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ZmBAM8 介导的叶片淀粉降解影响玉米的耐旱性。

Leaf starch degradation by β-amylase ZmBAM8 influences drought tolerance in maize.

机构信息

National Key Laboratory of Wheat and Maize Crop Science, College of Life Sciences, Henan Agricultural University, Zhengzhou 450046, China.

National Key Laboratory of Wheat and Maize Crop Science, College of Life Sciences, Henan Agricultural University, Zhengzhou 450046, China.

出版信息

Carbohydr Polym. 2024 Dec 1;345:122555. doi: 10.1016/j.carbpol.2024.122555. Epub 2024 Jul 31.

Abstract

As a typical C plant and important crop worldwide, maize is susceptible to drought. In maize, transitory starch (TS) turnover occurs in the vascular bundle sheath of leaves, differing from that in Arabidopsis (a C plant). This process, particularly its role in drought tolerance and the key starch-hydrolyzing enzymes involved, is not fully understood. We discovered that the expression of the β-amylase (BAM) gene ZmBAM8 is highly upregulated in the drought-tolerant inbred line Chang7-2t. Inspired by this finding, we systematically investigated TS degradation in maize lines, including Chang7-2t, Chang7-2, B104, and ZmBAM8 overexpression (OE) and knockout (KO) lines. We found that ZmBAM8 was significantly induced in the vascular bundle sheath by drought, osmotic stress, and abscisic acid. The stress-induced gene expression and chloroplast localization of ZmBAM8 align with the tissue and subcellular sites where TS turnover occurs. The recombinant ZmBAM8 was capable of effectively hydrolyzing leaf starch. Under drought conditions, the leaf starch in ZmBAM8-OE plants substantially decreased under light, while that in ZmBAM8-KO plants did not decrease. Compared with ZmBAM8-KO plants, ZmBAM8-OE plants exhibited increased drought tolerance. Our study provides insights into the significance of leaf starch degradation in C crops and contributes to the development of drought-resistant maize.

摘要

作为一种典型的 C3 植物和全球重要的作物,玉米容易受到干旱的影响。在玉米中,暂存淀粉(TS)周转发生在叶片的维管束鞘中,与拟南芥(C3 植物)不同。这一过程,特别是其在耐旱性中的作用以及涉及的关键淀粉水解酶,尚未完全了解。我们发现,耐旱自交系 Chang7-2t 中β-淀粉酶(BAM)基因 ZmBAM8 的表达高度上调。受此发现的启发,我们系统地研究了包括 Chang7-2t、Chang7-2、B104 和 ZmBAM8 过表达(OE)和敲除(KO)系在内的玉米系中 TS 降解情况。我们发现,ZmBAM8 受到干旱、渗透胁迫和脱落酸的强烈诱导,在维管束鞘中表达。ZmBAM8 的胁迫诱导基因表达和叶绿体定位与 TS 周转发生的组织和亚细胞部位一致。重组 ZmBAM8 能够有效地水解叶片淀粉。在干旱条件下,ZmBAM8-OE 植物的叶片淀粉在光照下大量减少,而 ZmBAM8-KO 植物的叶片淀粉则没有减少。与 ZmBAM8-KO 植物相比,ZmBAM8-OE 植物表现出更强的耐旱性。我们的研究提供了对 C3 作物叶片淀粉降解意义的深入了解,并为抗旱玉米的发展做出了贡献。

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