基处存在替换,而定量PCR表明在胁迫下小荚壁中的转录水平会被诱导。这些发现支持了一种在水分限制条件下解决库强度问题的有前景的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/baf4/9268661/6cfae9912e44/plants-11-01622-g001.jpg

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