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两种用于作物耐热性的豇豆核酮糖-1,5-二磷酸羧化酶/加氧酶活化酶同工型

Two cowpea Rubisco activase isoforms for crop thermotolerance.

作者信息

Gjindali Armida, Page Rhiannon, Ashton Catherine J, Robertson Ingrid, Page Mike T, Bloemers Duncan, Gould Peter D, Worrall Dawn, Orr Douglas J, Carmo-Silva Elizabete

机构信息

Lancaster Environment Centre, Lancaster University, Lancaster, LA1 4YQ, UK.

出版信息

New Phytol. 2025 Aug;247(3):1199-1217. doi: 10.1111/nph.70271. Epub 2025 Jun 8.

Abstract

A vital crop for sub-Saharan Africa, cowpea productivity, is threatened by climate change, including increased heatwave intensity, duration and frequency. Rubisco activase (Rca) is a key molecular chaperone that maintains Rubisco activity and, due to its thermal sensitivity, is a key target for improving crop climate resilience. We identified and characterised four Rca isoforms in Vigna unguiculata cv IT97K-499-35 in vitro: Rca1β, Rca8α, Rca10α and Rca10β. Cowpea leaf and plant growth traits were also investigated during a 5-d +10°C heatwave that included assessment of Rubisco and Rca activity in leaf extracts and relative changes in the abundance of the four Rca isoforms. Cowpea Rca10α and Rca10β had higher thermal maxima, broader thermal optima and higher rates of ATP hydrolysis and Rubisco reactivation in vitro. In the absence of water deficit, the heatwave caused only mild effects, including increases in leaf temperature and expression of Rca10, small decreases in Rubisco activity and activation state and an unaltered temperature response of Rubisco activation by Rca. The superior Rca10α and Rca10β isoforms offer the prospect of enhancing the thermotolerance of cowpea and other crops in anticipation of more extreme future heatwaves.

摘要

豇豆是撒哈拉以南非洲的一种重要作物,其生产力受到气候变化的威胁,包括热浪强度、持续时间和频率的增加。核酮糖-1,5-二磷酸羧化酶/加氧酶激活酶(Rca)是一种关键的分子伴侣,可维持核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)的活性,由于其热敏感性,它是提高作物气候适应能力的关键靶点。我们在体外鉴定并表征了豇豆品种IT97K-499-35中的四种Rca同工型:Rca1β、Rca8α、Rca10α和Rca10β。在为期5天、温度升高10°C的热浪期间,还对豇豆的叶片和植株生长性状进行了研究,包括评估叶片提取物中Rubisco和Rca的活性以及四种Rca同工型丰度的相对变化。豇豆Rca10α和Rca10β在体外具有更高的热最大值、更宽的热最适值以及更高的ATP水解速率和Rubisco再激活速率。在没有水分亏缺的情况下,热浪仅产生了轻微影响,包括叶片温度升高和Rca10表达增加、Rubisco活性和激活状态略有下降以及Rca对Rubisco激活的温度响应未改变。在未来可能出现更极端热浪的情况下,优良的Rca10α和Rca10β同工型为提高豇豆和其他作物的耐热性提供了前景。

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