Silencing of catalase reduces unfavorable low‐temperature tolerance capacity in whiteflies

Author:

Ning Jie1,Liang Peng1,Wu Xiaojie1,Wang Wenlu1,Wu Qingjun1ORCID,Wang Shaoli1ORCID,Yang Xin1ORCID,Zhang Youjun1ORCID,Xie Wen12ORCID

Affiliation:

1. State Key Laboratory of Vegetable Biobreeding, Institute of Vegetables and Flowers Chinese Academy of Agricultural Sciences Beijing China

2. National Research Institute of Breeding in Hainan Chinese Academy of Agricultural Sciences Sanya China

Abstract

AbstractBACKGROUNDTemperature is a primary factor that determines the eco‐geographical distribution and population development of invasive insects. Temperature stress leads to various negative effects, including excess reactive oxygen species (ROS), and catalase (CAT) is a key enzyme against ROS in the antioxidant pathway. The whitefly Bemisia tabaci MED is a typical invasive pest that causes damage worldwide. Our previous studies have shown that CAT promotes whitefly adaptation to high temperature by eliminating ROS. However, the mechanism underlying the low‐temperature adaptation of whiteflies is still unknown.RESULTSIn this study, we investigated the role of CAT in the low‐temperature tolerance of B. tabaci MED by analyzing its survival rate, reproduction, and ROS levels at 25 °C (as a control, suitable temperature), 20 °C (moderately decreased temperature), and 4 °C (severely decreased temperature). Silencing of BtCAT1, BtCAT2, or BtCAT3 reduced the viability of whiteflies under a short‐term severely decreased temperature (4 °C), which manifested as decreases in survival and fecundity accompanied by significant increases in ROS levels. Moreover, even at a moderately decreased temperature (20 °C), silencing of BtCAT1 led to high ROS levels and low survival rates in adults.CONCLUSIONSilencing of BtCATs significantly increased the sensitivity of B. tabaci MED to low temperatures. BtCAT1 is likely more essential than other BtCATs for low‐temperature tolerance in whiteflies. © 2024 Society of Chemical Industry.

Funder

National Natural Science Foundation of China

Sanya Yazhou Bay Science and Technology City

Publisher

Wiley

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