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一种生长缓慢的竹子变异体不规则节间分裂区形成的细胞和分子特征。

Cellular and molecular characterizations of the irregular internode division zone formation of a slow-growing bamboo variant.

机构信息

Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, 159 Longpan Road Nanjing, Jiangsu 210037, China.

Boyce Thompson Institute, Cornell University, 533 Tower Road, Ithaca, NY 14853, USA.

出版信息

Tree Physiol. 2022 Mar 9;42(3):570-584. doi: 10.1093/treephys/tpab129.

Abstract

The key molecular mechanisms underlying the sectionalized growth within bamboo or other grass internodes remain largely unknown. Here, we genetically and morphologically compared the culm and rhizome internode division zones (DZs) of a slow-growing bamboo variant (sgv) having dwarf internodes, with those of the corresponding wild type (WT). Histological analysis discovers that the sgv has an irregular internode DZ. However, the shoot apical meristems in height, width, outside shape, cell number and cell width of the sgv and the WT were all similar. The DZ irregularities first appeared post apical meristem development, in 1-mm sgv rhizome internodes. Thus, the sgv is a DZ irregularity bamboo variant, which has been first reported in bamboo according to our investigation. Transcriptome sequencing analysis finds that a number of cell wall biogenesis and cell division-related genes are dramatically downregulated in the sgv DZ. Interestingly, both transcriptomic and brassinosteroid (BR) contents detection, as well as quantitative real-time PCR analyses show that these irregularities have resulted from the BR signaling pathway defects. Brassinosteroid defect might also cause the erect leaves and branches as well as the irregular epidermis of the sgv. These results suggest that BR signaling pathway plays critical roles in bamboo internode DZ and leaf development from a mutant perspective and also explain the upstream mechanisms causing the dwarf internode of the sgv bamboo.

摘要

竹子或其他禾本科植物节间分段生长的关键分子机制在很大程度上尚不清楚。在这里,我们从遗传和形态上比较了生长缓慢的竹变种(sgv)的秆和根茎节间分裂区(DZ)与相应野生型(WT)的节间分裂区。组织学分析发现,sgv 具有不规则的节间 DZ。然而,sgv 和 WT 的茎尖分生组织在高度、宽度、外形、细胞数量和细胞宽度上都相似。sgv 根茎节间 1mm 处,sgv 的 DZ 不规则首先出现在顶端分生组织发育之后。因此,sgv 是一种 DZ 不规则的竹变种,根据我们的调查,这在竹子中是首次报道。转录组测序分析发现,sgv DZ 中有许多细胞壁生物发生和细胞分裂相关基因显著下调。有趣的是,转录组和油菜素内酯(BR)含量检测以及定量实时 PCR 分析表明,这些不规则性是由于 BR 信号通路缺陷造成的。BR 缺陷也可能导致 sGV 的直立叶片和分枝以及不规则的表皮。这些结果表明,BR 信号通路从突变体的角度在竹子节间 DZ 和叶片发育中发挥关键作用,并解释了导致 sGV 竹矮小节间的上游机制。

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