[HTML][HTML] A novel long non-coding RNA, DIR, increases drought tolerance in cassava by modifying stress-related gene expression

SM Dong, X Liang, ZB Li, S Jie, HB Yan, SX Li… - Journal of Integrative …, 2022 - Elsevier
Cassava is an important tropical cash crop. Severe drought stresses affect cassava
productivity and quality, and cause great economic losses in agricultural production …

FtsH proteases confer protection against salt and oxidative stress in Medicago sativa L.

M Li, X Zhu, Q Yu, A Yu, L Chen, J Kang, X Wang… - Plant Science, 2024 - Elsevier
Plant filamentation temperature-sensitive H (FtsH) proteins are ATP-dependent zinc
proteases that play an important role in regulating abiotic stress adaptions. Here we explore …

Genome-Wide Identification and Comprehensive Analysis of the FtsH Gene Family in Soybean (Glycine max)

Q Shan, B Zhou, Y Wang, F Hao, L Zhu, Y Liu… - International Journal of …, 2023 - mdpi.com
The filamentation temperature-sensitive H (FtsH) gene family is critical in regulating plant
chloroplast development and photosynthesis. It plays a vital role in plant growth …

Filamentation temperature-sensitive (FtsH); key player in response to multiple environmental stress conditions and Developmental stages in Potato

Z Hajibarat, A Saidi - Journal of Plant Growth Regulation, 2023 - Springer
Biotic and abiotic stresses are among major factors limiting crop yields, and Filamentation
temperature-sensitive (FtsH) genes are one of the key regulators of plant response to these …

Genome-wide analysis of filamentous temperature-sensitive H protease (ftsH) gene family in soybean

J Wang, L Liu, R Luo, Q Zhang, X Wang, F Ling… - BMC genomics, 2024 - Springer
Background The filamentous temperature-sensitive H protease (ftsH) gene family belongs to
the ATP-dependent zinc metalloproteins, and ftsH genes play critical roles in plant …

In silico analysis of Phaseolus vulgaris L. metalloprotease FtsH gene: characterization and expression in drought and salt stress

B Inal, S Muslu, E Yigider, AG Kasapoglu… - Genetic Resources and …, 2024 - Springer
Proteases help plants maintain protein quality and break down protein subsets in reply to
environmental, developmental, biotic, and abiotic stressors. Filamentation temperature …

辣椒响应热胁迫机制的研究进展

张蓓, 任福森, 赵洋, 郭志伟, 孙强, 刘贺娟… - 生物技术 …, 2023 - biotech.aiijournal.com
辣椒是重要的蔬菜作物和调味品, 含有丰富的营养物质. 然而, 高温制约了辣椒的生长发育,
严重影响其产量和品质. 因此, 研究热胁迫响应机制从而培育具有较强耐热能力的辣椒品种具有 …

Advances in the Mechanism of Pepper in the Response to Heat Stress

B ZHANG, F REN, Y ZHAO, Z GUO… - Biotechnology …, 2023 - biotech.aiijournal.com
Pepper is an important vegetable crop and condiment, rich in nutrients. However, high
temperature restricts the growth and development of pepper, seriously affects its yield and …

Differential expression of StFtsH5, StFtsH6, and StFtsH10 genes in potatoinduced by cold, heat, and high light stress.

A Saidi, Z Hajibarat, M Zeinalabdeini, M Ghaffari - 2022 - cabidigitallibrary.org
Abstract Introduction and Objective: Abiotic stresses are among major factors limiting crop
yields. Cold, heat, and high-light are the most important abiotic stress among plants. Thus, it …

بیان افتراقی ژن های StFtsH5، StFtsH6 و StFtsH10 در سیب زمینی در مواجهه با تنش های سرما، گرما و نور زیاد

سعیدی, عباس, حاجی برات, زین العابدینی… - پژوهشنامه اصلاح گیاهان …, 2022‎ - jcb.sanru.ac.ir
مقدمه و هدف: تنشهای غیرزیستی فاکتورهای مهم در کاهش عملکرد محصولات زراعی هستند. سرما، گرما و
نور زیاد ازجمله مهمترین تنش های غیرزیستی در گیاهان به شمار میروند. لذا درک مکانیسم مولکولی …